26 research outputs found
Effects of accelerated versus standard care surgery on the risk of acute kidney injury in patients with a hip fracture : A substudy protocol of the hip fracture Accelerated surgical TreaTment and Care tracK (HIP ATTACK) international randomised controlled trial
- Author
- Abraham V.
- Balaguer-Castro Mariano
- Bhandari M.
- Biccard B.M.
- Borges F.K.
- Cuerden M.
- Devereaux P.J.
- Feibel R.
- Garg A.X.
- Guerra Farfan Ernesto.
- Harvey V.
- Jenkinson R.
- John B.
- Landoni G.
- Lawendy A.
- McMahon J.S.
- Nabi Nur A.
- Neary J.
- Patel A.
- Pettit S.
- Ramokgopa M.T.
- Sancheti P.
- Sigamani A.
- Sigamani A.
- Sontrop J.
- Szczeklik W.
- Tandon V.
- Tiboni M.
- Tomas-Hernandez Jordi
- Umer M.
- Universitat Autònoma de Barcelona
- Vincent J.
- Wang C.Y.
- Wood G.C.A.
- Ś Lȩczka P.
- Publication venue
- 'BMJ'
- Publication date
- 01/01/2019
- Field of study
Introduction Inflammation, dehydration, hypotension and bleeding may all contribute to the development of acute kidney injury (AKI). Accelerated surgery after a hip fracture can decrease the exposure time to such contributors and may reduce the risk of AKI. Methods and analysis Hip fracture Accelerated surgical TreaTment And Care tracK (HIP ATTACK) is a multicentre, international, parallel-group randomised controlled trial (RCT). Patients who suffer a hip fracture are randomly allocated to either accelerated medical assessment and surgical repair with a goal of surgery within 6 hours of diagnosis or standard care where a repair typically occurs 24 to 48 hours after diagnosis. The primary outcome of this substudy is the development of AKI within 7 days of randomisation. We anticipate at least 1998 patients will participate in this substudy. Ethics and dissemination We obtained ethics approval for additional serum creatinine recordings in consecutive patients enrolled at 70 participating centres. All patients provide consent before randomisation. We anticipate reporting substudy results by 2021. Trial registration number NCT02027896; Pre-results
Search for jet extinction in the inclusive jet-pT spectrum from proton-proton collisions at s=8 TeV
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- Abbiendi G.Bc
- Abbrescia M.Bb
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- Adam W.B
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- Adler V.G
- Adzic P.Cq
- Afanasiev S.Ci
- Agapitos A.Ao
- Agram J.-L.ad
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- Gurrola A.Ff
- Gurtu A.Ay
- Guthoff M.Cv
- Gutsche O.Dz
- Gyun D.Bu
- H\ue4rk\uf6nen J.Z
- H\uf6ing R.S.Al
- H\uf6rmann N.B
- Haas J.Ec
- Hadjiiska R.N
- Hadley N.J.Ek
- Hagopian S.Ec
- Hagopian V.Ec
- Hahn K.A.Er
- Haj Ahmad W.Aj
- Hajdu C.Aq
- Haley J.Eq
- Halkiadakis E.Fb
- Hall G.Dj
- Hall-Wilton R.Fi
- Haller J.Al
- Hamel de Monchenault G.Ab
- Hammad G.H.I
- Hammer J.Cv
- Han J.Ez
- Hanlon J.Dz
- Hansen M.Cv
- Hanson G.Dr
- Harder K.Di
- Hare D.Dz
- Harel A.Ez
- Harper S.Di
- Harr R.Fh
- Harris P.Cv
- Harris R.M.Dz
- Hartl C.B
- Hartmann F.Am
- Hassan Q.Cf
- Hatakeyama K.Dl
- Hauk J.Ak
- Hauser J.Dq
- Hauth T.Am
- Haytmyradov M.Ef
- Heath G.P.Dh
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- Hebbeker T.Ai
- Hebda P.Eu
- Hegeman J.Cv
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- Heintz U.Do
- Heister A.Aj
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- Henderson C.Dm
- Heracleous N.E
- Heredia-de La Cruz I.Bz
- Hernandez A.C.Fd
- Hernandez J.M.Cr
- Herndon M.Fi
- Herrera C.M.J
- Herv\ue9 A.Fi
- Hewamanage S.Eb
- Hidas D.Fb
- Hidas P.Aq
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- Hill C.Et
- Hindrichs O.Ah
- Hinzmann A.Cy
- Hirosky R.Fg
- Hirschauer J.Dz
- Hits D.Cx
- Hobson P.R.Dk
- Hoehle F.Aj
- Hoepfner K.Ai
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- Hollar J.H
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- Hooberman B.Dz
- Hoorani H.R.Cf
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- Horvath D.Aq
- Hos I.Dc
- Hou W.-S.da
- Hreus T.Cy
- Hrubec J.B
- Hu Z.Ew
- Hughes R.Et
- Hugon J.Ea
- Hunt A.Eu
- Husemann U.Am
- Iaselli G.Bb
- Iashvili I.Ep
- Iaydjiev P.M
- Ignatenko M.Dq
- Iiyama Y.Dv
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- Ingram Q.Cw
- Innocente V.Cv
- Iorio A.O.M.Bi
- Isildak B.De
- Ivanov A.Ei
- Ivanov Y.Ck
- Ivova Rikova M.Dr
- J\ufanior W.L.A.I
- Jacob J.Dh
- Jafari A.Az
- Jain S.Aw
- Jain S.Aw
- Jain S.Ep
- Jandir P.Dr
- Janot P.Cv
- Janssen X.D
- Jarry P.Ab
- Jarvis M.Dj
- Jeitler M.B
- Jessop C.Es
- Jez P.H
- Jha M.K.Ew
- Jiang C.H.O
- Jindariani S.Dz
- Jo M.Bu
- Johns W.Ff
- Johnson K.F.Ec
- Johnson M.Dz
- Jones M.Ew
- Jorda C.Bn
- Josa M.I.Cr
- Joshi U.Dz
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- Juodagalvis A.Bx
- Justus C.Dt
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- Kachanov V.Cp
- Kadastik M.X
- Kadija K.T
- Kaestli H.C.Cw
- Kailas S.Ax
- Kalakhety H.Ed
- Kalinin A.Cp
- Kalinowski A.Ch
- Kalogeropoulos A.Ak
- Kalsi A.K.Au
- Kamel A.E.W
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- Kangal E.E.Dc
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- Kao K.Y.Da
- Kao S.C.Em
- Kaplan S.Fb
- Karancsi J.Ar
- Karapinar G.Dd
- Karapostoli G.Dj
- Karchin P.E.Fh
- Kargoll B.Aj
- Karim\ue4ki V.Z
- Karjavin V.Cj
- Karmgard D.J.Es
- Kasemann M.Ak
- Kasmi A.Dl
- Katkov I.Am
- Katsas P.Ak
- Kaur M.Au
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- Kayis Topaksu A.Dc
- Kazana M.Cg
- Keaveney J.E
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- Khachatryan V.A
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- Khalatyan S.Ee
- Khalid S.Cf
- Khalil S.Ei
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- Khan W.A.Cf
- Kharchilava A.Ep
- Khein L.Co
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- Khukhunaishvili A.Ez
- Khurana R.Aw
- Khurshid T.Cf
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- Kiesenhofer W.B
- Kilminster B.Cy
- Kim D.Bw
- Kim D.H.Br
- Kim G.N.Br
- Kim H.Bu
- Kim J.H.Bv
- Kim J.Y.Bt
- Kim M.S.Br
- Kim T.J.Bs
- Kim V.Ck
- Kim Y.Bu
- Kinnunen R.Z
- Kirakosyan M.Cn
- Kirsanov M.Cl
- Kirschenmann H.Al
- Klabbers P.Fi
- Klanner R.Al
- Klapoetke K.Em
- Klein D.Ds
- Klein K.Ah
- Kleinwort C.Ak
- Klima B.Dz
- Klingebiel D.Ai
- Klute M.El
- Klyukhin V.Co
- Kn\ufcnz V.B
- Knowlton D.Eo
- Knutsson A.D
- Knutzen S.Ai
- Ko W.Dp
- Koay S.A.Eu
- Kodolova O.Co
- Kogler R.Al
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- Komaragiri J.R.By
- Komm M.H
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- Konoplyanikov V.Cj
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- Kottachchi Kankanamge Don C.Fh
- Kousouris K.Cv
- Kovac M.S
- Kovitanggoon K.Fe
- Kozhuharov V.N
- Kr\ue4tschmer I.B
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- Krajczar K.Cv
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- Krasnikov N.Cl
- Kravchenko I.Eo
- Kreczko L.Dh
- Kreis B.Dz
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- Krofcheck D.Cd
- Krolikowski J.Ch
- Kropivnitskaya A.Bq
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- Kuessel Y.Aj
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- Kumar S.Ay
- Kumar V.Ax
- Kunori S.Fe
- Kuo C.M.Cz
- Kurca T.Af
- Kurt P.Ee
- Kuznetsova E.Am
- Kwan S.Dz
- Kwon E.Bw
- Kyberd P.Dk
- Kypreos T.Ea
- Kyriakis A.An
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- La Licata C.Bp
- Lacaprara S.Bj
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- Lai Y.S.El
- Laird E.Do
- Lamichhane P.Fh
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- Lanaro A.Fi
- Lander R.Dp
- Landsberg G.Do
- Lane R.Dj
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- Lange C.Cy
- Lange D.Ej
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- Langenegger U.Cw
- Lannon K.Es
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- Lariccia P.Bl
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- Lee B.Bu
- Lee J.Bw
- Lee K.S.Bu
- Lee S.Br
- Lee S.W.Fe
- Lee Y.-J.el
- Leggat D.Dk
- Lehti S.Z
- Lei Y.J.Da
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- Lemaitre V.H
- Lenz T.Al
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- Leonidov A.Cn
- Leslie D.Dk
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- Letts J.Ds
- Levchenko P.Ck
- Levchuk L.Dg
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- Li Q.P
- Li W.Ey
- Li W.P
- Liang S.O
- Libeiro T.Fe
- Ligabue F.
- Liko D.B
- Lin C.Fg
- Lin W.Cz
- Linacre J.Dz
- Lincoln D.Dz
- Lind\ue9n T.Z
- Ling T.Y.Et
- Lingemann J.Aj
- Linn S.Eb
- Lipka K.Ak
- Lipton R.Dz
- Lista L.Bi
- Litov L.N
- Liu H.Dl
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- Liu S.P
- Liu T.Dz
- Liu Y.F.Da
- Lloret Iglesias L.Ct
- Lo Vetere M.Bg
- Lobanov A.Ak
- Lobelle Pardo P.Am
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- Lokhtin I.Co
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- Long O.R.Dr
- Longo E.Bn
- Lopes Pegna D.Ew
- Lopez Virto A.Cu
- Lopez-Fernandez R.Bz
- Loukas D.An
- Louren\ue7o C.Cv
- Loveless R.Fi
- Low J.F.Ea
- Lowette S.E
- Lu R.-S.da
- Lu Y.Ek
- Lu Y.J.Cz
- Lucas C.Dh
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- Lucchini M.T.Bh
- Luckey P.D.El
- Luetic J.T
- Luiggi Lopez E.Dw
- Lujan P.Eu
- Luk M.Do
- Lukina O.Co
- Lungu G.Fa
- Luo W.Es
- Lusito L.Er
- Lustermann W.Cx
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- Luukka P.Z
- Luyckx S.D
- Lychkovskaya N.Cm
- Lykken J.Dz
- Lynch S.Es
- Lyons L.Dj
- M\ue4enp\ue4\ue4 T.Z
- M\ufcller T.Am
- Ma T.El
- Macneill I.Ds
- Maes M.E
- Maeshima K.Dz
- Maggi G.Bb
- Maggi M.Bb
- Magini N.Cv
- Magnan A.-M.dj
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- Maity M.Ay
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- Malcles J.Ab
- Malek M.Eh
- Malgeri L.Cv
- Malhotra S.Av
- Malik S.Dj
- Malik S.Eo
- Malvezzi S.Bh
- Mangano B.Cx
- Mankel R.Ak
- Mannelli M.Cv
- Mans J.Em
- Manthos N.Ap
- Mantovani G.Bl
- Manzoni R.A.Bh
- Mao Y.Ff
- Mao Y.P
- Maravin Y.Ei
- Marcellini S.Bc
- Marchesini I.Al
- Marco J.Cu
- Marco R.Cu
- Marfin I.Ak
- Margaroli F.Bn
- Margoni M.Bj
- Marinelli N.Es
- Marini A.C.Cx
- Marinov A.M
- Marionneau M.Ek
- Mariotti C.Bo
- Markou A.An
- Markou C.An
- Markowitz P.Eb
- Marlow D.Eu
- Marone M.Bp
- Maroussov V.Ew
- Marraffino J.M.Dz
- Marrouche J.Cv
- Martelli A.Bh
- Martin C.Eg
- Martin W.Dk
- Martinez Outschoorn V.I.Dz
- Martinez Rivero C.Cu
- Martinez Ruiz del Arbol P.Cx
- Martinez G.Eb
- Martini L.Bm
- Martins T.D.R.J
- Maruyama S.Dz
- Marzocchi B.Bh
- Maselli S.Bo
- Masetti G.Bc
- Masetti L.Cv
- Mason D.Dz
- Massironi A.Eq
- Mastrolorenzo L.Ac
- Matchev K.Ea
- Mathias B.Dj
- Matorras F.Cu
- Matos Figueiredo D.K
- Matveev V.Cj
- Mavromanolakis G.U
- Mazumdar K.Ay
- Mcbride P.Dz
- Mccartin J.G
- Mccoll N.Dt
- Md Ali M.A.B.By
- Medvedeva T.Eu
- Meier F.Eo
- Meijers F.Cv
- Meister D.Cx
- Mekterovic D.T
- Melo A.Ff
- Melzer-Pellmann I.-A.ak
- Menasce D.Bh
- Mendez H.Ev
- Meneguzzo A.T.Bj
- Meng Z.Dh
- Menichelli M.Bl
- Meola S.Bi
- Mercadante P.G.L
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- Merino G.Cr
- Merkel P.Ew
- Merlo J.-P.ef
- Mermerkaya H.Ef
- Merola M.Bi
- Merschmeyer M.Ai
- Mersi S.Cv
- Meschi E.Cv
- Meschini M.Be
- Mesropian C.Fa
- Messineo A.Bm
- Mestvirishvili A.Ef
- Mesyats G.Cn
- Meyer A.Ai
- Meyer A.B.Ak
- Miceli T.Dp
- Micheli F.Bn
- Michlin B.Ey
- Migliore E.Bo
- Mignerey A.C.Ek
- Mikulec I.B
- Milenovic P.Ea
- Millan Mejias B.Cy
- Miller D.H.Ew
- Millet P.Ai
- Milosevic J.Cq
- Min\ue9 P.Ac
- Mirabito L.Af
- Mirman N.Dx
- Mironov C.Ac
- Mishra K.Dz
- Misiura M.Ch
- Missiroli M.Cs
- Mitselmakher G.Ea
- Mitta G.Ak
- Mittal M.Au
- Mnich J.Ak
- Modak A.Aw
- Moeller A.Ef
- Mohammadi Najafabadi M.Az
- Mohammadi A.F
- Mohanty A.K.Ax
- Mohanty G.B.Ay
- Mohapatra A.Fi
- Mohr N.Cx
- Moisenz P.Cj
- Molnar J.Ar
- Monaco V.Bo
- Montalvo R.Fd
- Montanari A.Bc
- Montanino D.Bp
- Moon C.S.Bm
- Moon D.H.Ee
- Mooney M.Eu
- Moortgat F.Cv
- Moran D.Cs
- Morelos Pineda A.Cc
- Moroni L.Bh
- Morovic S.Cv
- Mossolov V.C
- Mott A.Du
- Mousa J.U
- Mozer M.U.Am
- Mrenna S.Dz
- Mucia N.Er
- Mukherjee S.Aw
- Mulders M.Cv
- Mulhearn M.Dp
- Mundim L.K
- Muniz L.Ea
- Munoz Sanchez F.J.Cu
- Murray M.Eh
- Murumaa M.X
- Murzin V.Ck
- Musella P.Cv
- Musich M.Bo
- Musienko Y.Dz
- Mussgiller A.Ak
- My S.Bb
- N\ue4geli C.Cx
- N\ufcrnberg A.Am
- Nachtman J.Ef
- Nahn S.Dz
- Naimuddin M.Av
- Nam S.K.Bq
- Narain M.Do
- Naranjo I.N.Ac
- Naseri M.Az
- Nash D.Eq
- Nash J.Dj
- Nauenberg U.Dw
- Naumann-Emme S.Ak
- Navarria F.L.Bc
- Navarro De Martino E.Cr
- Nawrocki K.Cg
- Nayak A.Ak
- Negrete M.O.Dr
- Nessi-Tedaldi F.Cx
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- Newbold D.M.Dh
- Newman H.B.Du
- Newman-Holmes C.Dz
- Ngadiuba J.Cy
- Nguyen F.Ci
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- Nicolaou C.U
- Nicolas Kaufman G.Dx
- Nikitenko A.Dj
- Nishu N.Au
- Nogima H.K
- Noonan D.Eh
- Nourbakhsh S.Bn
- Novaes S.F.L
- Novgorodova O.Ak
- Nowack A.Aj
- Nowak F.Ak
- Ntomari E.Ak
- Nugent I.M.Aj
- Nuttens C.H
- Nuzzo S.Bb
- O\u2019Brien C.Ee
- O\u2019Dell V.Dz
- Obertino M.M.Bo
- Obraztsov S.Co
- Ocalan K.Dd
- Ocampo Rios A.A.G
- Ochando C.Ac
- Ochesanu S.D
- Odell N.Er
- Ogul H.Ef
- Oh Y.D.Br
- Ojalvo I.Fi
- Olaiya E.Di
- Olbrechts A.E
- Oliveros S.En
- Olivito D.Ds
- Olschewski M.Ai
- Olsen J.Eu
- Olszewski M.Ch
- Onel Y.Ef
- Onengut G.Dc
- Oreshkin V.Ck
- Organtini G.Bn
- Orimoto T.Eq
- Orsini L.Cv
- Ortona G.Bo
- Osipenkov I.Fd
- Ostapchuk A.Ah
- Ott J.Al
- Ozdemir K.Dc
- Ozok F.Ef
- Ozturk S.Dc
- P\ue9rez-Calero Yzquierdo A.Cr
- Pacher L.Bo
- Padeken K.Ai
- Padhi S.Ds
- Padley B.P.Ey
- Padula S.S.L
- Paganini P.Ac
- Pagano D.H
- Paganoni M.Bh
- Pakhotin Y.Fd
- Paktinat Mehdiabadi S.Az
- Palichik V.Cj
- Palinkas J.Ar
- Palla F.Bm
- Palmer C.Ds
- Panagiotou A.Ao
- Pandolfi F.Cx
- Pant L.M.Ax
- Panwalkar S.Fb
- Paoletti S.Be
- Paolucci P.Bi
- Papacz P.Ai
- Papadopoulos I.Ap
- Pape L.Cv
- Paradas E.Ap
- Paramatti R.Bn
- Paramesvaran S.Dh
- Parashar N.Ex
- Parida B.Ay
- Park H.Br
- Park I.C.Bv
- Park M.Fb
- Park S.Bv
- Park S.K.Bu
- Pashenkov A.Cl
- Pastika N.Em
- Pastrone N.Bo
- Patel R.Fb
- Patterson J.R.Dx
- Paulini M.Dv
- Paus C.El
- Pauss F.Cx
- Pavlov B.N
- Pazzini J.Bj
- Pearson T.Es
- Pedraza I.Cb
- Pedrini D.Bh
- Pedro K.Ek
- Peiffer T.Al
- Pela J.Dj
- Pellett D.Dp
- Pelliccioni M.Bo
- Peltola T.Z
- Pena C.Du
- Penzo A.Ef
- Perchalla L.Aj
- Perelygin V.Cj
- Perera L.En
- Perez E.Cv
- Perieanu A.Ah
- Perloff A.Fd
- Perni\ue8 L.F
- Perrey H.Ak
- Perries S.Af
- Perrini L.H
- Perrotta A.Bc
- Perrozzi L.Cv
- Perry T.Fi
- Peruzzi M.Cx
- Pesaresi M.Dj
- Petkov P.N
- Petrakou E.Da
- Petridis K.Dj
- Petrilli A.Cv
- Petrillo G.Ez
- Petrov V.Cp
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- Pierini M.Cv
- Pierro G.A.Fi
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- Pilot J.Dp
- Pimi\ue4 M.Cv
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- Pinna Angioni G.L.Bo
- Piotrzkowski K.H
- Piparo D.Cv
- Piperov S.M
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- Pitzl D.Ak
- Placakyte R.Ak
- Plagge M.Cv
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- Poehlsen J.Al
- Poehlsen T.Al
- Pol M.E.J
- Polatoz A.Dc
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- Polic D.R
- Poll A.Dh
- Pollack B.Er
- Pompili A.Bb
- Pooth O.Aj
- Popov A.H
- Popov V.Cm
- Potenza A.Bo
- Potenza R.Bd
- Pozdnyakov A.Er
- Pozzobon N.Bj
- Prado Da Silva W.L.K
- Primavera F.Bc
- Prokofyev O.Dz
- Prosper H.Ec
- Psallidas A.An
- Ptochos F.U
- Puerta Pelayo J.Cr
- Pugliese G.Bb
- Puigh D.Et
- Puljak I.R
- Python Q.E
- Qian S.J.P
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- Quast G.Am
- Quertenmont L.H
- Quintario Olmeda A.Cr
- Quittnat M.Cx
- R\uf6cker S.Am
- Rabady D.B
- Rabbertz K.Am
- Racz A.Cv
- Radburn-Smith B.C.Ew
- Radi A.W
- Radogna R.Bb
- Ragazzi S.Bh
- Rahatlou S.Bn
- Rahbaran B.B
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- Ramirez Vargas J.E.Ev
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- Ranjan K.Av
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- Ratnikov F.Am
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- Raymond D.M.Dj
- Razis P.A.U
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- Redjimi R.Ey
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- Reid I.D.Dk
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- Reithler H.Ai
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- Ribeiro Cipriano P.M.Ak
- Riccardi C.Bk
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- Rodenburg M.Et
- Rodozov M.M
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- Rolandi G.Cv
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- Romero L.Cr
- Ron E.Ak
- Ronchese P.Bj
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- Rose A.Fd
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- Thompson J.Dx
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- Tiko A.X
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- Walker M.Fb
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- Wang Q.Eh
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- Wang X.O
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- Wardle N.Cv
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- Zsigmond A.J.Aq
- Zucchetta A.Bj
- Zuranski A.Eu
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2014
- Field of study
Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published articles title, journal citation, and DOI.The first search at the LHC for the extinction of QCD jet production is presented, using data collected with the CMS detector corresponding to an integrated luminosity of 10.7 fb−1 of proton-proton collisions at a center-of-mass energy of 8 TeV. The extinction model studied in this analysis is motivated by the search for signatures of strong gravity at the TeV scale (terascale gravity) and assumes the existence of string couplings in the strong-coupling limit. In this limit, the string model predicts the suppression of all high-transverse-momentum standard model processes, including jet production, beyond a certain energy scale. To test this prediction, the measured transverse-momentum spectrum is compared to the theoretical prediction of the standard model. No significant deficit of events is found at high transverse momentum. A 95% confidence level lower limit of 3.3 TeV is set on the extinction mass scale
Conservative and disruptive modes of adolescent change in human brain functional connectivity
- Author
- Alrumaithi A.
- Bhatti J.
- Birt S.
- Bowler A.
- Bullmore E.
- Bullmore E.T.
- Cleridou K.
- Dadabhoy H.
- Davies E.
- Dolan R.
- Dolan R.J.
- Fearon P.
- Firkins A.
- Fonagy P.
- Fonagy P.
- Goodyer I.
- Goodyer I.M.
- Granville S.
- Harding E.
- Hauser T.
- Hopkins A.
- Inkster B.
- Isaacs D.
- Jones P.
- Jones P.B.
- Kievit R.
- King J.
- Kitzbichler M.G.
- Kokorikou D.
- Kundu P.
- Maurice C.
- McIntosh C.
- Memarzia J.
- Mills H.
- Moutoussis M.
- Neufeld S.
- Ooi C.
- O’Donnell C.
- Pantaleone S.
- Patel A.X.
- Prabhu G.
- Romero-Garcia R.
- Romero-Garcia R.
- Scott J.
- Seidlitz J.
- St Clair M.
- Suckling J.
- Toseeb U.
- Vaghi Matilde M.
- van Harmelen A.-L.
- Villis L.
- Váša F.
- Vértes P.
- Vértes P.E.
- Whitaker K.
- Whitaker K.J.
- Widmer B.
- Publication venue
- National Academy of Sciences
- Publication date
- 11/02/2020
- Field of study
Adolescent changes in human brain function are not entirely understood. Here, we used multiecho functional MRI (fMRI) to measure developmental change in functional connectivity (FC) of resting-state oscillations between pairs of 330 cortical regions and 16 subcortical regions in 298 healthy adolescents scanned 520 times. Participants were aged 14 to 26 y and were scanned on 1 to 3 occasions at least 6 mo apart. We found 2 distinct modes of age-related change in FC: “conservative” and “disruptive.” Conservative development was characteristic of primary cortex, which was strongly connected at 14 y and became even more connected in the period from 14 to 26 y. Disruptive development was characteristic of association cortex and subcortical regions, where connectivity was remodeled: connections that were weak at 14 y became stronger during adolescence, and connections that were strong at 14 y became weaker. These modes of development were quantified using the maturational index (MI), estimated as Spearman’s correlation between edgewise baseline FC (at 14 y, FC14) and adolescent change in FC (
), at each region. Disruptive systems (with negative MI) were activated by social cognition and autobiographical memory tasks in prior fMRI data and significantly colocated with prior maps of aerobic glycolysis (AG), AG-related gene expression, postnatal cortical surface expansion, and adolescent shrinkage of cortical thickness. The presence of these 2 modes of development was robust to numerous sensitivity analyses. We conclude that human brain organization is disrupted during adolescence by remodeling of FC between association cortical and subcortical areas
Searches for electroweak neutralino and chargino production in channels with Higgs, Z, and W bosons in pp collisions at 8 TeV
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- Abbaneo D.Cv
- Abbiendi G.Bc
- Abbrescia M.Bb
- Abdullin S.Dz
- Abdulsalam A.Ax
- Acosta D.Ea
- Acosta J.G.En
- Adair A.Ey
- Adam W.B
- Adams M.R.Ee
- Adams T.Ec
- Adiguzel A.Dc
- Adler V.G
- Adzic P.Cq
- Afanasiev S.Ci
- Agapitos A.Ao
- Agram J.-L.ad
- Ahmad A.Cf
- Ahmad M.Cf
- Ahuja S.Av
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- Albayrak E.A.Ef
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- Albrow M.Dz
- Alcaraz Maestre J.Cr
- Aldaya Martin M.Al
- Alderweireldt S.D
- Aleksandrov A.M
- Alexander J.Dx
- Alimena J.Do
- Alverson G.Eq
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- Amapane N.Bo
- Amsler C.Cy
- Anagnostou G.An
- Anastassov A.Er
- Anderson J.Dz
- Andrea J.Ad
- Andreev V.Cn
- Andreev Y.Cl
- Andrews W.Ds
- Androsov K.Bm
- Antonelli L.Et
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- Appelt E.Ff
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- Ata M.Ai
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- Aubin A.Ad
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- Autermann C.Ah
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- Behrenhoff W.Ak
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- Bhattacharya S.Aw
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- Bhawandeep U.Au
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- Brom J.-M.ad
- Brona G.Ch
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- Brownson E.Ev
- Brun H.Ct
- Bruner C.Eh
- Bruno G.H
- Buchmann M.A.Cx
- Buchmuller O.Dj
- Bucinskaite I.Ee
- Bunin P.Cj
- Bunkowski K.Ch
- Bunn J.Du
- Buontempo S.Bi
- Burgmeier A.Ak
- Burkett K.Dz
- Burt K.Dr
- Burton D.Dj
- Busson P.Ac
- Busza W.El
- Butler J.N.Dz
- Butler P.H.Ce
- Butz E.Am
- Bylsma B.Et
- Cabrillo I.J.Cu
- Caebergs T.I
- Caillol C.F
- Caiulo D.Bm
- Cakir A.Ak
- Calabria C.Bb
- Calamba A.Dv
- Calderon De La Barca Sanchez M.Dp
- Calderon A.Cu
- Cali I.A.El
- Calligaris L.Ak
- Calvert B.Ek
- Calvo E.Cr
- Campagnari C.Dt
- Campanini R.Bc
- Campbell A.Ak
- Camporesi T.Cv
- Candelise V.Bp
- Canelli M.F.Cy
- Cankocak K.Df
- Capiluppi P.Bc
- Cappello G.Bd
- Cardaci M.Cz
- Carlsmith D.Fi
- Carlson B.Dv
- Carrillo Montoya C.A.Af
- Carrillo Moreno S.Ca
- Cartiglia N.Bo
- Carvalho W.K
- Carver M.Ea
- Casal B.Cx
- Casarsa M.Bp
- Casasso S.Bo
- Casimiro Linares E.Cc
- Castaldi R.Bm
- Castello R.H
- Castilla-Valdez H.Bz
- Castro A.Bc
- Caudron A.H
- Cavallari F.Bn
- Cavallo F.R.Bc
- Cavallo N.Bi
- Cavanaugh R.Ee
- Ceard L.H
- Centis Vignali M.Al
- Cepeda M.Fi
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- Cerci S.Dc
- Cerminara G.Cv
- Cerrada M.Cr
- Chabert E.C.Ad
- Chakaberia I.Ei
- Chamizo Llatas M.Cr
- Chan K.M.Es
- Chan M.El
- Chang P.Da
- Chang S.Bq
- Chang Y.H.Da
- Chang Y.W.Da
- Chanon N.Cx
- Chao Y.Da
- Chaparro Sierra L.F.Q
- Charaf O.Dm
- Charlot C.Ac
- Chasco M.Eq
- Chasserat J.Af
- Chatterjee A.Dx
- Chatterjee K.Aw
- Chatterjee R.M.Ay
- Chauhan S.Dp
- Chen G.M.O
- Chen H.S.O
- Chen K.F.Da
- Chen K.H.Cz
- Chen M.O
- Chen P.H.Da
- Chen Y.Du
- Cheng T.Ea
- Cherepanov V.Aj
- Chertok M.Dp
- Cheung H.W.K.Dz
- Chhibra S.S.Bb
- Chierici R.Af
- Chinellato J.K
- Chiochia V.Cy
- Chiorboli M.Bd
- Chlebana F.Dz
- Choi M.Bv
- Choi S.Bu
- Choi Y.Bw
- Choi Y.K.Bw
- Chou J.P.Fb
- Choudhary B.C.Av
- Choudhury S.Ak
- Christopher G.Do
- Chu J.Dx
- Chwalek T.Am
- Ciangottini D.Bl
- Ciesielski R.Fa
- Cihangir S.Dz
- Cimmino A.G
- Ciocci M.A.Bm
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- Ciulli V.Be
- Civinini C.Be
- Claes D.R.Eo
- Clare R.Dr
- Clarida W.Ef
- Clarke C.Fg
- Clement E.Dh
- Clerbaux B.F
- Cockerill D.J.A.Di
- Codispoti G.Bc
- Colafranceschi S.Cv
- Colaleo A.Bb
- Cole J.E.Dk
- Colino N.Cr
- Collard C.Ad
- Colling D.Dj
- Contardo D.Af
- Conte E.Ad
- Contreras-Campana C.Fb
- Contreras-Campana E.Fb
- Conway J.Dp
- Conway R.Dp
- Cooper S.I.Dm
- Cornelis T.D
- Correa Martins Junior M.J
- Cossutti F.Bp
- Costa M.Bo
- Costa S.Bd
- Costantini S.G
- Costanza F.Ak
- Couderc F.Ab
- Coughlan J.A.Di
- Cousins R.Dq
- Covarelli R.Ez
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- Cox B.Fg
- Cox P.T.Dp
- Creanza D.Bb
- Cremaldi L.M.En
- Cripps N.Dj
- Crucy S.G
- Cuevas J.Ct
- Cuffiani M.Bc
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- Curry D.Ea
- Cussans D.Dh
- Cust\uf3dio A.K
- Cutajar M.Dj
- Cutts D.Do
- Cwiok M.Ch
- Czellar S.Ar
- D\u2019Agnolo R.T.Ds
- D\u2019Alessandro R.Be
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- Da Silveira G.G.H
- Dabrowski A.Cv
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- Dahmes B.Em
- Dahms T.Ac
- Dalchenko M.Ac
- Dall\u2019Osso M.Bj
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- Damgov J.Fe
- Danielson T.Dt
- Das S.Ea
- Daskalakis G.An
- Dasu S.Fi
- Daubie E.I
- Dauncey P.Dj
- David A.Cv
- Davies G.Dj
- de Barbaro P.Ez
- De Benedetti A.Em
- De Boer W.Am
- De Cosa A.Cy
- De Filippis N.Bb
- De Gruttola M.Ea
- De Guio F.Cv
- De Jesus Damiao D.K
- De La Cruz B.Cr
- De La Cruz-Burelo E.Bz
- De Lentdecker G.F
- De Mattia M.Ew
- De Oliveira Martins C.K
- De Palma M.Bb
- De Roeck A.Cv
- de Troc\uf3niz J.F.Cs
- De Visscher S.Cv
- De Wolf E.A.D
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- Deisher A.Cx
- Deiters K.Cw
- Dejardin M.Ab
- Del Re D.Bn
- Delaere C.H
- Delannoy A.G.Ff
- Delgado Peris A.Cr
- Dell\u2019Orso R.Bm
- Della Negra M.Dj
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- Demaria N.Bo
- Demina R.Ez
- Demiragli Z.Do
- Demortier L.Fa
- Denegri D.Ab
- Depasse P.Af
- Dermenev A.Cl
- Descroix A.Am
- Dewanjee R.K.Ay
- Dhingra N.Do
- Di Giovanni G.P.Ea
- Di Guida S.Bi
- Di Marco E.Du
- Di Matteo L.El
- Diamond B.Ec
- Diemoz M.Bn
- Dierlamm A.Am
- Dietz C.Da
- Dietz-Laursonn E.Ai
- Diez Pardos C.Ak
- Dildick S.G
- Dilsiz K.Ef
- Dimitrov A.N
- Dinardo M.E.Bh
- Dishaw A.Dt
- Dissertori G.Cx
- Dittmann J.Dl
- Dittmar M.Cx
- Dittmer S.Dx
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- Dobson M.Cv
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- Dodd L.Fi
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- Draeger A.R.Al
- Dragicevic M.B
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- Dremin I.Cn
- Driga O.Eu
- Drozdetskiy A.Es
- du Pree T.H
- Du R.O
- Duarte Campderros J.Cu
- Duarte J.Du
- Duchardt D.Ai
- Dudero P.R.Fe
- Dugad S.Ay
- Duggan D.Fb
- Dumanoglu I.Dc
- Dunne P.Dj
- Dupont-Sagorin N.Cv
- Duric S.Fi
- Durkin L.S.Et
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- Dutta S.Aw
- Dutta V.El
- Eckerlin G.Ak
- Ecklund K.M.Ey
- Eckstein D.Ak
- Edelhoff M.Ah
- Eerola P.Y
- Eggert N.Dx
- Eichhorn T.Ak
- Ekmedzic M.Cq
- El Mamouni H.Af
- Eller P.Cx
- Elliott-Peisert A.Cv
- Ellison J.Dr
- Elmer P.Eu
- Elvira V.D.Dz
- Eno S.C.Ek
- Epshteyn V.Cm
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- Erbacher R.Dp
- Erdmann M.Ai
- Erdmann W.Cw
- Erdogan Y.Aj
- Erfle J.Al
- Ershov A.Co
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- Eshaq Y.Ez
- Eskut E.Dc
- Etesami S.M.Az
- Eugster J.Cv
- Eusebi R.Fd
- Evangelou I.Ap
- Evans D.Ds
- Evdokimov O.Ee
- Everaerts P.Dq
- Fabbri F.Bc
- Fabbri F.Bf
- Fabbro B.Ab
- Fabjan C.B
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- Faccioli P.Ci
- Fagot A.G
- Fahim A.Az
- Fan J.Af
- Fan\uf2 L.Bl
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- Fantasia C.Dn
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- Favart D.H
- Favart L.F
- Fay J.Af
- Fedi G.Y
- Fehling D.Eg
- Feindt M.Am
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- Feld L.Ah
- Ferapontov A.Do
- Ferbel T.Ez
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- Ferguson T.Dv
- Ferguson W.Dj
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- Fernandez Bedoya C.Cr
- Fernandez Menendez J.Ct
- Fernandez Perez Tomei T.R.L
- Fernandez M.Cu
- Ferreira Parracho P.G.Ci
- Ferri F.Ab
- Ferro C.Cz
- Ferro F.Bg
- Field R.D.Ea
- Filipovic N.Ac
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- Finger M.
- Finger M.V
- Fiore L.Bb
- Fiorendi S.Bh
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- Fisher M.Ea
- Fisk I.Dz
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- Flacher H.Dh
- Flanagan W.Fd
- Flix J.Cr
- Florent A.Ac
- Florez C.Q
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- Flowers S.Et
- Flucke G.Ak
- Fo\ue0 L.Bm
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- Folgueras S.Ct
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- Ford W.T.Dw
- Forthomme L.H
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- Fouz M.C.Cr
- Fr\ufchwirth R.B
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- Franco Sevilla M.Dt
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- Frazier R.Dh
- Freeman J.Dz
- Frensch F.Am
- Friedl M.B
- Friis E.Fi
- Frueboes T.Cg
- Fulcher J.Dj
- Funk W.Cv
- Furic I.K.Ea
- Futyan D.Dj
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- G\uf6rner M.Al
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- G\ufcth A.Ai
- Gabusi M.Bk
- Gadrat S.Ae
- Galanti M.Bj
- Gallinaro M.Ci
- Gallo E.Be
- Gamsizkan H.Dd
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- Ganjour S.Ab
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- Garcia G.G
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- Gascon S.Af
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- Gaz A.Dw
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- Geffert P.Dt
- Geiser A.Ak
- Geisler M.Aj
- Gel\ue9 D.Ad
- Genchev V.M
- Gennai S.Bh
- George C.Dt
- Geralis T.An
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- Gerosa R.Bh
- Gershtein Y.Fb
- Geurts F.J.M.Ey
- Ghete V.M.B
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- Ghosh S.Ay
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- Giakoumopoulou V.A.An
- Giammanco A.H
- Giassi A.Bm
- Giffels M.Am
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- Gilbert A.Dj
- Gill K.Cv
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- Giordano D.Cv
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- Girgis S.Dc
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- Giubilato P.Bj
- Givernaud A.Ab
- Glege F.Cv
- Glushkov I.N
- Gninenko S.Cl
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- Goh J.Bw
- Gokbulut G.Dc
- Goldenzweig P.Ez
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- Golf F.Dt
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- Gomber B.Aw
- Gomez Ceballos G.El
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- Gonzalez Caballero I.Ct
- Gonzalez Lopez O.Cr
- Gonzalez Suarez R.Eo
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- Goodell J.Fg
- Gorbunov I.Cj
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- Gottschalk E.Dz
- Goulianos K.Fa
- Gouskos L.Dt
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- Govoni P.Bh
- Goy Lopez S.Cr
- Gozzelino A.Bj
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- Graziano A.Cu
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- Gurpinar E.Dc
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- Gutsche O.Dz
- Gyun D.Bu
- H\ue4rk\uf6nen J.Z
- H\uf6ing R.S.Al
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- Heredia-de La Cruz I.Bz
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- Hewamanage S.Eb
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- Hindrichs O.Ah
- Hinzmann A.Cy
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- Innocente V.Cv
- Iorio A.O.M.Bi
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- Ivanov A.Ei
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- Ivova Rikova M.Dr
- J\ufanior W.L.A.I
- Jacob J.Dh
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- Jain S.Aw
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- Klabbers P.Fi
- Klanner R.Al
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- Klima B.Dz
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- Kunori S.Fe
- Kuo C.M.Cz
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- Kuznetsova E.Am
- Kwan S.Dz
- Kwon E.Bw
- Kyberd P.Dk
- Kypreos T.Ea
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- La Licata C.Bp
- Lacaprara S.Bj
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- Lai Y.S.El
- Laird E.Do
- Lamichhane P.Fh
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- Lanaro A.Fi
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- Landsberg G.Do
- Lane R.Dj
- Lanev A.Cj
- Lange C.Cy
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- Lannon K.Es
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- Lariccia P.Bl
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- Lazaridis C.Fi
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- Lebourgeois M.Ds
- Lecoq P.Cv
- Ledovskoy A.Fg
- Lee B.Bu
- Lee J.Bw
- Lee K.S.Bu
- Lee S.Br
- Lee S.W.Fe
- Lee Y.-J.el
- Leggat D.Dk
- Lehti S.Z
- Lei Y.J.Da
- Lelas D.R
- Lemaitre V.H
- Lenz T.Al
- Lenzi P.Be
- Leonard J.Ak
- Leonardo N.Ew
- Leonidov A.Cn
- Leslie D.Dk
- Lethuillier M.Af
- Letts J.Ds
- Levchenko P.Ck
- Levchuk L.Dg
- Levin A.El
- Levine A.Fi
- Li H.Fg
- Li Q.P
- Li W.Ey
- Li W.P
- Liang S.O
- Libeiro T.Fe
- Ligabue F.
- Liko D.B
- Lin C.Fg
- Lin W.Cz
- Linacre J.Dz
- Lincoln D.Dz
- Lind\ue9n T.Z
- Ling T.Y.Et
- Lingemann J.Aj
- Linn S.Eb
- Lipka K.Ak
- Lipton R.Dz
- Lista L.Bi
- Litov L.N
- Liu H.Dl
- Liu H.Dr
- Liu S.P
- Liu T.Dz
- Liu Y.F.Da
- Lloret Iglesias L.Ct
- Lo Vetere M.Bg
- Lobanov A.Ak
- Lobelle Pardo P.Am
- Locci E.Ab
- Lohmann W.Ak
- Lokhtin I.Co
- Lomtadze T.Bm
- Long O.R.Dr
- Longo E.Bn
- Lopes Pegna D.Ew
- Lopez Virto A.Cu
- Lopez-Fernandez R.Bz
- Loukas D.An
- Louren\ue7o C.Cv
- Loveless R.Fi
- Low J.F.Ea
- Lowette S.E
- Lu R.-S.da
- Lu Y.Ek
- Lu Y.J.Cz
- Lucas C.Dh
- Lucas R.Dj
- Lucchini M.T.Bh
- Luckey P.D.El
- Luetic J.T
- Luiggi Lopez E.Dw
- Lujan P.Eu
- Luk M.Do
- Lukina O.Co
- Lungu G.Fa
- Luo W.Es
- Lusito L.Er
- Lustermann W.Cx
- Luthra A.Dr
- Lutz B.Ak
- Luukka P.Z
- Luyckx S.D
- Lychkovskaya N.Cm
- Lykken J.Dz
- Lynch S.Es
- Lyons L.Dj
- M\ue4enp\ue4\ue4 T.Z
- M\ufcller T.Am
- Ma T.El
- Macneill I.Ds
- Maes M.E
- Maeshima K.Dz
- Maggi G.Bb
- Maggi M.Bb
- Magini N.Cv
- Magnan A.-M.dj
- Maguire C.Ff
- Mahmoud M.A.W
- Maity M.Ay
- Majumder D.Da
- Majumder G.Ay
- Makouski M.Ei
- Maksimovic P.Eg
- Malakhov A.Cj
- Malberti M.Dr
- Malbouisson H.K
- Malcles J.Ab
- Malek M.Eh
- Malgeri L.Cv
- Malhotra S.Av
- Malik S.Dj
- Malik S.Eo
- Malvezzi S.Bh
- Mangano B.Cx
- Mankel R.Ak
- Mannelli M.Cv
- Mans J.Em
- Manthos N.Ap
- Mantovani G.Bl
- Manzoni R.A.Bh
- Mao Y.Ff
- Mao Y.P
- Maravin Y.Ei
- Marcellini S.Bc
- Marchesini I.Al
- Marco J.Cu
- Marco R.Cu
- Marfin I.Ak
- Margaroli F.Bn
- Margoni M.Bj
- Marinelli N.Es
- Marini A.C.Cx
- Marinov A.M
- Marionneau M.Ek
- Mariotti C.Bo
- Markou A.An
- Markou C.An
- Markowitz P.Eb
- Marlow D.Eu
- Marone M.Bp
- Maroussov V.Ew
- Marraffino J.M.Dz
- Marrouche J.Cv
- Martelli A.Bh
- Martin C.Eg
- Martin W.Dk
- Martinez Outschoorn V.I.Dz
- Martinez Rivero C.Cu
- Martinez Ruiz del Arbol P.Cx
- Martinez G.Eb
- Martini L.Bm
- Martins T.D.R.J
- Maruyama S.Dz
- Marzocchi B.Bh
- Maselli S.Bo
- Masetti G.Bc
- Masetti L.Cv
- Mason D.Dz
- Massironi A.Eq
- Mastrolorenzo L.Ac
- Matchev K.Ea
- Mathias B.Dj
- Matorras F.Cu
- Matos Figueiredo D.K
- Matveev V.Cj
- Mavromanolakis G.U
- Mazumdar K.Ay
- Mcbride P.Dz
- Mccartin J.G
- Mccoll N.Dt
- Md Ali M.A.B.By
- Medvedeva T.Eu
- Meier F.Eo
- Meijers F.Cv
- Meister D.Cx
- Mekterovic D.T
- Melo A.Ff
- Melzer-Pellmann I.-A.ak
- Menasce D.Bh
- Mendez H.Ev
- Meneguzzo A.T.Bj
- Meng Z.Dh
- Menichelli M.Bl
- Meola S.Bi
- Mercadante P.G.L
- Meridiani P.Bn
- Merino G.Cr
- Merkel P.Ew
- Merlo J.-P.ef
- Mermerkaya H.Ef
- Merola M.Bi
- Merschmeyer M.Ai
- Mersi S.Cv
- Meschi E.Cv
- Meschini M.Be
- Mesropian C.Fa
- Messineo A.Bm
- Mestvirishvili A.Ef
- Mesyats G.Cn
- Meyer A.Ai
- Meyer A.B.Ak
- Miceli T.Dp
- Micheli F.Bn
- Michlin B.Ey
- Migliore E.Bo
- Mignerey A.C.Ek
- Mikulec I.B
- Milenovic P.Ea
- Millan Mejias B.Cy
- Miller D.H.Ew
- Millet P.Ai
- Milosevic J.Cq
- Min\ue9 P.Ac
- Mirabito L.Af
- Mirman N.Dx
- Mironov C.Ac
- Mishra K.Dz
- Misiura M.Ch
- Missiroli M.Cs
- Mitselmakher G.Ea
- Mitta G.Ak
- Mittal M.Au
- Mnich J.Ak
- Modak A.Aw
- Moeller A.Ef
- Mohammadi Najafabadi M.Az
- Mohammadi A.F
- Mohanty A.K.Ax
- Mohanty G.B.Ay
- Mohapatra A.Fi
- Mohr N.Cx
- Moisenz P.Cj
- Molnar J.Ar
- Monaco V.Bo
- Montalvo R.Fd
- Montanari A.Bc
- Montanino D.Bp
- Moon C.S.Bm
- Moon D.H.Ee
- Mooney M.Eu
- Moortgat F.Cv
- Moran D.Cs
- Morelos Pineda A.Cc
- Moroni L.Bh
- Morovic S.Cv
- Mossolov V.C
- Mott A.Du
- Mousa J.U
- Mozer M.U.Am
- Mrenna S.Dz
- Mucia N.Er
- Mukherjee S.Aw
- Mulders M.Cv
- Mulhearn M.Dp
- Mundim L.K
- Muniz L.Ea
- Munoz Sanchez F.J.Cu
- Murray M.Eh
- Murumaa M.X
- Murzin V.Ck
- Musella P.Cv
- Musich M.Bo
- Musienko Y.Dz
- Mussgiller A.Ak
- My S.Bb
- N\ue4geli C.Cx
- N\ufcrnberg A.Am
- Nachtman J.Ef
- Nahn S.Dz
- Naimuddin M.Av
- Nam S.K.Bq
- Narain M.Do
- Naranjo I.N.Ac
- Naseri M.Az
- Nash D.Eq
- Nash J.Dj
- Nauenberg U.Dw
- Naumann-Emme S.Ak
- Navarria F.L.Bc
- Navarro De Martino E.Cr
- Nawrocki K.Cg
- Nayak A.Ak
- Negrete M.O.Dr
- Nessi-Tedaldi F.Cx
- Neu C.Fg
- Neumeister N.Ew
- Newbold D.M.Dh
- Newman H.B.Du
- Newman-Holmes C.Dz
- Ngadiuba J.Cy
- Nguyen F.Ci
- Nguyen H.Dr
- Nguyen M.Ac
- Nicolaou C.U
- Nicolas Kaufman G.Dx
- Nikitenko A.Dj
- Nishu N.Au
- Nogima H.K
- Noonan D.Eh
- Nourbakhsh S.Bn
- Novaes S.F.L
- Novgorodova O.Ak
- Nowack A.Aj
- Nowak F.Ak
- Ntomari E.Ak
- Nugent I.M.Aj
- Nuttens C.H
- Nuzzo S.Bb
- O\u2019Brien C.Ee
- O\u2019Dell V.Dz
- Obertino M.M.Bo
- Obraztsov S.Co
- Ocalan K.Dd
- Ocampo Rios A.A.G
- Ochando C.Ac
- Ochesanu S.D
- Odell N.Er
- Ogul H.Ef
- Oh Y.D.Br
- Ojalvo I.Fi
- Olaiya E.Di
- Olbrechts A.E
- Oliveros S.En
- Olivito D.Ds
- Olschewski M.Ai
- Olsen J.Eu
- Olszewski M.Ch
- Onel Y.Ef
- Onengut G.Dc
- Oreshkin V.Ck
- Organtini G.Bn
- Orimoto T.Eq
- Orsini L.Cv
- Ortona G.Bo
- Osipenkov I.Fd
- Ostapchuk A.Ah
- Ott J.Al
- Ozdemir K.Dc
- Ozok F.Ef
- Ozturk S.Dc
- P\ue9rez-Calero Yzquierdo A.Cr
- Pacher L.Bo
- Padeken K.Ai
- Padhi S.Ds
- Padley B.P.Ey
- Padula S.S.L
- Paganini P.Ac
- Pagano D.H
- Paganoni M.Bh
- Pakhotin Y.Fd
- Paktinat Mehdiabadi S.Az
- Palichik V.Cj
- Palinkas J.Ar
- Palla F.Bm
- Palmer C.Ds
- Panagiotou A.Ao
- Pandolfi F.Cx
- Pant L.M.Ax
- Panwalkar S.Fb
- Paoletti S.Be
- Paolucci P.Bi
- Papacz P.Ai
- Papadopoulos I.Ap
- Pape L.Cv
- Paradas E.Ap
- Paramatti R.Bn
- Paramesvaran S.Dh
- Parashar N.Ex
- Parida B.Ay
- Park H.Br
- Park I.C.Bv
- Park M.Fb
- Park S.Bv
- Park S.K.Bu
- Pashenkov A.Cl
- Pastika N.Em
- Pastrone N.Bo
- Patel R.Fb
- Patterson J.R.Dx
- Paulini M.Dv
- Paus C.El
- Pauss F.Cx
- Pavlov B.N
- Pazzini J.Bj
- Pearson T.Es
- Pedraza I.Cb
- Pedrini D.Bh
- Pedro K.Ek
- Peiffer T.Al
- Pela J.Dj
- Pellett D.Dp
- Pelliccioni M.Bo
- Peltola T.Z
- Pena C.Du
- Penzo A.Ef
- Perchalla L.Aj
- Perelygin V.Cj
- Perera L.En
- Perez E.Cv
- Perieanu A.Ah
- Perloff A.Fd
- Perni\ue8 L.F
- Perrey H.Ak
- Perries S.Af
- Perrini L.H
- Perrotta A.Bc
- Perrozzi L.Cv
- Perry T.Fi
- Peruzzi M.Cx
- Pesaresi M.Dj
- Petkov P.N
- Petrakou E.Da
- Petridis K.Dj
- Petrilli A.Cv
- Petrillo G.Ez
- Petrov V.Cp
- Petrucciani G.Cv
- Petrushanko S.Co
- Petyt D.Di
- Pfeiffer A.Cv
- Piccolo D.Bf
- Piedra Gomez J.Cu
- Pieri M.Ds
- Pierini M.Cv
- Pierro G.A.Fi
- Pietsch N.Al
- Pilot J.Dp
- Pimi\ue4 M.Cv
- Pin A.H
- Pinna Angioni G.L.Bo
- Piotrzkowski K.H
- Piparo D.Cv
- Piperov S.M
- Pirou\ue9 P.Eu
- Pitzl D.Ak
- Placakyte R.Ak
- Plagge M.Cv
- Planer M.Es
- Plestina R.O
- Poehlsen J.Al
- Poehlsen T.Al
- Pol M.E.J
- Polatoz A.Dc
- Polese G.Fi
- Polic D.R
- Poll A.Dh
- Pollack B.Er
- Pompili A.Bb
- Pooth O.Aj
- Popov A.H
- Popov V.Cm
- Potenza A.Bo
- Potenza R.Bd
- Pozdnyakov A.Er
- Pozzobon N.Bj
- Prado Da Silva W.L.K
- Primavera F.Bc
- Prokofyev O.Dz
- Prosper H.Ec
- Psallidas A.An
- Ptochos F.U
- Puerta Pelayo J.Cr
- Pugliese G.Bb
- Puigh D.Et
- Puljak I.R
- Python Q.E
- Qian S.J.P
- Quan X.Eu
- Quast G.Am
- Quertenmont L.H
- Quintario Olmeda A.Cr
- Quittnat M.Cx
- R\uf6cker S.Am
- Rabady D.B
- Rabbertz K.Am
- Racz A.Cv
- Radburn-Smith B.C.Ew
- Radi A.W
- Radogna R.Bb
- Ragazzi S.Bh
- Rahatlou S.Bn
- Rahbaran B.B
- Rahmat R.Ef
- Raics P.As
- Raidal M.X
- Rakness G.Dq
- Ralph D.El
- Ramirez Vargas J.E.Ev
- Rander J.Ab
- Ranjan K.Av
- Rappoccio S.Ep
- Raspereza A.Ak
- Rathjens D.Al
- Ratnikov F.Am
- Ratti S.P.Bk
- Raupach F.Ah
- Raymond D.M.Dj
- Razis P.A.U
- Rebane L.Cx
- Rebassoo F.Ej
- Redaelli N.Bh
- Redjimi R.Ey
- Redondo I.Cr
- Regnard S.Ac
- Reid I.D.Dk
- Reis T.F
- Reithler H.Ai
- Rekovic V.Cq
- Renker D.Cw
- Reucroft S.Ce
- Rezaei Hosseinabadi F.Az
- Ribeiro Cipriano P.M.Ak
- Riccardi C.Bk
- Ricci-Tam F.Dp
- Richardson C.Dn
- Richman J.Dt
- Rinkevicius A.Ea
- Rizzi A.Bm
- Roberts J.Ey
- Robmann P.Cy
- Robutti E.Bg
- Rodenburg M.Et
- Rodozov M.M
- Rodr\uedguez-Marrero A.Y.Cu
- Rodrigo T.Cu
- Rodrigues Antunes J.Ci
- Rodriguez J.L.Eb
- Roe J.Fd
- Rogan C.Du
- Rogerson S.Dj
- Roh Y.Bu
- Rohe T.Cw
- Rohlf J.Dn
- Rohringer H.B
- Roland B.D
- Roland C.El
- Roland G.El
- Rolandi G.Cv
- Romanowska-Rybinska K.Cg
- Romeo F.Bl
- Romero A.Bo
- Romero L.Cr
- Ron E.Ak
- Ronchese P.Bj
- Ronga F.J.Cy
- Rose A.Dj
- Rose A.Fd
- Rose K.Fc
- Rosowsky A.Ab
- Ross I.Fi
- Rossi A.M.Bc
- Rossini M.Cx
- Rougny R.D
- Rovelli C.Bn
- Rovelli T.Bc
- Rovere M.Cv
- Roy D.Aw
- Ruchti R.Es
- Ruiz Alvarez J.D.Af
- Ruiz-Jimeno A.Cu
- Rumerio P.Dm
- Rusack R.Em
- Rusakov S.V.Cn
- Ruspa M.Bo
- Russ J.Dv
- Ryckbosch D.G
- Ryd A.Dx
- Ryu G.Bv
- Ryu M.S.Bv
- Ryutin R.Cp
- Sabes D.Af
- Sacchi R.Bo
- Safarzadeh B.Az
- Safonov A.Fd
- Safronov G.Cm
- Saha A.Bl
- Sahin M. 6.Ak
- Saini L.K.Ei
- Saka H.Eu
- Sakharov A.Br
- Sakulin H.Cv
- Sakuma T.Fd
- Salazar Ibarguen H.A.Cb
- Salerno R.Ac
- Salfeld-Nebgen J.Ak
- Salur S.Fb
- Salva Diblen S.G
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- Salvini P.Bk
- Sammet J.Ah
- Sanabria J.C.Q
- Sanchez-Hernandez A.Bz
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- Sanders S.Eh
- Sani M.Ds
- Santanastasio F.Bn
- Santaolalla J.K
- Santocchia A.Bl
- Santoro A.K
- Saoulidou N.Ao
- Sarangi T.Fi
- Sarkar S.Aw
- Sauvan J.B.Ac
- Savin A.Fi
- Savoy-Navarro A.Bm
- Savrin V.Co
- Saxena P.Ak
- Scarborough T.Dl
- Sch\ue4fer C.Cv
- Sch\uf6fbeck R.B
- Schael S.Ah
- Schettler H.Al
- Schizzi A.Bp
- Schleper P.Al
- Schlieckau E.Al
- Schmidt A.Al
- Schmidt R.Ak
- Schmitt M.Er
- Schmitz S.A.Ai
- Schnetzer S.Fb
- Schoerner-Sadenius T.Ak
- Schr\uf6der M.Ak
- Schwick C.Cv
- Scodellaro L.Cu
- Searle M.Dp
- Seez C.Dj
- Segala M.Do
- Seidel M.Al
- Seitz C.Ak
- Seixas J.Ci
- Sekaric J.Eh
- Sekmen S.Dd
- Selvaggi G.Bb
- Selvaggi M.H
- Semenov S.Cm
- Sen S.Ef
- Senkin S.Dh
- Seo H.Bw
- Serban A.T.Bm
- Seva T.F
- Sexton-Kennedy E.Dz
- Sgandurra L.Af
- Sguazzoni G.Be
- Shah M.A.Cf
- Shalhout S.Dp
- Sharan M.Aw
- Sharma A.Cv
- Sharma M.Ff
- Sharma S.Dz
- Sharma V.Av
- Sharma V.Ds
- Sharp P.Dj
- Shchutska L.Ea
- Sheldon P.Ff
- Shepherd-Themistocleous C.H.Di
- Shi X.Ew
- Shipsey I.Ew
- Shmatov S.Cj
- Shoaib M.Cf
- Shrestha S.Ei
- Shrinivas A.Dr
- Shukla P.Ax
- Shumeiko N.C
- Siegrist P.Cv
- Sigamani M.G
- Sikler F.Aq
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- Silva P.Cv
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- Simon M.Cv
- Simon S.Ds
- Simonetto F.Bj
- Simonis H.J.Am
- Singh G.Bb
- Singh J.B.Au
- Singovsky A.Em
- Sinthuprasith T.Do
- Sirois Y.Ac
- Siroli G.P.Bc
- Sirunyan A.M.A
- Skatchkov N.Cj
- Skhirtladze N.Ei
- Skinnari L.Dx
- Skuja A.Ek
- Smirnov I.Ck
- Smirnov V.Cj
- Smith G.Et
- Smith J.Dp
- Smith J.G.Dw
- Smith V.J.Dh
- Smith W.H.Fi
- Snigirev A.Co
- Snook B.Ff
- Snow G.R.Eo
- Snowball M.Ea
- Soares M.S.Cr
- Sobol A.Cp
- Soffi L.Bn
- Sogut K.Dc
- Soha A.Dz
- Sola V.Al
- Solano A.Bo
- Somalwar S.Fb
- Son D.C.Br
- Song S.Bt
- Sonnenschein L.Ai
- Sordini V.Af
- Sorokin P.Dg
- Spagnolo P.Bm
- Spalding W.J.Dz
- Spanier S.Fc
- Spannagel S.Ak
- Speer T.Do
- Sperka D.Dn
- Sphicas P.Cv
- Spiegel L.Dz
- Spiezia A.Bl
- Spiga D.Cv
- Spiridonov A.Cm
- Spiropulu M.Du
- Squillacioti P.Bm
- Squires M.Dp
- Srimanobhas N.Db
- St. John J.Dn
- St\uf6ckli F.El
- Stadie H.Al
- Stahl A.Aj
- Staiano A.Bo
- Starodumov A.Cx
- Steggemann J.Cv
- Steinbr\ufcck G.Al
- Stenson K.Dw
- Stephans G.S.F.El
- Stickland D.Eu
- Stieger B.Cv
- Stiliaris E.Ao
- Stober F.M.Am
- Stolin V.Cm
- Stolp D.Dp
- Stone R.Fb
- Stoye M.Cv
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- Strauss J.B
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- Strom D.E
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- Stupak J.Ex
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- Suarez Gonzalez J.C
- Suarez I.Fd
- Sudano E.Ds
- Sudhakar K.Ay
- Sudic L.T
- Sulak L.Dn
- Sulimov V.Ck
- Sultanov G.M
- Summers D.En
- Sumorok K.El
- Sumowidagdo S.Dr
- Sun W.Dx
- Sunar Cerci D.Dc
- Sung K.Er
- Surat U.E.Dd
- Suwonjandee N.Db
- Svintradze I.Ei
- Svyatkovskiy A.Ew
- Swain S.K.At
- Swanson J.Do
- Swartz M.Eg
- Symonds P.Dk
- Szillasi Z.Ar
- Szleper M.Cg
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- Tabarelli de Fatis T.Bh
- Tadel M.Ds
- Takahashi M.Cx
- Takahashi Y.Cv
- Takasugi E.Dq
- Tali B.Dc
- Talvitie J.Aa
- Tambe N.Em
- Tamponi U.Bo
- Tan P.Ef
- Tao J.O
- Tapper A.Dj
- Taroni S.Cy
- Tatarinov A.Fd
- Taurok A.B
- Tavernier S.E
- Taylor L.Dz
- Tcholakov V.M
- Tenchini R.Bm
- Teo W.D.Dx
- Teodorescu L.Dk
- Teyssier D.Ai
- Th\ufcer S.Ai
- Thea A.Di
- Theofilatos K.Cx
- Thom J.Dx
- Thomas L.F
- Thomas S.Fb
- Thomassen P.Fb
- Thompson J.Dx
- Thyssen F.G
- Tiko A.X
- Timciuc V.Du
- Tiras E.Ef
- Titov M.Ab
- Tkaczyk S.Dz
- Tlisov D.Cl
- To W.Dt
- Tomalin I.R.Di
- Tonelli Manganote E.J.K
- Tonelli G.Bm
- Tonjes M.B.Ek
- Tonwar S.C.Ek
- Topakli H.Dc
- Topkar A.Ax
- Topsis-Giotis I.An
- Torassa E.Bj
- Toropin A.Cl
- Tosi M.Bj
- Tosi N.Bc
- Tosi S.Bg
- Tourtchanovitch L.Cp
- Traczyk P.Bn
- Tran N.V.Dz
- Travaglini R.Bc
- Treberer-Treberspurg W.B
- Treille D.Cv
- Tricomi A.Bd
- Trioss A.Bj
- Tripathi M.Dp
- Trocino D.Eq
- Trocsanyi Z.L.As
- Troendle D.Al
- Tropiano A.Be
- Troshin S.Cp
- Tsamalaidze Z.Ag
- Tsirou A.Cv
- Tu Y.Ds
- Tucker J.Dx
- Tully C.Eu
- Tumasyan A.A
- Tuo S.Ff
- Tuominen E.Z
- Tuominiemi J.Z
- Tuovinen E.Z
- Turkewitz J.Em
- Turner M.Dk
- Turner P.Ee
- Tuuva T.Aa
- Tuve C.Bd
- Tytgat M.G
- Tyurin N.Cp
- Tzeng Y.M.Da
- Ujvari B.As
- Ulmer K.A.Dw
- Ulrich R.Am
- Umer T.Bp
- Uplegger L.Dz
- Usai E.Al
- Uvarov L.Ck
- Uzunian A.Cp
- Vaandering E.W.Dz
- Valls N.Es
- Valuev V.Dq
- Van De Klundert M.D
- Van Doninck W.E
- Van Haevermaet H.D
- Van Hove P.Ad
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- Varela J.Ci
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- Vargas Trevino A.D.R.Ak
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- Vavilov S.Ck
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- Velasco M.Er
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- Ventura S.Bj
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- Vesztergombi G.Aq
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- Vilela Pereira A.K
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- Vitulo P.Bk
- Vizan Garcia J.M.H
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- Vorobiev I.Dv
- Vorobyev A.Ck
- Vorobyev A.Ck
- Voutilainen M.Y
- Vuosalo C.Fi
- Vutova M.M
- W\uf6hri H.K.Cv
- W\ufcrthwein F.Ds
- Wagner S.R.Dw
- Wagner-Kuhr J.Am
- Walker M.Fb
- Wallny R.Cx
- Walsh R.Ak
- Waltenberger W.B
- Wang D.P
- Wang F.Ew
- Wang J.F
- Wang Q.Eh
- Wang R.-J.eq
- Wang X.O
- Wang Z.O
- Wardle N.Cv
- Wayand S.Am
- Wayne M.Es
- Weber H.A.Cx
- Weber H.Ah
- Weber M.Ai
- Weber M.Dq
- Weiler T.Am
- Weinberg M.Ec
- Welke C.Ds
- Wendland L.Z
- Weng Y.Dx
- Werner J.S.Eu
- West C.Dt
- Wetzel J.Ef
- Whitbeck A.Dz
- Whitmore J.Dz
- Wickramage N.Ay
- Wilbur S.Dp
- Wilken R.Da
- Wilkinson R.Du
- Williams T.Dh
- Wimpenny S.Dr
- Winer B.L.Et
- Winn D.Dy
- Winstrom L.Dx
- Wissing C.Ak
- Wittich P.Dx
- Wittmer B.Ah
- Wolf M.Es
- Wolf R.Am
- Wolfe H.Et
- Wollny H.Cv
- Wolszczak W.Ch
- Womersley W.J.Di
- Won S.Er
- Wood D.Eq
- Wood J.Fg
- Wood J.S.Eh
- Woodard A.Es
- Woods N.Fi
- Worm S.D.Di
- Wright D.Ej
- Wulsin H.W.Et
- Wulz C.-E.b
- Wyslouch B.El
- Xiao H.Af
- Xie S.Du
- Xie W.Ew
- Xu L.Ew
- Yagil A.Ds
- Yalvac M.Dd
- Yang F.Dz
- Yang M.El
- Yang Y.Cy
- Yazgan E.G
- Yelton J.Ea
- Yetkin T.Ef
- Yi K.Ef
- Yilmaz Y.Ac
- Yohay R.Dp
- Yoo H.D.Ew
- Yoo J.Ds
- Yoon A.S.El
- York A.Fc
- Yu I.Bw
- Yu S.S.Cz
- Yumiceva F.Ed
- Zabel J.Ey
- Zabi A.Ac
- Zablocki J.Ew
- Zaganidis N.G
- Zakaria M.Ea
- Zalewski P.Cg
- Zanetti A.Bp
- Zanetti M.El
- Zarubin A.Cj
- Zeinali M.Az
- Zenz S.C.Dj
- Zeuner W.D.Cv
- Zeyrek M.Dd
- Zhang J.Eq
- Zhang L.P
- Zheng Y.Ew
- Zhokin A.Cm
- Zhu R.Y.Du
- Zhukov V.Ah
- Zhukova V.El
- Zito G.Bb
- Zotto P.Bj
- Zou W.P
- Zsigmond A.J.Aq
- Zucchetta A.Bj
- Zuranski A.Eu
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2014
- Field of study
Searches for supersymmetry (SUSY) are presented based on the electroweak pair production of neutralinos and charginos, leading to decay channels with Higgs, Z, and W bosons and undetected lightest SUSY particles (LSPs). The data sample corresponds to an integrated luminosity of about 19.5 fb(-1) of proton-proton collisions at a center-of-mass energy of 8 TeV collected in 2012 with the CMS detector at the LHC. The main emphasis is neutralino pair production in which each neutralino decays either to a Higgs boson (h) and an LSP or to a Z boson and an LSP, leading to hh, hZ, and ZZ states with missing transverse energy (E-T(miss)). A second aspect is chargino-neutralino pair production, leading to hW states with E-T(miss). The decays of a Higgs boson to a bottom-quark pair, to a photon pair, and to final states with leptons are considered in conjunction with hadronic and leptonic decay modes of the Z and W bosons. No evidence is found for supersymmetric particles, and 95% confidence level upper limits are evaluated for the respective pair production cross sections and for neutralino and chargino mass values
Simultaneous energy and mass calibration of large-radius jets with the ATLAS detector using a deep neural network
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- -C Hsu S.
- -F Grivaz J.
- -J Wang R.
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- A Lee A.C.
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- Whiteson D.
- Wickremasinghe L.
- Wiedenmann W.
- Wielers M.
- Wiglesworth C.
- Wilbern D.J.
- Wilkens H.G.
- Williams D.M.
- Williams H.H.
- Williams S.
- Willocq S.
- Wilson B.J.
- Windischhofer P.J.
- Winkel F.I.
- Winklmeier F.
- Winter B.T.
- Winter J.K.
- Wittgen M.
- Wobisch M.
- Wolffs Z.
- Wollrath J.
- Wolter M.W.
- Wolters H.
- Woodward E.L.
- Worm S.D.
- Wosiek B.K.
- Wozniewski S.
- Woźniak K.W.
- Wraight K.
- Wu C.
- Wu M.
- Wu M.
- Wu S.L.
- Wu X.
- Wu Y.
- Wu Z.
- Wuerzinger J.
- Wyatt T.R.
- Wynne B.M.
- Xella S.
- Xia L.
- Xia M.
- Xiang J.
- Xie M.
- Xie X.
- Xin S.
- Xiong A.
- Xiong J.
- Xu D.
- Xu H.
- Xu L.
- Xu R.
- Xu T.
- Xu Y.
- Xu Z.
- Xu Z.
- Y Kong A.X.
- Y Ng Y.W.
- Y Peters R.F.
- Yabsley B.
- Yacoob S.
- Yamaguchi Y.
- Yamashita E.
- Yamauchi H.
- Yamazaki T.
- Yamazaki Y.
- Yan J.
- Yan S.
- Yan Z.
- Yang H.J.
- Yang H.T.
- Yang S.
- Yang T.
- Yang X.
- Yang X.
- Yang Y.
- Yang Y.
- Yang Z.
- Yao W.-M.
- Ye H.
- Ye H.
- Ye J.
- Ye S.
- Ye X.
- Yeh Y.
- Yeletskikh I.
- Yeo B.K.
- Yexley M.R.
- Yin P.
- Yorita K.
- Younas S.
- Young C.
- Yu Smirnov S.
- Yu Soldatov E.
- Yu C.
- Yu Y.
- Yuan M.
- Yuan R.
- Yue L.
- Zaazoua M.
- Zabinski B.
- Zaid E.
- Zak Z.K.
- Zakareishvili T.
- Zakharchuk N.
- Zambito S.
- Zamora Saa J.A.
- Zang J.
- Zanzi D.
- Zaplatilek O.
- Zeitnitz C.
- Zeng H.
- Zeng J.C.
- Zenger Jr D.T.
- Zenin O.
- Zenz S.
- Zerradi S.
- Zerwas D.
- Zhai M.
- Zhang D.F.
- Zhang J.
- Zhang J.
- Zhang K.
- Zhang L.
- Zhang P.
- Zhang R.
- Zhang S.
- Zhang S.
- Zhang T.
- Zhang X.
- Zhang X.
- Zhang Y.
- Zhang Y.
- Zhang Y.
- Zhang Z.
- Zhang Z.
- Zhao H.
- Zhao T.
- Zhao Y.
- Zhao Z.
- Zhemchugov A.
- Zheng J.
- Zheng K.
- Zheng X.
- Zheng Z.
- Zhong D.
- Zhou B.
- Zhou H.
- Zhou N.
- Zhou Y.
- Zhou Y.
- Zhu C.G.
- Zhu J.
- Zhu Y.
- Zhu Y.
- Zhuang X.
- Zhukov K.
- Zimine N.I.
- Zinsser J.
- Ziolkowski M.
- Zoccoli A.
- Zoch K.
- Zorbas T.G.
- Zormpa O.
- Zou W.
- Zwalinski L.
- Åkesson T.P.A.
- Ženiš T.
- Živković L.
- Publication venue
- IOP Publishing
- Publication date
- 01/09/2024
- Field of study
The energy and mass measurements of jets are crucial tasks for the Large Hadron Collider experiments. This paper presents a new calibration method to simultaneously calibrate these quantities for large-radius jets measured with the ATLAS detector using a deep neural network (DNN). To address the specificities of the calibration problem, special loss functions and training procedures are employed, and a complex network architecture, which includes feature annotation and residual connection layers, is used. The DNN-based calibration is compared to the standard numerical approach in an extensive series of tests. The DNN approach is found to perform significantly better in almost all of the tests and over most of the relevant kinematic phase space. In particular, it consistently improves the energy and mass resolutions, with a 30% better energy resolution obtained for transverse momenta pT > 500 GeV
Survival of Patients with Subglottic Squamous Cell Carcinoma
- Publication venue
- 'MultiMed Inc.'
- Publication date
- 01/12/2018
- Field of study
Objective: Subglottic squamous cell carcinoma is a rare subsite of laryngeal cancer that behaves more aggressively and portends a worse prognosis. Using a population-based cancer registry, our objective was to report overall survival (OS) and laryngectomy-free survival (LFS) in patients diagnosed with subglottic squamous cell carcinoma, and to determine whether primary laryngectomy results in improved survival. Methods: This retrospective population-based study considered patients with a new diagnosis of squamous cell carcinoma in the province of Ontario over a 15-year period (1995–2009). The Ontario Cancer Registry was examined for patients with the diagnosis of interest during the period of interest. Linked population-based databases were used to obtain patient demographics, comorbidity measures, staging, survival, and primary treatment with laryngectomy. Results: Of 4927 patients identified to have laryngeal carcinoma, 89 were defined as having primary subglottic carcinoma (1.8%). In the subglottic cohort, 68 patients were men (76.4%), and mean age at diagnosis was 68 years (interquartile range: 60–77 years). The 5-year OS was 47.2%, and the 5-year LFS was 31.5%. In 13 patients (15%), the primary treatment was laryngectomy, which, compared with primary radiation, did not predict for improved OS. No differences in OS or LFS were observed during the 15-year study period (OS p = 0.42, LFS p = 0.83). Conclusions: The survival of patients with subglottic carcinoma is poor and has remained stable over time (1995–2009). Compared with primary radiation, primary treatment with laryngectomy does not appear to improve OS
The Control of Atrial Contraction by Ventriculo-Atrial Pacing in the Dog With AV Block
- Author
- Publication venue
- 'Wiley'
- Publication date
- Field of study
Interobserver variability in the delineation of the primary lung cancer and lymph nodes on different four-dimensional computed tomography reconstructions
- Author
- Cole
- Dominic A.X. Schinagl
- Ezhil
- Feuerstein
- Jacqueline Pomp
- Jacqueline Theuws
- Jager
- Jameson
- Jonathan Khalifa
- José S.A. Belderbos
- Katrien De Jaeger
- Konert
- Louie
- Marcel van Herk
- Muirhead
- Noëlle van der Voort Van Zijp
- Patel
- Paul van de Vaart
- Persson
- Peulen
- Peulen
- Steenbakkers
- Steenbakkers
- Susan Mercieca
- Underberg
- van Baardwijk
- van Herk
- Vinod
- Wolthaus
- Wolthaus
- Wolthaus
- Publication venue
- 'Elsevier BV'
- Publication date
- Field of study
Association of perioperative plasma neutrophil gelatinase-associated lipocalin levels with 3-year mortality after cardiac surgery: A prospective observational cohort study
- Author
- Akhter S.
- Butrymowicz I.
- Chu M.
- Coca S.G.
- Darr U.
- Devarajan P.
- Dewar M.
- Edelstein C.
- Elefteriades J.
- Garg A.X.
- Garwood S.
- Geirsson A.
- Goldbach M.
- Guo L.R.
- Hashim S.
- Jeevanandam V.
- Koyner J.L.
- Krumholz H.
- McKenzie N.
- Moledina D.G.
- Myers M.L.
- Nagy J.
- Novick R.
- Palijan A.
- Parikh C.R.
- Passik C.
- Patel U.D.
- Quantz M.
- Raman J.
- Shlipak M.G.
- Swaminathan M.
- Thiessen-Philbrook H.
- Zappitelli M.
- Publication venue
- 'Public Library of Science (PLoS)'
- Publication date
- 01/01/2015
- Field of study
10.1371/journal.pone.0129619PLoS ONE106e012961
Integração de dados do quickbird e atributos do terreno no mapeamento digital de solos por redes neurais artificiais
- Author
- BEHRENS T.
- BORUVKA L.
- CHAGAS C.S.
- CHAPLOT V.
- CONGALTON R.G.
- César da Silva Chagas
- DOBOS E.
- ERMINI L.
- FAUSSETT L.V.
- FOODY G.M.
- HIROSE Y.
- KEY J.
- LAGACHERIE P.
- LANDIS J.R.
- MANNING J.
- McBRATNEY A.B.
- McKENZIE N.J.
- MINASNY B.
- OLIVEIRA M.J.R.
- PARK S.J.
- PATEL R.M.
- PENIZEK V.
- RYAN P.J.
- SANTOS R.D.
- SARLE W.S.
- SIART C.
- Silvio Barge Bhering
- SULLIVAN D.G.
- THOMAS A.L.
- TSO B.
- Waldir de Carvalho Júnior
- ZELL A.
- ZHU A.X.
- Publication venue
- 'FapUNIFESP (SciELO)'
- Publication date
- Field of study