120 research outputs found
Unit bar architecture in a highlyâvariable fluvial discharge regime: Examples from the Burdekin River, Australia
- Author
- Publication venue
- 'Wiley'
- Publication date
- 01/01/2020
- Field of study
Unit bars are relatively large bedforms that develop in rivers over a wide range of climatic regimes. Unit bars formed within the highly-variable discharge Burdekin River in Queensland, Australia, were examined over three field campaigns between 2015 and 2017. These bars had complex internal structures, dominated by co-sets of cross-stratified and planar-stratified sets. The cross-stratified sets tended to down-climb. The development of complex internal structures was primarily a result of three processes: (i) superimposed bedforms reworking the unit bar avalanche face; (ii) variable discharge triggering reactivation surfaces; and (iii) changes in bar growth direction induced by stage change. Internal structures varied along the length and across the width of unit bars. For the former, down-climbing cross-stratified sets tended to pass into single planar cross-stratified deposits at the downstream end of emergent bars; such variation related to changes in fluvial conditions whilst bars were active. A hierarchy of six categories of fluvial unsteadiness is proposed, with these discussed in relation to their effects on unit bar (and dune) internal structure. Across-deposit variation was caused by changes in superimposed bedform and bar character along bar crests; such changes related to the three-dimensionality of the channel and bar geometry when bars were active. Variation in internal structure is likely to be more pronounced in unit bar deposits than in smaller bedform (for example, dune) deposits formed in the same river. This is because smaller bedforms are more easily washed out or modified by changing discharge conditions and their smaller dimensions restrict the variation in flow conditions that occur over their width. In regimes where unit bar deposits are well-preserved, their architectural variability is a potential aid to their identification. This complex architecture also allows greater resolution in interpreting the conditions before and during bar initiation and development
The Physics of Star Cluster Formation and Evolution
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- A. Bellini
- A. Blaauw
- A. Blaauw
- A. Bragaglia
- A. Bragaglia
- A. DâErcole
- A. DâErcole
- A. DâErcole
- A. DâErcole
- A. Ginsburg
- A. Hacar
- A. JordĂĄn
- A. Kuznetsova
- A. Kuznetsova
- A. Maeder
- A. Mucciarelli
- A. Poveda
- A. Renzini
- A. Stolte
- A. Stolte
- A. Toomre
- A. Weiss
- A. Whitworth
- A.E. Glassgold
- A.F. Marino
- A.F. Marino
- A.F. Marino
- A.F. Marino
- A.L. Plunkett
- A.L. Rosen
- A.P. Milone
- A.P. Milone
- A.P. Milone
- A.P. Milone
- A.P. Milone
- A.V. Sweigart
- B. Robertson
- B. Zuckerman
- B. Zuckerman
- B.G. Elmegreen
- B.G. Elmegreen
- B.G. Elmegreen
- B.G. Elmegreen
- C. Charbonnel
- C. Conroy
- C. Federrath
- C. Federrath
- C. Hunter
- C. Leitherer
- C. Norman
- C.-F. Lee
- C.-F. Lee
- C.-Y. Chen
- C.C. Lin
- C.D. Matzner
- C.E. Hansen
- C.F. Gammie
- C.F. McKee
- C.J. Lada
- C.J. Wareing
- C.K. Gilligan
- D. Arzoumanian
- D. Belloni
- D. Butler
- D. Ceverino
- D. Geisler
- D. Lynden-Bell
- D. Nardiello
- D. Nardiello
- D. Perez-Becker
- D. Rahner
- D. Rahner
- D. Rodgers-Lee
- D. Schaerer
- D. Semenov
- D. Szécsi
- D. Yong
- D. Yong
- D. Zhang
- D.A. Gouliermis
- D.F. Figer
- D.F. Figer
- D.L. Walker
- D.L. Walker
- D.S. Shepherd
- E. Audit
- E. Audit
- E. Bressert
- E. Carretta
- E. Carretta
- E. Carretta
- E. Carretta
- E. Dalessandro
- E. Gavagnin
- E. Heringer
- E. Keto
- E. Pancino
- E. Pancino
- E. Terlevich
- E. VĂĄzquez-Semadeni
- E. VĂĄzquez-Semadeni
- E. VĂĄzquez-Semadeni
- E. VĂĄzquez-Semadeni
- E. VĂĄzquez-Semadeni
- E. VĂĄzquez-Semadeni
- E. VĂĄzquez-Semadeni
- E. VĂĄzquez-Semadeni
- E.D. Feigelson
- E.I. Vorobyov
- E.I. Vorobyov
- E.J. Lee
- E.M. Huff
- E.M. OâMalley
- E.O. Vasiliev
- E.P. Lagioia
- E.S. Gentry
- E.T. Vishniac
- F. DâAntona
- F. Heitsch
- F. Heitsch
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- F. Martins
- F. Niederhofer
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- F. Palla
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- F. Palla
- F. Thévenin
- F. Wyrowski
- F. Yusef-Zadeh
- F.C. Adams
- F.C. Adams
- F.H. Shu
- F.H. Shu
- G. Laughlin
- G. Piotto
- G. Piotto
- G. Piotto
- G. Piotto
- G.-X. Li
- G.A. Añorve-Zeferino
- G.B. Field
- G.B. Field
- G.C. GĂłmez
- G.E. Langer
- G.S. Da Costa
- Gaia Collaboration
- H. Baumgardt
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- H. Cohn
- H. Kirk
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- H. Li
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- H. Zinnecker
- H. Zinnecker
- H.-J. LĂŒ
- H.-R.V. Chen
- H.B. Liu
- H.C. Plummer
- H.G. Arce
- H.H.-H. Chen
- H.J.G.L.M. Lamers
- H.S. Liszt
- I. Baraffe
- I. Cabrera-Ziri
- I. Cabrera-Ziri
- I.A. Bonnell
- I.A. Bonnell
- I.A. Bonnell
- I.A. Bonnell
- I.I. Ivans
- I.R. King
- I.R. Stevens
- J. Ballesteros-Paredes
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- J. Norris
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- J. PalouĆĄ
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- J.E. Pineda
- J.F. Gallimore
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- J.J. Kim
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- J.M.D. Kruijssen
- J.M.D. Kruijssen
- J.M.D. Kruijssen
- J.P. Farias
- J.P. Farias
- J.P. Naiman
- J.S. Clark
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- J.S. Vink
- J.W.Y. Lee
- K. Hollyhead
- K. Kratter
- K. Kretschmer
- K. Lind
- K. Sugitani
- K.E.I. Tanaka
- K.M. Kratter
- K.R. Sokal
- K.V. Getman
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- L. Blitz
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- L. Haemmerlé
- L. Hartmann
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- L. Sbordone
- L. Wang
- L.A. Hillenbrand
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- L.J. Spitzer
- L.J. Spitzer
- L.M. Krauss
- L.M. Rebull
- L.R. Bedin
- M. Audard
- M. Chevance
- M. Cottaar
- M. Fatuzzo
- M. Forestini
- M. Gennaro
- M. Gennaro
- M. Gieles
- M. Gieles
- M. Gieles
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- M. Gieles
- M. Gieles
- M. Gieles
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- M. Giersz
- M. Heyer
- M. HĂ©non
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- M. Krause
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- M. Krause
- M. Krause
- M. Mohammadpour
- M. Reina-Campos
- M. Zamora-Avilés
- M. Zamora-Avilés
- M. Zamora-Avilés
- M. Zennaro
- M.-A. Miville-DeschĂȘnes
- M.-M. Mac Low
- M.-M. Mac Low
- M.A. Kuhn
- M.A. Latif
- M.A. RappenglĂŒck
- M.D. Gorski
- M.E. Lohr
- M.G.H. Krause
- M.G.H. Krause
- M.G.H. Krause
- M.G.H. Krause
- M.J. RodrĂguez
- M.M. Dunham
- M.M. Dunham
- M.M. Dunham
- M.M. Dunham
- M.M.M. Pleintinger
- M.N. Machida
- M.R. Bate
- M.R. Krumholz
- M.R. Krumholz
- M.R. Krumholz
- M.R. Krumholz
- M.R. Krumholz
- M.S. Oey
- M.V. Penston
- N. Bastian
- N. Bastian
- N. Bastian
- N. Bastian
- N. Bastian
- N. Bastian
- N. Da Rio
- N. Hirano
- N. Karnath
- N. Moeckel
- N. Murray
- N. Peretto
- N. Prantzos
- N. Prantzos
- N. Prantzos
- N. Schneider
- N.-C. Sun
- N.J. Goldbaum
- N.J. Wright
- N.J. Wright
- N.J. Wright
- N.W.C. Leigh
- O.M. Blaes
- O.Y. Gnedin
- P. Castangia
- P. ColĂn
- P. Espinoza
- P. Girichidis
- P. Girichidis
- P. Goldreich
- P. Hennebelle
- P. Hennebelle
- P. Kroupa
- P. Mozel
- P. Padoan
- P. Padoan
- P. Ventura
- P. Ventura
- P.A. Crowther
- P.A. Denisenkov
- P.A. Denissenkov
- P.A. Denissenkov
- P.A. Mazzali
- P.C. Myers
- P.C. Myers
- P.C. Myers
- P.C. Washabaugh
- P.G. Breen
- P.J. Armitage
- P.J. Kavanagh
- P.J.T. Leonard
- P.N. Foster
- P.S. Li
- Q.D. Wang
- R. Bachiller
- R. Banerjee
- R. de Grijs
- R. Diehl
- R. Gratton
- R. Klessen
- R. Naranjo-Romero
- R. Smith
- R. Voss
- R. Wielen
- R. WĂŒnsch
- R. WĂŒnsch
- R.A. Chevalier
- R.A. Gutermuth
- R.A. Gutermuth
- R.B. Larson
- R.B. Larson
- R.C. Peterson
- R.G. Gratton
- R.G. Gratton
- R.J. Allison
- R.J. Allison
- R.J. Parker
- R.J. Parker
- R.J. Parker
- R.J. Parker
- R.M. Cavallo
- R.M. Crocker
- R.M. Crutcher
- R.P. Kraft
- R.S. Klessen
- R.S. Klessen
- R.S. Klessen
- R.S. Klessen
- R.S. Klessen
- R.S. Klessen
- R.W. Wilson
- S. Banerjee
- S. Basu
- S. Bialy
- S. Bontemps
- S. Bovino
- S. Caldwell
- S. Dib
- S. Geen
- S. Martocchia
- S. Martocchia
- S. Martocchia
- S. MĂ©szĂĄros
- S. MĂ©szĂĄros
- S. Oh
- S. Reissl
- S. Silich
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- S. Silich
- S. Sur
- S. Terebey
- S.-I. Han
- S.A. Balbus
- S.C.O. Glover
- S.E. de Mink
- S.F. Portegies Zwart
- S.F. Portegies Zwart
- S.J. Billington
- S.J. Kenyon
- S.J. Kenyon
- S.M. Andrews
- S.M. Fall
- S.N. Longmore
- S.N. Longmore
- S.P. Ellingsen
- S.P. Goodwin
- S.P. Littlefair
- S.S. Kim
- S.S. Larsen
- S.S. Larsen
- S.S.R. Offner
- S.S.R. Offner
- S.S.R. Offner
- S.S.R. Offner
- S.S.R. Offner
- S.S.R. Offner
- S.W. Stahler
- T. Decressin
- T. Decressin
- T. Hosokawa
- T. Hosokawa
- T. Masseron
- T. Murayama
- T. Umebayashi
- T.P. Robitaille
- T.S. Allen
- V. Gaibler
- V. HĂ©nault-Brunet
- V. Könyves
- W. Chantereau
- W. Osborn
- W.G. Mathews
- W.I. Clarkson
- W.J. Fischer
- Y. Fukui
- Y. Harayama
- Y. Wang
- Y. Zhang
- Z. Cheng
- Z. Roupas
- Z. Zhu
- Z. Zhu
- Z.-W. Liu
- Ć. Tychoniec
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/01/2020
- Field of study
© 2020 Springer-Verlag. The final publication is available at Springer via https://doi.org/10.1007/s11214-020-00689-4.Star clusters form in dense, hierarchically collapsing gas clouds. Bulk kinetic energy is transformed to turbulence with stars forming from cores fed by filaments. In the most compact regions, stellar feedback is least effective in removing the gas and stars may form very efficiently. These are also the regions where, in high-mass clusters, ejecta from some kind of high-mass stars are effectively captured during the formation phase of some of the low mass stars and effectively channeled into the latter to form multiple populations. Star formation epochs in star clusters are generally set by gas flows that determine the abundance of gas in the cluster. We argue that there is likely only one star formation epoch after which clusters remain essentially clear of gas by cluster winds. Collisional dynamics is important in this phase leading to core collapse, expansion and eventual dispersion of every cluster. We review recent developments in the field with a focus on theoretical work.Peer reviewe
New insights into the genetic etiology of Alzheimer's disease and related dementias
- Author
- Aaltonen L.
- Aaltonen V.
- Aarsland Dag
- Aavikko M.
- Abalos M.S.
- Abdelnour Carla
- Abner E.
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- Akinyemi R.O.
- Al-Chalabi A.
- AlarcĂłn-MartĂn Emilio
- Albert M.S.
- Albin R.L.
- Alcolea Daniel
- Alegret Montserrat
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- Alonso M.D.
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- Publication venue
- Publication date
- 01/01/2022
- Field of study
Characterization of the genetic landscape of Alzheimer's disease (AD) and related dementias (ADD) provides a unique opportunity for a better understanding of the associated pathophysiological processes. We performed a two-stage genome-wide association study totaling 111,326 clinically diagnosed/'proxy' AD cases and 677,663 controls. We found 75 risk loci, of which 42 were new at the time of analysis. Pathway enrichment analyses confirmed the involvement of amyloid/tau pathways and highlighted microglia implication. Gene prioritization in the new loci identified 31 genes that were suggestive of new genetically associated processes, including the tumor necrosis factor alpha pathway through the linear ubiquitin chain assembly complex. We also built a new genetic risk score associated with the risk of future AD/dementia or progression from mild cognitive impairment to AD/dementia. The improvement in prediction led to a 1.6- to 1.9-fold increase in AD risk from the lowest to the highest decile, in addition to effects of age and the APOE Δ4 allele
Narrowband Searches for Continuous and Long-duration Transient Gravitational Waves from Known Pulsars in the LIGO-Virgo Third Observing Run
- Author
- Abbott R.
- Abbott T.D.
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- Ying M.
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- Zucker M.E.
- Zweizig J.
- Publication venue
- London : Institute of Physics Publ.
- Publication date
- 01/01/2022
- Field of study
Isolated neutron stars that are asymmetric with respect to their spin axis are possible sources of detectable continuous gravitational waves. This paper presents a fully coherent search for such signals from eighteen pulsars in data from LIGO and Virgo's third observing run (O3). For known pulsars, efficient and sensitive matched-filter searches can be carried out if one assumes the gravitational radiation is phase-locked to the electromagnetic emission. In the search presented here, we relax this assumption and allow both the frequency and the time derivative of the frequency of the gravitational waves to vary in a small range around those inferred from electromagnetic observations. We find no evidence for continuous gravitational waves, and set upper limits on the strain amplitude for each target. These limits are more constraining for seven of the targets than the spin-down limit defined by ascribing all rotational energy loss to gravitational radiation. In an additional search, we look in O3 data for long-duration (hours-months) transient gravitational waves in the aftermath of pulsar glitches for six targets with a total of nine glitches. We report two marginal outliers from this search, but find no clear evidence for such emission either. The resulting duration-dependent strain upper limits do not surpass indirect energy constraints for any of these targets. © 2022. The Author(s). Published by the American Astronomical Society
Factors Associated with Revision Surgery after Internal Fixation of Hip Fractures
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- Agel J. (Julie)
- Ahn H. (Henry)
- Ahn J. (Jaimo)
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- Lee J. (Julia)
- Leenen L.P.H.
- Leffler L.C. (Lauren C.)
- Leighton R. (Ross)
- Lemke H.M. (H. Michael)
- Lewis C.G. (Courtland G.)
- Lewis S. (Sophie)
- Li D. (Doug)
- Li M. (Mengnai)
- Lieberman S. (Shane)
- Liem R. (Ronald)
- Lieshout E.M.M. (Esther) van
- Liew A. (Allen)
- Liew S. (Susan)
- Lindenbaum S. (Stephen)
- Linehan C. (Colleen)
- Lobo M.J. (Margaret J.)
- Logishetty R. (Rajanikanth)
- Lona T. (Tarjei)
- Lorenzo M. (Melissa)
- Love D. (David)
- Luther A. (Arlene)
- Ly T.V. (Thuan V.)
- Lyle L. (Lindsey)
- MacDonald S. (Shelley)
- MacLeod M. (Mark)
- Maddock D. (Deborah)
- Marcantonio A.J. (Andrew J.)
- Marston S.B. (Scott B.)
- Mauffrey C. (Cyril)
- May J. (Jedediah)
- McBeth J.C. (Jessica Cooper)
- McCormack R. (Robert)
- McDonald M.D. (Michael D.)
- McIntyre A.W. (Allison W.)
- McKay P. (Paula)
- McKee M.D. (Michael D.)
- McKercher R. (Ross)
- Mehta S. (Samir)
- Meijer J. (Joost)
- Meylaerts S.A.G. (Sven)
- Miller R. (Russell)
- Miller T.J. (Timothy J.)
- Mills K. (Kelli)
- Milner K. (Katrine)
- Mishra V. (Vimlesh)
- Mitchell K. (Khalis)
- Moatshe G. (Gilbert)
- Moaveni A. (Ash)
- Molund M. (Marius)
- Monica J.T. (James T.)
- Moola F. (Farhad)
- Moon K. (Karyn)
- Moon R. (Raely)
- Moore M.M. (Molly M.)
- Mullis B. (Brian)
- Murdoch Z. (Zoe)
- Murnaghan J. (John)
- Murphy R.L. (R. Lee)
- Murtha Y.M. (Yvonne M.)
- MĂŒller O. (Oliver)
- Nam D. (Diane)
- Nanda R. (Rajesh)
- Nanney T. (Tracy)
- Napierala M. (Matthew)
- Nastoff L.A. (Lauren A.)
- Naumetz V. (V.)
- Nauth A. (Aaron)
- Newman H. (Heike)
- Nicolaisen T. (Tor)
- Nies F. (Frank) de
- Nilsen F. (Fredrik)
- Noble K. (Krista)
- Nousiainen M. (Markku)
- O'Malley L.K. (Lawrence K.)
- O'Neil J. (Joseph)
- Oatt A. (Amber)
- Obremskey W. (William)
- Olakkengil D.J. (Davy J)
- Oliver T.M. (Todd M.)
- Oprel P.P. (Pim)
- Out N.J.M. (Nico J.M.)
- Oxner W. (William)
- Pace T.B. (Thomas B.)
- Palla N. (Naveen)
- Pape H.-C. (Hans-Christoph)
- Papp S. (Steve)
- Parr J.A. (J. Andrew)
- Patka P. (Peter)
- Payton K. (Krystal)
- Pecorella K. (Kaili)
- Perey B. (Bertrand)
- Peters M.E. (Melissa E.)
- Peters R. (Rolf)
- Peterson B. (Brett)
- Pfeifer R. (Roman)
- Pilling L. (Lindsey)
- Pincus P. (Paul)
- Pirpiris M. (Marinis)
- Poelhekke L.M.S.J.
- Pol C. (Carmen) van der
- Ponsen K.J. (Kees-jan)
- Poolman R.W. (Rudolf)
- Porter S.E. (Scott E.)
- Pourmand D. (Deeba)
- Powell J. (James)
- Prasad A.S. (Amal Shankar)
- Prayson M.J. (Michael J.)
- Price D.M. (Dustin M.)
- Probe R. (Robert)
- Puloski S. (Shannon)
- Rai A. (Anil)
- Rai B.S. (B. Sachidananda)
- Rai K. (Kamal)
- Rajakumar J. (Janakiraman)
- Rangan A. (Amar)
- Reardon G. (Gerald)
- Reed M.R. (Mike)
- Reeves C. (Christina)
- Rhemrev S. (Steven)
- Richards J.E. (Justin E.)
- Richardson C.G. (C. Glen)
- Richardson M. (Martin)
- Rieser G.R. (Geoffrey Ryan)
- Riet M. (Martijne) van 't
- Rijbroek B. (Bram)
- Rijcke P.A.R. (Piet)
- Rijna H.
- Ringler J.R. (James R.)
- Ritchie E.D. (Ewan D.)
- Robbins K. (Kristin)
- Roffey D.M. (Darren M.)
- Romero A.W. (Amanda W.)
- Roper E. (Elizabeth)
- Rose G. (Glynis)
- Roukema G.R. (Gert)
- Rubino L.J. (L. Joseph)
- Russ M. (Matthias)
- Rutherford T. (Tori)
- Rydinge J. (Jonas)
- Sage C. (Claire)
- Sagebien C.A. (Carlos A.)
- Sanders D. (David)
- Sanghavi A. (Amir)
- Schaller T.M. (Thomas M.)
- Scheepers J.J. (Joris J.)
- Schemitsch E.H. (Emil H.)
- Schep N.W.L. (Niels)
- Schmidt A.H. (Andrew H.)
- Schreurs B. (Bart)
- Schrickel T. (Tyson)
- Schwappach J. (John)
- Scott T. (Taryn)
- Scrabeck T. (Tyson)
- Segers M.J.M. (Michiel)
- Sems S.A. (Stephen A.)
- Seuffert P. (Patricia)
- Shaer J. (James)
- Sharma A. (Ateet)
- Sharma G. (Gaurav)
- Shell L.E. (Leslie E.)
- Shepard S. (Stephanie)
- Shively K. (Karl)
- Sietsema D.L. (Debra L.)
- Silva H. (Heather)
- Silvis R. (Rob)
- Simmermacher R.K.J.
- Simons M.P.
- Simunovic N. (Nicole)
- Singh S. (Sanjay)
- Siroen M.P.C. (Michiel P.C.)
- Siska P. (Peter)
- Slobogean G.P. (Gerard P.)
- Smedsrud M. (Morten)
- Smits A.B. (Anke B.)
- Snellen J.P. (Jaap P.)
- Snider R.G. (Rebecca G.)
- Specht L.M. (Lawrence M.)
- Sprag S. (Sheila)
- Sprague S. (Sheila)
- Stahel P. (Philip)
- Stassen L.P.S. (Laurents P.S.)
- Stephen D. (David)
- Stinner D. (Daniel)
- Stockmann H. (Heyn)
- Stone T. (Trevor)
- Stringfellow K. (Kenya)
- Strohecker K. (Kent)
- Stull P. (Philip)
- StĂždle A. (Are)
- Subash ()
- Sullivan R.J. (Raymond J.)
- Sundaresh D.C. (D. C.)
- Swenson T.K. (Teresa K.)
- Swinton M. (Marilyn)
- Swiontkowski M.F. (Marc )
- Switzer J.A. (Julie A.)
- Tan E.C.T.H. (Edward C.T.H.)
- Tanksley J.A. (John A.)
- Tanner S.L. (Stephanie L.)
- Tannoury C. (Chadi)
- Tarkin I. (Ivan)
- Teasdall R.J. (Robert J.)
- Tetsworth K. (Kevin)
- Tetteroo G.W.M. (Geert)
- Thabane L. (Lehana)
- Theunissen E.B.M. (Evert B.M.)
- Tieszer C. (Christina)
- Tilzey J.F. (John F.)
- Ton L. (Lu)
- Torchia M.E. (Michael E.)
- Tornetta III P. (Paul)
- Torres E.T. (Erick T.)
- Trask K. (Kelly)
- Trenholm J.A. (J. Andrew)
- Trivedi M. (Mittal)
- Trommer A. (Axel)
- Turckan K. (Kahn)
- Tyagi V. (Vivek)
- Tynan M.C. (Martin C.)
- Ugland S. (Stein)
- Vallier H.A. (Heather A.)
- Van Der Brand I. (Igor)
- Van Der Hoeven H. (Henk)
- Van Egmond T. (Teun)
- Van Gaalen S.M. (Steven M.)
- Van Mulken J. (Jeroen)
- Van Vugt A.B. (Arie B.)
- Vang S. (Sandy)
- Verhagen R. (Ronald)
- Verhoeven B. (Bart)
- Verhofstad M.H.J. (Michiel)
- Vermeulen E.G.J. (Erik G.J.)
- Vesterhus E.B. (Elise Berg)
- Vicente M.R. (Milena R.)
- Vis H.M. (Harm) van der
- Viskontas D. (Darius)
- Visser G.A. (Gijs A.)
- Viveiros H. (Helena)
- Vogt M. (Michelle)
- Vries A.C. (Alexander) de
- Vries M.R. (Mark) de
- Vuylsteke R. (Ronald)
- Wadey V. (Veronica)
- Waes O.J.F. (Oscar) van
- Wai E.K. (Eugene K.)
- Walker J.E. (Jane E.)
- Walter S.D. (Stephen D.)
- Wang O. (Otis)
- Ward A. (Angela)
- Watson D.J. (Dylan J.)
- Watson S.T. (Scott T.)
- Weber T. (Timothy)
- Weening B. (Brad)
- Weinerman S. (Stuart)
- Weingarten P. (Peter)
- Weinrauch P. (Patrick)
- Wessel R.N. (Ronald N.)
- Wessem K.J.P. van
- Westberg J.R. (Jerald R.)
- Whatley E. (Erica)
- Whelan D.B. (Daniel B.)
- Wild L.M. (Lisa M.)
- Wille J.C. (Jan)
- Willems W.J. (Jaap)
- Wittich P. (Philippe)
- Wong I. (Ivan)
- Wood G. (Gavin)
- Worman R. (Ripley)
- Wright D.M. (David M.)
- Wyrick J. (John)
- Yach J. (Jeff)
- Yadav V. (Vineet)
- Yang S. (Steven)
- Yee A. (Albert)
- Yen D. (David)
- Yu M. (Michelle)
- Zalzal P. (Paul)
- Zamorano D.P. (David P.)
- Zellar A. (Abby)
- Zhou Q. (Qi)
- Zielinski S.M. (Stephanie)
- Zijl J.A.C. (Jacco A.C.)
- Zohman G. (Gary)
- Zomar M. (Mauri)
- Zurcher A.W. (Arthur W.)
- Publication venue
- 'Ovid Technologies (Wolters Kluwer Health)'
- Publication date
- 01/05/2018
- Field of study
Background: Femoral neck fractures are associated with high rates of revision surgery after management with internal fixation. Using data from the Fixation using Alternative Implants for the Treatment of Hip fractures (FAITH) trial evaluating methods of internal fixation in patients with femoral neck fractures, we investigated associations between baseline and surgical factors and the need for revision surgery to promote healing, relieve pain, treat infection or improve function over 24 months postsurgery. Additionally, we investigated factors associated with (1) hardware removal and (2) implant exchange from cancellous screws (CS) or sliding hip screw (SHS) to total hip arthroplasty, hemiarthroplasty, or another internal fixation device. Methods: We identified 15 potential factors a priori that may be associated with revision surgery, 7 with hardware removal, and 14 with implant exchange. We used multivariable Cox proportional hazards analyses in our investigation. Results: Factors associated with increased risk of revision surgery included: female sex, [hazard ratio (HR) 1.79, 95% confidence interval (CI) 1.25-2.50; P = 0.001], higher body mass index (fo
Wind sedimentation tunnel experiments on the origins of aeolian strata
- Author
- Publication venue
- 'Wiley'
- Publication date
- Field of study
Wind sedimentation in the Jafurah sand sea, Saudi Arabia
- Author
- Publication venue
- 'Wiley'
- Publication date
- Field of study
Electrical Resistance Sensors Record Spring Flow Timing, Grand Canyon, Arizona
- Author
- Publication venue
- 'Wiley'
- Publication date
- Field of study
Basic types of stratification in small eolian dunes
- Author
- ALLEN J.R.L.
- ALLEN J.R.L.
- BAARS D.L.
- BAGNOLD R.A.
- BIGARELLA J.J.
- BOKMAN J.
- CAMPBELL C.V.
- COOPER W.S.
- ELLWOOD J.M.
- FREEMAN W.E.
- GLENNIE K.W.
- GOLDSMITH V.
- GRIPP K.
- HARMS J.C.
- HUNTER R.E.
- HUNTER R.E.
- HUNTER R.E.
- HUNTER R.E.
- HUNTER R.E.
- INMAN D.L.
- JOPLING A.V.
- KUENEN PH. H.
- McKEE E.D.
- McKEE E.D.
- McKEE E.D.
- McKEE E.D.
- McKEE E.D.
- McKEE E.D.
- McKEE E.D.
- MOSS A.J.
- OTTO G.H.
- RIM M.
- RIM M.
- SHARP R.P.
- SHARP R.P.
- SIMONS D.B.
- STANLEY K.O.
- STOKES W.L.
- VISHER G.S.
- YAALON D.H.
- YAALON D.H.
- Publication venue
- 'Wiley'
- Publication date
- Field of study
Will an η3-Si3H3 ligand form sandwich compounds with main group elements?
- Publication venue
- 'American Chemical Society (ACS)'
- Publication date
- 01/01/2000
- Field of study
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