120 research outputs found
Stressors and resources mediate the association of socioeconomic position with health behaviours
- Author
- A Baum
- A Kavanagh
- A Koster
- A Leganger
- A Sharma
- AJ Schulz
- AL Holbrook
- BK Gorman
- Bob C Mulder
- C Davies
- C Von Wagner
- Cees MJ van Woerkum
- DM Almeida
- DM Ng
- DS Bailis
- E Munster
- ER Pamuk
- Erik JC van Ameijden
- FJ Van Lenthe
- FVA van Oort
- G Cesaroni
- G Godin
- G Menvielle
- H Bosma
- H Van Kippersluis
- H-J Kim
- Hanneke Schreurs
- J Wardle
- JAA Dalstra
- JP Mackenbach
- JP Mackenbach
- JP Mackenbach
- K Giskes
- KA Matthews
- KFAM Hulshof
- KN Kershaw
- L Franzini
- L Purslow
- LC Gallo
- LI Pearlin
- LJ Caplan
- LM Schalick
- M Droomers
- Marijn de Bruin
- MG Marmot
- MT Timlin
- P Herd
- PM Lantz
- PM Lantz
- R Hoffmann
- R Layte
- RC Kessler
- S Cohen
- S Keeter
- S Stringhini
- ST Nguyen-Michel
- W Poortinga
- Y Fukuda
- Publication venue
- BioMed Central
- Publication date
- 01/01/2011
- Field of study
Peer reviewedPublisher PD
Phylogenetic Constraints Do Not Explain the Rarity of Nitrogen-Fixing Trees in Late-Successional Temperate Forests
- Author
- Alexandra Weigelt
- AR Barron
- B Bremer
- BA Hungate
- BD Clarkson
- BZ Houlton
- CO Webb
- CT Dyrness
- D Binkley
- DD Uliassi
- DE Soltis
- DJ Boland
- DNL Menge
- DNL Menge
- DNL Menge
- DS LeBauer
- Duncan N. L. Menge
- EB Rastetter
- EM Christensen
- EM Spehn
- ES Zavaleta
- FA Bazzaz
- HL Pearson
- J Aber
- J Dawson
- J Felsenstein
- J Pojar
- J Zavitkovski
- JA Aber
- Jeanne L. DeNoyer
- Jeremy W. Lichstein
- JI Sprent
- JJ Doyle
- JJ Elser
- JN Galloway
- JP Caspersen
- JW Lichstein
- K Huss-Danell
- K Kitajima
- L Kershaw
- LF Debano
- LO Hedin
- LR Walker
- MD Cramer
- N Wikström
- P Gundersen
- P Lesica
- P Wardle
- PM Vitousek
- PM Vitousek
- PM Vitousek
- RK Kobe
- RM Burns
- RR Sokal
- RS Nowak
- SH Oh
- SJ Davies
- SJ Richardson
- SJ Wright
- SM de Faria
- SP Blomberg
- SP Blomberg
- SS Perakis
- SW Pacala
- TE Crews
- TW Walker
- VP Gutschick
- WH Schlesinger
- WP Maddison
- Publication venue
- Public Library of Science
- Publication date
- 01/08/2010
- Field of study
Symbiotic nitrogen (N)-fixing trees are rare in late-successional temperate forests, even though these forests are often N limited. Two hypotheses could explain this paradox. The 'phylogenetic constraints hypothesis' states that no late-successional tree taxa in temperate forests belong to clades that are predisposed to N fixation. Conversely, the 'selective constraints hypothesis' states that such taxa are present, but N-fixing symbioses would lower their fitness. Here we test the phylogenetic constraints hypothesis.Using U.S. forest inventory data, we derived successional indices related to shade tolerance and stand age for N-fixing trees, non-fixing trees in the 'potentially N-fixing clade' (smallest angiosperm clade that includes all N fixers), and non-fixing trees outside this clade. We then used phylogenetically independent contrasts (PICs) to test for associations between these successional indices and N fixation. Four results stand out from our analysis of U.S. trees. First, N fixers are less shade-tolerant than non-fixers both inside and outside of the potentially N-fixing clade. Second, N fixers tend to occur in younger stands in a given geographical region than non-fixers both inside and outside of the potentially N-fixing clade. Third, the potentially N-fixing clade contains numerous late-successional non-fixers. Fourth, although the N fixation trait is evolutionarily conserved, the successional traits are relatively labile.These results suggest that selective constraints, not phylogenetic constraints, explain the rarity of late-successional N-fixing trees in temperate forests. Because N-fixing trees could overcome N limitation to net primary production if they were abundant, this study helps to understand the maintenance of N limitation in temperate forests, and therefore the capacity of this biome to sequester carbon
The Lsm1-7/Pat1 complex binds to stress-activated mRNAs and modulates the response to hyperosmotic shock
- Author
- A Ambrosone
- A Aulas
- A Castello
- A Chowdhury
- A Chowdhury
- A Chowdhury
- A Chowdhury
- A Liepelt
- A Shevchenko
- Anita K. Hopper
- B Cambon
- B Rogell
- B Slobodin
- B Slobodin
- BM Beckmann
- BM Oliveira
- C Bonnerot
- C Janke
- C Molin
- C Olivier
- C Philippe
- C Vindry
- CJ Kershaw
- CY Hou
- CY Hou
- D Chu
- D Chu
- D Peretti
- D Teixeira
- D Wu
- DE Weinberg
- DH Lackner
- DJ Hogan
- DM Klass
- DS Protter
- E Bouveret
- E de Nadal
- E Garre
- E Garre
- E Tutucci
- Elena Garre
- F Posas
- G Haimovich
- GR Pilkington
- H Sharif
- H Youk
- J Aguilera
- J Aguilera
- J Coller
- J Jungfleisch
- J Lui
- J Uniacke
- J Warringer
- JC Silva
- JE McCarthy
- JF Garcia
- JJ Li
- K Leppek
- L Haim
- L Harel-Sharvit
- L Romero-Santacreu
- L Wurth
- LE Holmes
- M Hafner
- M Reichel
- M Rep
- M Rep
- Manuel Sánchez del Pino
- MJ Nagiec
- ML Wallander
- MS Sheikh
- MV Gerashchenko
- MW Hentze
- N Jin
- NG Tsvetanova
- O Van Wuytswinkel
- P Shah
- Paula Alepuz
- Per Sunnerhagen
- S Ghaemmaghami
- S Hohmann
- S Tharun
- S Tharun
- S Wilkening
- SF Mitchell
- SS Panchapakesan
- T Li
- T Nissan
- T Nissan
- T Scherrer
- T Sweet
- T Takahara
- U Sheth
- V Pelechano
- V Pelechano
- Vicent Pelechano
- VO Sysoev
- W He
- WK Huh
- Y Inoue
- Y Ishihama
- Publication venue
- 'Public Library of Science (PLoS)'
- Publication date
- 01/01/2018
- Field of study
RNA-binding proteins (RBPs) establish the cellular fate of a transcript, but an understanding of these processes has been limited by a lack of identified specific interactions between RNA and protein molecules. Using MS2 RNA tagging, we have purified proteins associated with individual mRNA species induced by osmotic stress, STL1 and GPD1. We found members of the Lsm1-7/Pat1 RBP complex to preferentially bind these mRNAs, relative to the non-stress induced mRNAs, HYP2 and ASH1. To assess the functional importance, we mutated components of the Lsm1-7/Pat1 RBP complex and analyzed the impact on expression of osmostress gene products. We observed a defect in global translation inhibition under osmotic stress in pat1 and lsm1 mutants, which correlated with an abnormally high association of both non-stress and stress-induced mRNAs to translationally active polysomes. Additionally, for stress-induced proteins normally triggered only by moderate or high osmostress, in the mutants the protein levels rose high already at weak hyperosmosis. Analysis of ribosome passage on mRNAs through co-translational decay from the 5' end (5P-Seq) showed increased ribosome accumulation in lsm1 and pat1 mutants upstream of the start codon. This effect was particularly strong for mRNAs induced under osmostress. Thus, our results indicate that, in addition to its role in degradation, the Lsm1-7/Pat1 complex acts as a selective translational repressor, having stronger effect over the translation initiation of heavily expressed mRNAs. Binding of the Lsm1-7/Pat1p complex to osmostress-induced mRNAs mitigates their translation, suppressing it in conditions of weak or no stress, and avoiding a hyperresponse when triggered
Biogeography and conservation in Southeast Asia: how 2.7 million years of repeated environmental fluctuations affect today’s patterns and the future of the remaining refugial-phase biodiversity
- Author
- AD Ziegler
- AJ Gorog
- AJ Lynam
- AM Haywood
- AP Kershaw
- AP Kershaw
- AR Wallace
- B Goossens
- BP Horton
- C Hill
- C Parmesan
- C Tougard
- CGGJ Steenis van
- CH Cannon
- CO Webb
- CS Hutchison
- D Dudgeon
- D Western
- David S. Woodruff
- DR Wells
- DS Woodruff
- DS Woodruff
- DS Woodruff
- DS Woodruff
- DS Woodruff
- DS Woodruff
- E Meijaard
- E Meijaard
- Economist The
- EJ Sterling
- F Sergio
- FE Putz
- G Cattulo
- GC Daily
- GC Daily
- GK Chuan
- HA Mooney
- IC Chen
- J Hoglund
- J Louys
- J Louys
- JA Esselstyn
- JA Sheridan
- JAN Parnell
- JB Hughes
- JD Fahn
- JD Holloway
- JG Okie
- JL Baltzer
- JL Baltzer
- JP Sexton
- KG Miller
- KJ Willis
- KR Crooks
- KSH Peh
- LR Heaney
- LR Heaney
- M Borgerhoff Mulder
- M Bruyn De
- M Dowie
- M Hofreiter
- M Kottelat
- MD Spalding
- ME Brookfield
- MI Bird
- N Myers
- N Myers
- NS Sodhi
- NS Sodhi
- P Dasgupta
- PD Round
- PU Clark
- R Bintanja
- R Clements
- R Clements
- R Hall
- R Hall
- RA Mittermeier
- RJ Morley
- RJ Morley
- RJ Scholes
- RM Bierbaum
- RM May
- RT Corlett
- RT Corlett
- S Chan
- S Oppenheimer
- S Rahmstorf
- S Sosdian
- S Srikwan
- S Srikwan
- SG Bonham
- SJ Wright
- SL Pimm
- SP Hubbell
- SP Quek
- SW Attwood
- T Harrison
- TC Whitmore
- TJ Kawecki
- TJJ Hanebuth
- TM Brooks
- TM Brooks
- TM Lee
- TR Naish
- TR Roberts
- TW Clark
- U Salzmann
- U Salzmann
- V Baimai
- WH Berger
- XM Wang
- Y Chaimanee
- Y Malhi
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- Field of study
Lawson criterion for ignition exceeded in an inertial fusion experiment
- Author
- Abu-Shawareb H
- Acree R
- Adams J
- Adams P
- Addis B
- Aden R
- Adrian P
- Afeyan BB
- Aggleton M
- Aghaian L
- Aguirre A
- Aikens D
- Akre J
- Albert F
- Albrecht M
- Albright BJ
- Albritton J
- Alcala J
- Alday C
- Alessi DA
- Alexander N
- Alfonso J
- Alfonso N
- Alger E
- Ali SJ
- Ali ZA
- Alley WE
- Amala P
- Amendt PA
- Amick P
- Ammula S
- Amorin C
- Ampleford DJ
- Anderson RW
- Anklam T
- Antipa N
- Appelbe B
- Aracne-Ruddle C
- Araya E
- Arend M
- Arnold P
- Arnold T
- Asay J
- Atherton LJ
- Atkinson D
- Atkinson R
- Auerbach JM
- Austin B
- Auyang L
- Awwal AS
- Ayers J
- Ayers S
- Ayers T
- Azevedo S
- Bachmann B
- Back CA
- Bae J
- Bailey DS
- Bailey J
- Baisden T
- Baker KL
- Baldis H
- Barber D
- Barberis M
- Barker D
- Barnes A
- Barnes CW
- Barrios MA
- Barty C
- Bass I
- Batha SH
- Baxamusa SH
- Bazan G
- Beagle JK
- Beale R
- Beck BR
- Beck JB
- Bedzyk M
- Beeler RG
- Beeler RG
- Behrendt W
- Belk L
- Bell P
- Belyaev M
- Benage JF
- Benedetti LR
- Benedict LX
- Bennett G
- Berger R
- Bernat T
- Bernstein LA
- Berry B
- Bertolini L
- Berzak Hopkins L
- Besenbruch G
- Betcher J
- Bettenhausen R
- Betti R
- Bezzerides B
- Bhandarkar SD
- Bickel R
- Biener J
- Biesiada T
- Bigelow K
- Bigelow-Granillo J
- Bigman V
- Bionta RM
- Birge NW
- Bitter M
- Black AC
- Bleile R
- Bleuel DL
- Bliss E
- Bliss E
- Blue B
- Boehly T
- Boehm K
- Boley CD
- Bonanno R
- Bond EJ
- Bond T
- Bonino MJ
- Borden M
- Bourgade J-L
- Bousquet J
- Bowers J
- Bowers M
- Boyd R
- Bozek A
- Bradley DK
- Bradley KS
- Bradley L
- Bradley PA
- Brannon L
- Brantley PS
- Braun D
- Braun T
- Brienza-Larsen K
- Briggs TM
- Britten J
- Brooks ED
- Browning D
- Bruhn MW
- Brunner TA
- Bruns H
- Brunton G
- Bryant B
- Buczek T
- Bude J
- Buitano L
- Burkhart S
- Burmark J
- Burnham A
- Burr R
- Busby LE
- Butlin B
- Cabeltis R
- Cable M
- Cabot WH
- Cagadas B
- Caggiano J
- Cahayag R
- Caldwell SE
- Calkins S
- Callahan DA
- Calleja-Aguirre J
- Camara L
- Camp D
- Campbell EM
- Campbell JH
- Carey B
- Carey R
- Carlisle K
- Carlson L
- Carman L
- Carmichael J
- Carpenter A
- Carr C
- Carrera JA
- Casavant D
- Casey A
- Casey DT
- Castillo A
- Castillo E
- Castor JI
- Castro C
- Caughey W
- Cavitt R
- Celeste J
- Celliers PM
- Cerjan C
- Chandler G
- Chang B
- Chang C
- Chang J
- Chang L
- Chapman R
- Chapman T
- Chase L
- Chen H
- Chen H
- Chen K
- Chen L-Y
- Cheng B
- Chittenden J
- Choate C
- Chou J
- Chrien RE
- Chrisp M
- Christensen K
- Christensen M
- Christopherson AR
- Chung M
- Church JA
- Clark A
- Clark DS
- Clark K
- Clark R
- Claus L
- Cline B
- Cline JA
- Cobble JA
- Cochrane K
- Cohen B
- Cohen S
- Collette MR
- Collins G
- Collins LA
- Collins TJB
- Conder A
- Conrad B
- Conyers M
- Cook AW
- Cook D
- Cook R
- Cooley JC
- Cooper G
- Cope T
- Copeland SR
- Coppari F
- Cortez J
- Cox J
- Crandall DH
- Crane J
- Craxton RS
- Cray M
- Crilly A
- Crippen JW
- Cross D
- Cuneo M
- Cuotts G
- Czajka CE
- Czechowicz D
- Daly T
- Danforth P
- Darbee R
- Darlington B
- Datte P
- Dauffy L
- Davalos G
- Davidovits S
- Davis J
- Davis P
- Dawson S
- Day RD
- Day TH
- Dayton M
- Deck C
- Decker C
- Deeney C
- DeFriend KA
- Deis G
- Delamater ND
- Delettrez JA
- Demaret R
- Demos S
- Dempsey SM
- Desjardin R
- Desjardins T
- Desjarlais MP
- Dewald EL
- DeYoreo J
- Di Nicola J-MG
- Di Nicola P
- Diaz S
- Dimonte G
- Dittrich TR
- Divol L
- Dixit SN
- Dixon J
- Dodd ES
- Dolan D
- Donovan A
- Donovan M
- Dorrer C
- Dorsano N
- Douglas MR
- Dow D
- Downie J
- Downing E
- Dozieres M
- Draggoo V
- Drake D
- Drake RP
- Drake T
- Dreifuerst G
- DuBois DF
- DuBois PF
- Dunham G
- Dylla-Spears R
- Dymoke-Bradshaw AKL
- Dzenitis B
- Döppner T
- Ebbers C
- Eckart M
- Eddinger S
- Eder D
- Edgell D
- Edwards MJ
- Efthimion P
- Eggert JH
- Ehrlich B
- Ehrmann P
- Elhadj S
- Ellerbee C
- Elliott NS
- Ellison CL
- Elsner F
- Emerich M
- Engelhorn K
- England T
- English E
- Epperson P
- Epstein R
- Erbert G
- Erickson MA
- Erlandson A
- Erskine DJ
- Espinosa RJ
- Estabrook KG
- Estes C
- Evans S
- Fabyan A
- Fair J
- Fallejo R
- Farmer N
- Farmer WA
- Farrell M
- Fatherley VE
- Fedorov M
- Feigenbaum E
- Feit M
- Ferguson W
- Fernandez JC
- Fernandez-Panella A
- Fess S
- Field JE
- Filip CV
- Fincke JR
- Finn T
- Finnegan SM
- Finucane RG
- Fischer M
- Fisher A
- Fisher J
- Fishler B
- Fittinghoff D
- Fitzsimmons P
- Flegel M
- Flippo KA
- Florio J
- Folta J
- Folta P
- Fooks J
- Foord M
- Foreman LR
- Forrest C
- Forsman A
- Fortner R
- Fournier K
- Fratanduono DE
- Frazier N
- Frazier T
- Frederick C
- Freeman MS
- Frenje J
- Frey D
- Frieders G
- Friedrich S
- Froula DH
- Fry J
- Fuller T
- Gaffney J
- Gales S
- Gambhir A
- Gao L
- Garbett WJ
- Garcia A
- Gates C
- Gatu Johnson M
- Gaut E
- Gauthier P
- Gavin Z
- Gaylord J
- Geissel M
- Georgeson J
- Geppert-Kleinrath H
- Geppert-Kleinrath V
- Gharibyan N
- Gibson C
- Gibson J
- Giraldez E
- Glebov V
- Glendinning SG
- Glenn S
- Glenzer SH
- Goade S
- Gobby PL
- Goldman SR
- Golick B
- Gomez M
- Goncharov V
- Goodin D
- Grabowski P
- Grafil E
- Graham P
- Grandy J
- Grasz E
- Graziani F
- Green T
- Greenman G
- Greenough JA
- Greenwood A
- Gregori G
- Griego JR
- Grim GP
- Grondalski J
- Gross S
- Guckian J
- Guler N
- Gunney B
- Guss G
- Génin F
- Haan S
- Hackbarth J
- Hackel L
- Hackel R
- Haefner C
- Hagmann C
- Hahn KD
- Hahn S
- Haid BJ
- Haines BM
- Hall BM
- Hall C
- Hall GN
- Hamamoto M
- Hamel S
- Hamilton CE
- Hammel BA
- Hammer JH
- Hampton G
- Hamza A
- Handler A
- Hansen S
- Hanson D
- Haque R
- Harding D
- Harding E
- Hares JD
- Harris DB
- Harte JA
- Hartouni EP
- Hatarik R
- Hatchett S
- Hauer AA
- Havre M
- Hawley R
- Hayes J
- Hayes J
- Hayes S
- Hayes-Sterbenz A
- Haynam CA
- Haynes DA
- Headley D
- Heal A
- Heebner JE
- Heerey S
- Heestand GM
- Heeter R
- Hein N
- Heinbockel C
- Hendricks C
- Henesian M
- Heninger J
- Henrikson J
- Henry EA
- Herbold EB
- Hermann MR
- Hermes G
- Hernandez JE
- Hernandez VJ
- Herrera OD
- Herrmann HW
- Herrmann MC
- Hewett D
- Hibbard R
- Hicks DG
- Hill D
- Hill K
- Hilsabeck T
- Hinkel DE
- Ho DD
- Ho VK
- Hoffer JK
- Hoffman NM
- Hohenberger M
- Hohensee M
- Hoke W
- Holdener D
- Holdener F
- Holder JP
- Holko B
- Holunga D
- Holzrichter JF
- Honig J
- Hoover D
- Hopkins D
- Hoppe M
- Hoppe ML
- Horner J
- Hornung R
- Horsfield CJ
- Horvath J
- Hotaling D
- House R
- Howell L
- Hsing WW
- Hu SX
- Huang H
- Huckins J
- Hui H
- Humbird KD
- Hund J
- Hunt J
- Hurricane OA
- Hutton M
- Huynh KH-K
- Iglesias C
- Igumenshchev IV
- Inandan L
- Indirect Drive ICF Collaboration
- Izumi N
- Jackson J
- Jackson M
- Jacobs SD
- James G
- Jancaitis K
- Jaquez J
- Jarboe J
- Jarrott LC
- Jasion D
- Jeet J
- Jenei AE
- Jensen J
- Jimenez J
- Jimenez R
- Jobe D
- Johal Z
- Johns HM
- Johnson D
- Johnson MA
- Johnson RJ
- Johnson S
- Johnson SA
- Johnson T
- Jones K
- Jones M
- Jones O
- Jorge R
- Jorgenson HJ
- Julian M
- Jun BI
- Jungquist R
- Kaae J
- Kabadi N
- Kaczala D
- Kalantar D
- Kangas K
- Karasiev VV
- Karasik M
- Karpenko V
- Kasarky A
- Kasper K
- Kauffman R
- Kaufman MI
- Keane C
- Keaty L
- Kegelmeyer L
- Keiter PA
- Kellett PA
- Kellogg J
- Kelly JH
- Kemic S
- Kemp AJ
- Kemp GE
- Kerbel GD
- Kerr SM
- Kershaw D
- Kessler TJ
- Key MH
- Khan SF
- Khater H
- Kiikka C
- Kilkenny J
- Kim Y
- Kim Y-J
- Kimko J
- Kimmel M
- Kindel JM
- King J
- Kirkwood RK
- Klaus L
- Klem D
- Kline JL
- Klingmann J
- Kluth G
- Knapp P
- Knauer J
- Knipping J
- Knudson M
- Kobs D
- Koch J
- Kohut T
- Kong C
- Koning JM
- Koning P
- Konior S
- Kornblum H
- Kot LB
- Kozioziemski B
- Kozlowski M
- Kozlowski PM
- Krammen J
- Krasheninnikova NS
- Kraus B
- Krauser W
- Kress JD
- Krieger E
- Kritcher AL
- Kroll JJ
- Kruer WL
- Kruse MKG
- Kucheyev S
- Kumbera M
- Kumpan S
- Kunimune J
- Kustowski B
- Kwan TJT
- Kyrala GA
- Laffite S
- Lafon M
- LaFortune K
- Lagin L
- Lahmann B
- Lairson B
- Land T
- Landen OL
- Lane M
- Laney D
- Langdon AB
- Langenbrunner J
- Langer SH
- Langro A
- Lanier NE
- Lanier TE
- Larson D
- Lasinski BF
- Lassle D
- LaTray D
- Lau G
- Lau N
- Laumann C
- Laurence A
- Laurence TA
- Lawson J
- Le Galloudec B
- Le Galloudec KK
- Le Pape S
- Le HP
- Leach RR
- Leal L
- Leatherland A
- LeChien K
- Lechleiter B
- Lee A
- Lee M
- Lee T
- Leeper RJ
- Lefebvre E
- Leidinger J-P
- LeMire B
- Lemke RW
- Lemos NC
- Lerche R
- Lerner S
- Letts S
- Levedahl K
- Lewis T
- Li CK
- Li H
- Li J
- Liao W
- Liao ZM
- Liebman J
- Liedahl D
- Lindford G
- Lindl JD
- Lindman EL
- Loey H
- London RA
- Long F
- Loomis EN
- Lopez FE
- Lopez H
- Losbanos E
- Loucks S
- Lowe-Webb R
- Ludwigsen AP
- Lundgren E
- Luo R
- Lusk J
- Lyons R
- Ma T
- Macallop Y
- MacDonald MJ
- MacGowan BJ
- Mack JM
- Mackinnon AJ
- MacLaren SA
- MacPhee AG
- Magelssen GR
- Magoon J
- Malone RM
- Malsbury T
- Managan R
- Mancini R
- Manes K
- Maney D
- Manha D
- Mannion OM
- Manuel AM
- Mapoles E
- Mara G
- Marcotte T
- Marin E
- Marinak MM
- Mariscal C
- Mariscal DA
- Mariscal EF
- Marley EV
- Marozas JA
- Marquez R
- Marshall CD
- Marshall FJ
- Marshall M
- Marshall S
- Marticorena J
- Martinez D
- Maslennikov I
- Mason D
- Mason RJ
- Masse L
- Massey W
- Masson-Laborde P-E
- Masters ND
- Mathisen D
- Mathison E
- Matone J
- Matthews MJ
- Mattoon C
- Mattsson TR
- Matzen K
- Mauche CW
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- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 06/07/2022
- Field of study
For more than half a century, researchers around the world have been engaged in attempts to achieve fusion ignition as a proof of principle of various fusion concepts. Following the Lawson criterion, an ignited plasma is one where the fusion heating power is high enough to overcome all the physical processes that cool the fusion plasma, creating a positive thermodynamic feedback loop with rapidly increasing temperature. In inertially confined fusion, ignition is a state where the fusion plasma can begin "burn propagation" into surrounding cold fuel, enabling the possibility of high energy gain. While "scientific breakeven" (i.e., unity target gain) has not yet been achieved (here target gain is 0.72, 1.37 MJ of fusion for 1.92 MJ of laser energy), this Letter reports the first controlled fusion experiment, using laser indirect drive, on the National Ignition Facility to produce capsule gain (here 5.8) and reach ignition by nine different formulations of the Lawson criterion
Prognostic model to predict postoperative acute kidney injury in patients undergoing major gastrointestinal surgery based on a national prospective observational cohort study.
- Author
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- STARSurg Collaborative Writing Committee, Data analysis, Steering committee, Advisory group, Regional leads, Collaborators and validators
- STARSurg Collaborative Writing Committee, Data analysis, Steering committee, Advisory group, Regional leads, Collaborators and validators, Nepogodiev, D
- Stechman M
- Stewart D
- Stewart E
- Stewart H
- Stewart R
- Stickler E
- Stoddart MT
- Stokes E
- Stott G
- Strang S
- Stringer H
- Stringfellow TD
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- Sturrock S
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- Subratty SM
- Sukirthan N
- Sukumar S
- Sulaiman SK
- Sultan S
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- Sundaram K
- Suresh R
- Suresh S
- Sureshkumar A
- Suri A
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- Swan A
- Swan I
- Swaray A
- Swartbol T
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- Szczap A
- Szuman A
- Tailor S
- Tam J
- Tam JP
- Tan CY
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- Tayeh S
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- Teo R
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- Theodoropoulou K
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- Yahaya AA
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- Yarham E
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- Yogeswara T
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- Yousaf A
- Youssef H
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- Zanichelli D
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- Zheleniakova T
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- Zornoza A
- Zubikarai G
- Zulkifli A
- Zuzarte L
- Publication venue
- 'Wiley'
- Publication date
- 18/05/2018
- Field of study
Background: Acute illness, existing co-morbidities and surgical stress response can all contribute to postoperative acute kidney injury (AKI) in patients undergoing major gastrointestinal surgery. The aim of this study was prospectively to develop a pragmatic prognostic model to stratify patients according to risk of developing AKI after major gastrointestinal surgery. Methods: This prospective multicentre cohort study included consecutive adults undergoing elective or emergency gastrointestinal resection, liver resection or stoma reversal in 2-week blocks over a continuous 3-month period. The primary outcome was the rate of AKI within 7 days of surgery. Bootstrap stability was used to select clinically plausible risk factors into the model. Internal model validation was carried out by bootstrap validation. Results: A total of 4544 patients were included across 173 centres in the UK and Ireland. The overall rate of AKI was 14·2 per cent (646 of 4544) and the 30-day mortality rate was 1·8 per cent (84 of 4544). Stage 1 AKI was significantly associated with 30-day mortality (unadjusted odds ratio 7·61, 95 per cent c.i. 4·49 to 12·90; P < 0·001), with increasing odds of death with each AKI stage. Six variables were selected for inclusion in the prognostic model: age, sex, ASA grade, preoperative estimated glomerular filtration rate, planned open surgery and preoperative use of either an angiotensin-converting enzyme inhibitor or an angiotensin receptor blocker. Internal validation demonstrated good model discrimination (c-statistic 0·65). Discussion: Following major gastrointestinal surgery, AKI occurred in one in seven patients. This preoperative prognostic model identified patients at high risk of postoperative AKI. Validation in an independent data set is required to ensure generalizability
FCC-ee: The Lepton Collider: Future Circular Collider Conceptual Design Report Volume 2
- Author
- Abada A
- Abbrescia M
- AbdusSalam SS
- Abdyukhanov I
- Abramov A
- Aburaia M
- Acar AO
- Adzic PR
- Agaliotis EL
- Agrawal P
- Aguilar-Saavedra JA
- Aguilera-Verdugo JJ
- Aiba M
- Aichinger I
- Aielli G
- Akay A
- Akhundov A
- Aksakal H
- Alaniz EC
- Albacete JL
- Albergo S
- Alekou A
- Aleksa M
- Aleksan R
- Alexahin Y
- Alia RG
- Alioli S
- Allanach BC
- Allport PP
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- Altmannshofer W
- Ambrosio G
- Amorim D
- Amstutz O
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- Andronic A
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- Antipov SA
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- Publication venue
- SPRINGER HEIDELBERG
- Publication date
- 01/06/2019
- Field of study
In response to the 2013 Update of the European Strategy for Particle Physics, the Future Circular Collider (FCC) study was launched, as an international collaboration hosted by CERN. This study covers a highest-luminosity high-energy lepton collider (FCC-ee) and an energy-frontier hadron collider (FCC-hh), which could, successively, be installed in the same 100 km tunnel. The scientific capabilities of the integrated FCC programme would serve the worldwide community throughout the 21st century. The FCC study also investigates an LHC energy upgrade, using FCC-hh technology. This document constitutes the second volume of the FCC Conceptual Design Report, devoted to the electron-positron collider FCC-ee. After summarizing the physics discovery opportunities, it presents the accelerator design, performance reach, a staged operation scenario, the underlying technologies, civil engineering, technical infrastructure, and an implementation plan. FCC-ee can be built with today’s technology. Most of the FCC-ee infrastructure could be reused for FCC-hh. Combining concepts from past and present lepton colliders and adding a few novel elements, the FCC-ee design promises outstandingly high luminosity. This will make the FCC-ee a unique precision instrument to study the heaviest known particles (Z, W and H bosons and the top quark), offering great direct and indirect sensitivity to new physics
FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1
- Author
- Abada A
- Abbrescia M
- AbdusSalam SS
- Abdyukhanov I
- Abramov A
- Aburaia M
- Acar AO
- Adzic PR
- Agrawal P
- Aguilar-Saavedra JA
- Aguilera-Verdugo JJ
- Ahnen JV
- Aiba M
- Aichinger I
- Aielli G
- Akay A
- Akhundov A
- Aksakal H
- Alaniz EC
- Albacete JL
- Albergo S
- Alekou A
- Aleksa M
- Aleksan R
- Alexahin Y
- Alia RG
- Alioli S
- Allanach BC
- Allport PP
- Altinli M
- Altmannshofer W
- Amann RW
- Ambrosio G
- Amorim D
- Amstutz O
- Anderlini L
- Andreazza A
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- Tropin IS
- Tuchming B
- Tudora AA
- Turbiarz B
- Turri M
- Tydecks T
- Ull AS
- Usovitsch J
- Uythoven J
- Vaglio R
- Valassi A
- Valchkova F
- Valente P
- Valente RU
- Valente-Feliciano A-M
- Valentino G
- Valet JM
- Valizadeh R
- Valle JWF
- Vallecorsa S
- Vallone G
- van Leeuwen M
- van Riesen-Haupt L
- Varasteh M
- Vecchi L
- Vedrine P
- Velev G
- Veness R
- Ventura A
- Venturini Delsolaro W
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- Verhaaren CB
- Vernieri C
- Verweij AP
- Verwilligen O
- Viazlo O
- Vicini A
- Viehhauser G
- Vignaroli N
- Vignolo M
- Vita SD
- Vitrano A
- Vivarelli I
- Vlachos S
- Voelkl V
- Vogel M
- Vogt DM
- Volkov P
- Volpini G
- Vorotnikov G
- Voutsinas GG
- Vysotsky V
- Wagner U
- Wallny R
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- Wang L-T
- Wang R
- Ward BFL
- Was Z
- Watson NK
- Watson TP
- Weiland C
- Weinzierl S
- Welsch CP
- Wenninger J
- Widorski M
- Wiedemann UA
- Wienands H-U
- Wilkinson G
- Williams PH
- Winter A
- Wohlfahrt A
- Wojton T
- Wollmann D
- Womersley J
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- Wu X
- Wulzer A
- Yanehsari MK
- Yanehsari MK
- Yang G
- Yang HJ
- Yao W-M
- Yazgan E
- Yermolchik V
- Yildiz HD
- Yilmaz A
- Yilmaz A
- Yoo H-D
- Yost SA
- You T
- Young C
- Yu F
- Yu T-T
- Zaborowska A
- Zadeh SG
- Zadeh SG
- Zahnd M
- Zanetti M
- Zanotto L
- Zawiejski L
- Zeiler P
- Zerlauth M
- Zernov SM
- Zevi Dell Porta G
- Zhang C
- Zhang H
- Zhang Y
- Zhang Z
- Zhao Z
- Zhong Y-M
- Zhou D
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- Zhuang P
- Zick G
- Zimmermann F
- Zinn-Justin J
- Zivkovic L
- Zlobin AV
- Zobov M
- Zupan J
- Zurita J
- Publication venue
- 'Springer Fachmedien Wiesbaden GmbH'
- Publication date
- 01/06/2019
- Field of study
We review the physics opportunities of the Future Circular Collider, covering its e+e-, pp, ep and heavy ion programmes. We describe the measurement capabilities of each FCC component, addressing the study of electroweak, Higgs and strong interactions, the top quark and flavour, as well as phenomena beyond the Standard Model. We highlight the synergy and complementarity of the different colliders, which will contribute to a uniquely coherent and ambitious research programme, providing an unmatchable combination of precision and sensitivity to new physics
Strategy and rationale for urine collection protocols employed in the NEPTUNE study
- Author
- A Cheruvanky
- A Eirin
- AM Bernard
- C Bazzi
- CA Schinstock
- Christina M. Heyer
- Christopher J. Ward
- Chrysta C. Lienczewski
- CJ Ward
- CM Meyers
- DAA Raj
- DB Kershaw
- DM Youssef
- DS Wishart
- EM Munch
- G Rabinowits
- Heather N. Reich
- IM Rood
- J Adachi
- J Hughes
- Jamie L. Sundsbak
- Jeffrey B. Kopp
- John C. Lieske
- JW Dear
- K Kanno
- KC Corbit
- KP Gudehithlu
- Larysa T. Wickman
- Lawrence B. Holzmann
- Lisa L. Nesbitt
- Luca Manganelli
- M Bitzer
- Marie C. Hogan
- Markus Bitzer
- Matthias Kretzler
- MC Hogan
- MC Hogan
- MH Weber
- ML Merchant
- MR Bennett
- N Nagaraj
- P Devarajan
- P Elliott
- P Gonzales
- P Habara
- PA Gonzales
- PA Gonzales
- Peter C. Harris
- Peter J. Nelson
- PMY Smets
- Q Zhang
- S Keller
- SA Varghese
- Sharon G. Adler
- T Kuhara
- T Pisitkun
- V Thongboonkerd
- V Thongboonkerd
- Wenjun Ju
- Y Sato
- Z Wang
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- Field of study
FCAP2: Parasitic Capacitance/Resistance Simulator
- Author
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/01/1986
- Field of study
- …