325 research outputs found
Loitering with intent: dealing with human-intensive systems
- Author
- A Hagerfors
- A Hevner
- A Olerup
- B Langefors
- CU Ciborra
- CU Ciborra
- CU Ciborra
- CU Ciborra
- D Sims
- DE Avison
- E Mumford
- E Mumford
- FA Stowell
- G Agner-Sigbo
- G Bateson
- G De Zeeuw
- G Radnitzky
- G Sandstrom
- HR Maturana
- I Sommerville
- K Weick
- KE Boulding
- L Bertalanffy von
- L Mathiassen
- LA Suchman
- NE Andersen
- P Bednar
- P Checkland
- PM Bednar
- PM Bednar
- R Ashby
- R Hirschheim
- R Hirschheim
- R Weber
- S Friis
- S Ingman
- W Ulrich
- W Ulrich
- WJ Orlikowski
- Publication venue
- 'Springer Fachmedien Wiesbaden GmbH'
- Publication date
- 01/01/2007
- Field of study
This paper discusses the professional roles of information systems analysts and users, focusing on a perspective of human intensive, rather than software intensive information systems. The concept of âmeaningful useâ is discussed in re-lation to measures of success/failure in IS development. The authors consider how a number of different aspects of reductionism may distort analyses, so that processes of inquiry cannot support organizational actors to explore and shape their requirements in relation to meaningful use. Approaches which attempt to simplify complex problem spaces, to render them more susceptible to âsolutionâ are problematized. Alternative perspectives which attempt a systematic, holistic complexification, by supporting contextual dependencies to emerge, are advocated as a way forward
Changing Perspectives in the Assessment of Resectability of Hilar Cholangiocarcinoma
- Author
- Publication venue
- Springer-Verlag
- Publication date
- 01/01/2007
- Field of study
Influence of the central-to-peripheral arterial stiffness gradient on the timing and amplitude of wave reflections
- Author
- A Kollias
- A Mizuno
- Barry J McDonnell
- BE Westerhof
- BR Di Iorio
- C Vlachopoulos
- Carmel M McEniery
- CM McEniery
- CU Choi
- G Schillaci
- GC Van Den Bos
- GF Mitchell
- Ian B Wilkinson
- IB Wilkinson
- J Nurnberger
- J Seidlerova
- J Sugawara
- J Sugawara
- JA Chirinos
- JJ van der Heijden-Spek
- John R Cockcroft
- JP Murgo
- JS Martin
- KL Wang
- M Karamanoglu
- M Namasivayam
- M Ring
- M Vyas
- ME Safar
- MJ Roman
- N Saji
- N Westerhof
- P Segers
- R Kelly
- RD Latham
- S Katsuda
- S Laurent
- SJ Vermeersch
- SS Hickson
- Stacey S Hickson
- T Weber
- T Weber
- Wilmer W Nichols
- WW Nichols
- WW Nichols
- Y Ben-Shlomo
- Yasmin
- Publication venue
- HYPERTENSION RESEARCH
- Publication date
- 01/01/2016
- Field of study
In individuals with compliant aortas, peripheral muscular artery stiffness exceeds central elastic artery stiffness. With ageing, central stiffness increases, with little change in peripheral stiffness, resulting in a reversal of the normal stiffness gradient. This reversal may reduce wave reflection amplitude, due to movement of the major âeffectiveâ reflection site further from the heart. To test this, we investigated the relationship among arterial stiffness gradients (normal and reversed), wave reflection amplitude and reflection site distance.
Subjects aged â„50years were recruited from the Anglo-Cardiff Collaborative Trial. Central stiffness was assessed by carotid-femoral pulse wave velocity (cfPWV). In study 1, peripheral PWV was also measured in the arm (carotid-radial, crPWV), and in study 2 in the leg (femoral- dorsalis pedis, fpPWV). Reflection site distance was calculated from cfPWV and reflected wave travel time. Subjects were dichotomized into those with a normal stiffness gradient (peripheral>central PWV), or a reversed gradient (peripheral<central PWV).
In study 1, reflection site distance was greater in subjects with a reversed gradient (P<0.01), whereas time to reflection was lower (P<0.001). Both augmentation pressure (P<0.001) and augmentation index (P<0.05) were greater in subjects with a reversed gradient. In study 2, augmentation pressure, augmentation index and reflection site distance were greater in subjects with a reversed stiffness gradient (P<0.01, P<0.05 and P<0.01, respectively), and time to reflection was not different between groups.
A reversed arterial stiffness gradient is associated with increased reflection site distance and a paradoxical increase in reflected wave amplitude, and augmentation index
Doppler ultrasound in the measurement of pulse wave velocity: agreement with the Complior method
- Author
- B Jiang
- B Pannier
- Bernat Guasch
- BM Pannier
- C Vlachopoulos
- CJ Huck
- CU Choi
- Diana Faur
- el-SH Ibrahim
- FU Mattace-Raso
- GF Mitchell
- Gosse Philippe
- Isabel Garcia
- J Blacher
- Jordi Calabia
- JP Baguet
- K Cruickshank
- K Sutton-Tyrrell
- K Sutton-Tyrrell
- KL Wang
- Koen Matthys
- M Terai
- Maria Garcia
- Martà Vallés
- ME Safar
- MW Rajzer
- Nadia Martin
- P Boutouyrie
- Pere Torguet
- PV Vaitkevicius
- S Laurent
- S Laurent
- S Laurent
- S Meaume
- S Zoungas
- SG Anderson
- SS DeLoach
- T Shoji
- T Shokawa
- T Willum-Hansen
- Thomas Weber
- Publication venue
- BioMed Central
- Publication date
- 01/01/2011
- Field of study
Aortic stiffness is an independent predictor factor for cardiovascular risk. Different methods for determining pulse wave velocity (PWV) are used, among which the most common are mechanical methods such as SphygmoCor or Complior, which require specific devices and are limited by technical difficulty in obtaining measurements. Doppler guided by 2D ultrasound is a good alternative to these methods. We studied 40 patients (29 male, aged 21 to 82 years) comparing the Complior method with Doppler. Agreement of both devices was high (R = 0.91, 0.84-0.95, 95% CI). The reproducibility analysis revealed no intra-nor interobserver differences. Based on these results, we conclude that Doppler ultrasound is a reliable and reproducible alternative to other established methods for the measurement of aortic PWV
Measurement of the inclusive and dijet cross-sections of b-jets in pp collisions at sqrt(s) = 7 TeV with the ATLAS detector
- Author
- Aad G
- Abbott B
- Abdallah J
- Abdelalim AA
- Abdesselam A
- Abdinov O
- Abi B
- Abolins M
- Abramowicz H
- Abreu H
- Acerbi E
- Acharya BS
- Ackers M
- Adams DL
- Addy TN
- Adelman J
- Aderholz M
- Adomeit S
- Adragna P
- Adye T
- Aefsky S
- Aguilar-Saavedra JA
- Aharrouche M
- Ahlen SP
- Ahles F
- Ahmad A
- Ahsan M
- Aielli G
- Akdogan T
- Akesson TPA
- Akimoto G
- Akimov AV
- Alam MA
- Alam MS
- Albrand S
- Aleksa M
- Aleksandrov IN
- Aleppo M
- Alessandria F
- Alexa C
- Alexander G
- Alexandre G
- Alexopoulos T
- Alhroob M
- Aliev M
- Alimonti G
- Alison J
- Aliyev M
- Allport PP
- Allwood-Spiers SE
- Almenar CC
- Almond J
- Aloisio A
- Alon R
- Alonso A
- Alonso J
- Alviggi MG
- Amako K
- Amaral P
- Amelung C
- Ammosov VV
- Amorim A
- Amoros G
- Amram N
- Anastopoulos C
- Andari N
- Andeen T
- Anders CF
- Anderson KJ
- Andreazza A
- Andrei V
- Andrieux M-L
- Anduaga XS
- Angerami A
- Anghinolfi F
- Anh TV
- Anjos N
- Annovi A
- Antonaki A
- Antonelli M
- Antonelli S
- Antos J
- Anulli F
- Aoun S
- Apolle R
- Arabidze G
- Aracena I
- Arai Y
- Arce ATH
- Archambault JP
- Arfaoui S
- Arguin J-F
- Arik E
- Arik M
- Armbruster AJ
- Arms KE
- Armstrong SR
- Arnaez O
- Arnault C
- Artamonov A
- Artoni G
- Arutinov D
- Asai S
- Asfandiyarov R
- Ask S
- Asman B
- Asquith L
- Assamagan K
- Astbury A
- Astvatsatourov A
- Atoian G
- Aubert B
- Auerbach B
- Auge E
- Augsten K
- Aurousseau M
- Austin N
- Avramidou R
- Axen D
- Ay C
- Azuelos G
- Azuma Y
- Baak MA
- Baccaglioni G
- Bacci C
- Bach AM
- Bachacou H
- Bachas K
- Bachy G
- Backes M
- Badescu E
- Bagnaia P
- Bahinipati S
- Bai Y
- Bailey DC
- Bain T
- Baines JT
- Baker OK
- Baker S
- Banas E
- Banerjee P
- Banerjee S
- Banfi D
- Bangert A
- Bansal V
- Bansil HS
- Barak L
- Baranov SP
- Barashkou A
- Barber T
- Barberio EL
- Barberis D
- Barbero M
- Bardin DY
- Barillari T
- Barisonzi M
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- Barnett BM
- Barnett RM
- Baroncelli A
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- Barreiro F
- Barrera CO
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- Bates RL
- Batkova L
- Batley JR
- Battaglia A
- Battistin M
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- Bauer F
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- Beare B
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- Beauchemin PH
- Beccherle R
- Bechtle P
- Beck HP
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- Beddall A
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- Bednyakov VA
- Bee C
- Begel M
- Behera PK
- Beimforde M
- Belanger-Champagne C
- Belenguer MJ
- Belhorma B
- Bell PJ
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- Beltramello O
- Ben Ami S
- Benary O
- Benchekroun D
- Benchouk C
- Bendel M
- Benedict BH
- Benekos N
- Benhammou Y
- Benjamin DP
- Benoit M
- Bensinger JR
- Benslama K
- Bentvelsen S
- Berge D
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- Bernardet K
- Bernat P
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- Bertin A
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- Buckingham RM
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- Butterworth JM
- Buttinger W
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- Cabrera Urban S
- Caccia M
- Caforio D
- Cakir IT
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- Calafiura P
- Calderini G
- Calfayan P
- Calkins R
- Caloba LP
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- Camard A
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- Castanheira MTD
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- Castillo LRF
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- Cavalcanti TP
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- Chelkov GA
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- Chepurnov VF
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- Childers JT
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- Christidi IA
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- Cooper BD
- Cooper-Sarkar AM
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- Corradi M
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- Correia AMH
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- Cortes-Gonzalez A
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- Costa MJ
- Costanzo D
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- Cote D
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- Cox BE
- Cranmer K
- Crepe-Renaudin S
- Cristinziani M
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- Curtis CJ
- Cwetanski P
- Czirr H
- Czyczula Z
- D'Auria S
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- da Costa JBG
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- Da Silva PVM
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- Dallapiccola C
- Dallison SJ
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- Damazio DO
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- de Renstrom PAB
- de Saintignon P
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- Dedes G
- Dedovich DV
- Degenhardt J
- Dehchar M
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- Del Papa C
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- della Porta GZ
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- Di Ciaccio A
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- Di Girolamo A
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- Di Mattia A
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- Di Simone A
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- Diblen F
- Diehl EB
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- Fiolhais MCN
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- Fisher MJ
- Fisher SM
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- Fleck I
- Fleckner J
- Fleischmann P
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- Flowerdew MJ
- Foehlisch F
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- Foster JM
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- Gallas EJ
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- Gallop BJ
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- Gapienko VA
- Gaponenko A
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- Garonne V
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- Garvey J
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- Gazis EN
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- Gemme C
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- Genest MH
- Gentile S
- Georgatos F
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- Geweniger C
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- Giacobbe B
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- Giakoumopoulou V
- Giangiobbe V
- Gianotti F
- Gibbard B
- Gibson A
- Gibson SM
- Gieraltowski GF
- Gilbert LM
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- Gildemeister O
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- Zhemchugov A
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- Zieminska D
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- Zimmermann S
- Ziolkowski M
- Zitoun R
- Zivkovic L
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- Zutshi V
- Zwalinski L
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 31/12/2010
- Field of study
The inclusive and dijet production cross-sections have been measured for jets
containing b-hadrons (b-jets) in proton-proton collisions at a centre-of-mass
energy of sqrt(s) = 7 TeV, using the ATLAS detector at the LHC. The
measurements use data corresponding to an integrated luminosity of 34 pb^-1.
The b-jets are identified using either a lifetime-based method, where secondary
decay vertices of b-hadrons in jets are reconstructed using information from
the tracking detectors, or a muon-based method where the presence of a muon is
used to identify semileptonic decays of b-hadrons inside jets. The inclusive
b-jet cross-section is measured as a function of transverse momentum in the
range 20 < pT < 400 GeV and rapidity in the range |y| < 2.1. The bbbar-dijet
cross-section is measured as a function of the dijet invariant mass in the
range 110 < m_jj < 760 GeV, the azimuthal angle difference between the two jets
and the angular variable chi in two dijet mass regions. The results are
compared with next-to-leading-order QCD predictions. Good agreement is observed
between the measured cross-sections and the predictions obtained using POWHEG +
Pythia. MC@NLO + Herwig shows good agreement with the measured bbbar-dijet
cross-section. However, it does not reproduce the measured inclusive
cross-section well, particularly for central b-jets with large transverse
momenta.Comment: 10 pages plus author list (21 pages total), 8 figures, 1 table, final
version published in European Physical Journal
Jet energy measurement with the ATLAS detector in proton-proton collisions at root s=7 TeV
- Author
- Aad G
- Abbott B
- Abdallah J
- Abdelalim AA
- Abdesselam A
- Abdinov O
- Abi B
- Abolins M
- Abramowicz H
- Abreu H
- Acerbi E
- Acharya BS
- Adams DL
- Addy TN
- Adelman J
- Aderholz M
- Adomeit S
- Adragna P
- Adye T
- Aefsky S
- Aguilar-Saavedra JA
- Aharrouche M
- Ahlen SP
- Ahles F
- Ahmad A
- Ahsan M
- Aielli G
- Akdogana T
- Akesson TPA
- Akimoto G
- Akimov AV
- Akiyama A
- Aktas A
- Alam MA
- Alam MS
- Albert J
- Albrand S
- Aleksa M
- Aleksandrov IN
- Alessandria F
- Alexa C
- Alexander G
- Alexandre G
- Alexopoulos T
- Alhroob M
- Aliev M
- Alimonti G
- Alison J
- Aliyev M
- Allport PP
- Allwood-Spiers SE
- Almenar CC
- Almond J
- Aloisio A
- Alon R
- Alonso A
- Alviggi MG
- Amako K
- Amaral P
- Amelung C
- Ammosov VV
- Amorim A
- Amoros G
- Amram N
- Anastopoulos C
- Ancu LS
- Andari N
- Andeen T
- Anders CF
- Anders G
- Anderson KJ
- Andreazza A
- Andrei V
- Andrieux M-L
- Anduaga XS
- Angerami A
- Anghinolfi F
- Anh TV
- Anjos N
- Annovi A
- Antonaki A
- Antonelli M
- Antonov A
- Antos J
- Anulli F
- Aoun S
- Apolle R
- Arabidze G
- Aracena I
- Arai Y
- Aranda CP
- Arce ATH
- Archambault JP
- Arfaoui S
- Arguin J-F
- Arik E
- Arik M
- Armbruster AJ
- Arnaez O
- Arnault C
- Artamonov A
- Artoni G
- Arutinov D
- Asai S
- Asfandiyarov R
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- Asman B
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- Assamagan K
- Astbury A
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- Atoian G
- Aubert B
- Auge E
- Augsten K
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- Avolio G
- Avramidou R
- Axen D
- Ay C
- Azuelos G
- Azuma Y
- Baak MA
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- Bacci C
- Bach AM
- Bachacou H
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- Bachy G
- Backes M
- Backhaus M
- Badescu E
- Bagnaia P
- Bahinipati S
- Bai Y
- Bailey DC
- Bain T
- Baines JT
- Baker MD
- Baker OK
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- Banfi D
- Bangert A
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- Bansil HS
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- Barberio EL
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- Bardin DY
- Barillari T
- Barisonzi M
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- Barnett BM
- Barnett RM
- Baroncelli A
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- Barr AJ
- Barreiro F
- Barrera CO
- Barrillon P
- Bartoldus R
- Barton AE
- Bartsch D
- Bartsch V
- Bates RL
- Batkova L
- Batley JR
- Battaglia A
- Battistin M
- Battistoni G
- Bauer F
- Bawa HS
- Beare B
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- Beauchemin PH
- Beccherle R
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- Beddall A
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- Beltramello O
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- Benjamin DP
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- Biglietti M
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- Tomoto M
- Tompkins L
- Toms K
- Tong G
- Tonoyan A
- Topfel C
- Topilin ND
- Torchiani I
- Toro RC
- Torregrosa EF
- Torrence E
- Torres H
- Torres RC
- Toth J
- Touchard F
- Tovey DR
- Traynor D
- Trefzger T
- Tremblet L
- Tricoli A
- Trigger IM
- Trincaz-Duvoid S
- Trinh TN
- Tripiana MF
- Trischuk W
- Trivedi A
- Trocme B
- Troncon C
- Trottier-McDonald M
- Trzupek A
- Tsarouchas C
- Tseng JC-L
- Tsiakiris M
- Tsiareshka PV
- Tsionou D
- Tsipolitiss G
- Tsiskaridze V
- Tskhadadze EG
- Tsukerman II
- Tsulaia V
- Tsung J-W
- Tsuno S
- Tsybychev D
- Tua A
- Tudorache A
- Tudorache V
- Tuggle JM
- Turala M
- Turecek D
- Turlay E
- Turra R
- Tuts PM
- Twomey MS
- Tykhonov A
- Tylmad M
- Tyndel M
- Tyrvainen H
- Tzanakos G
- Uchida K
- Ueda I
- Ueno R
- Ugland M
- Uhlenbrock M
- Uhrmacher M
- Ukegawa F
- Unal G
- Underwood DG
- Undrus A
- Unel G
- Unno Y
- Urban SC
- Urbaniec D
- Urkovsky E
- Urrejola P
- Usai G
- Uslenghi M
- Vacavant L
- Vacek V
- Vachon B
- Vahsen S
- Valenta J
- Valente P
- Valentinetti S
- Valkar S
- Vallecorsa S
- Van der Graaf H
- Van der Kraaij E
- Van der Leeuw R
- Van der Poel E
- Van der Ster D
- Van Eldik N
- Van Gemmeren P
- Van Huysduynen LH
- Van Kesteren Z
- Van Vulpen I
- Vanadia M
- Vandelli W
- Vandoni G
- Vaniachine A
- Vankov P
- Vannucci F
- Vaque FV
- Vari R
- Varnes EW
- Varouchas D
- Vartapetian A
- Varvell KE
- Vassilakopouloss VI
- Vazeille F
- Vegni G
- Veillet JJ
- Vellidiss C
- Veloso F
- Veness R
- Veneziano S
- Ventura A
- Ventura D
- Venturi M
- Venturi N
- Vercesi V
- Verducci M
- Verge LM
- Verkerke W
- Vermeulen JC
- Vest A
- Vetterli MC
- Vichou I
- Vickey T
- Viegas FJTA
- Viehhauser GHA
- Viel S
- Villa M
- Villani EG
- Vilucchi E
- Vincter MG
- Vinek E
- Vinogradov VB
- Virchaux M
- Virzi J
- Vitells O
- Viti M
- Vivarelli I
- Vlachos S
- Vladoiu D
- Vlasak M
- Vlasov N
- Vogel A
- Vokac P
- Volpi G
- Volpi M
- Volpini G
- Von der Schmitt H
- Von Loeben J
- Von Radziewski H
- Von Toerne E
- Vorobel V
- Vorobiev AP
- Vorwerk V
- Vos M
- Voss R
- Voss TT
- Vossebeld JH
- Vranjes N
- Vrba V
- Vreeswijk M
- Vuillermet R
- Vujicic M
- Vukotic I
- Wagner P
- Wagner W
- Wahlen H
- Wakabayashi J
- Walbersloh J
- Walch S
- Walder J
- Walker R
- Walkowiak W
- Wall R
- Waller P
- Wang C
- Wang H
- Wang H
- Wang J
- Wang J
- Wang JC
- Wang R
- Wang SM
- Warburton A
- Ward CP
- Warsinsky M
- Wastie R
- Watkins PM
- Watson AT
- Watson MF
- Watts G
- Watts S
- Waugh AT
- Waugh BM
- Weber J
- Weber M
- Weber MS
- Weber P
- Weidberg AR
- Weigell P
- Weingarten J
- Weiser C
- Wellenstein H
- Wells PS
- Wen M
- Wenaus T
- Wendler S
- Weng Z
- Wenglers T
- Wenig S
- Wermes N
- Werner M
- Werner P
- Werth M
- Wessels M
- Weydert C
- Whalen K
- Wheeler-Ellis SJ
- Whitaker SP
- White A
- White MJ
- White S
- Whitehead SR
- Whiteson D
- Whittington D
- Wicek F
- Wicke D
- Wickens FJ
- Wiedenmann W
- Wielersis M
- Wienemann P
- Wiglesworth C
- Wiik-Fuchs LAM
- Wijeratne PA
- Wildauer A
- Wildt MA
- Wilhelm I
- Wilkens HG
- Will JZ
- Williams E
- Williams HH
- Willis W
- Willocq S
- Wilson A
- Wilson JA
- Wilson MG
- Wingerter-Seez I
- Winkelmann S
- Winklmeier F
- Wittgen M
- Wolter MW
- Wolters H
- Wong WC
- Wooden G
- Wosiek BK
- Wotschack J
- Woudstra MJ
- Wraight K
- Wright C
- Wright D
- Wright M
- Wrona B
- Wu SL
- Wu X
- Wu Y
- Wulf E
- Wunstorf R
- Wynne BM
- Xaplanteris L
- Xella S
- Xie S
- Xie Y
- Xu C
- Xu D
- Xu G
- Yabsley B
- Yacoobb S
- Yagci KD
- Yamada M
- Yamaguchi H
- Yamamoto A
- Yamamoto K
- Yamamoto S
- Yamamura T
- Yamanaka T
- Yamaoka J
- Yamazaki T
- Yamazaki Y
- Yan Z
- Yang H
- Yang UK
- Yang Y
- Yang Y
- Yang Z
- Yanush S
- Yao Y
- Yasu Y
- Ye J
- Ye S
- Yildizb HD
- Yilmaz M
- Yoosootiniya R
- Yorita K
- Yoshida R
- Young C
- Youssef S
- Yu D
- Yu J
- Yu J
- Yuan L
- Yurkewicz A
- Zaets VG
- Zaidan R
- Zaitsev AM
- Zajacova Z
- Zalite YK
- Zanello L
- Zarzhitsky P
- Zaytsev A
- Zeitnitz C
- Zeller M
- Zeman M
- Zemla A
- Zendler C
- Zenin O
- Zenonos Z
- Zenz S
- Zerwas D
- Zhan Z
- Zhang D
- Zhang H
- Zhang J
- Zhang Q
- Zhang X
- Zhang Z
- Zhao L
- Zhao T
- Zhao Z
- Zhemchugov A
- Zheng S
- Zhong J
- Zhou B
- Zhou N
- Zhou Y
- Zhu CG
- Zhu H
- Zhu J
- Zhu Y
- Zhuang X
- Zhuravlov V
- Zieminska D
- Zimmermann R
- Zimmermann S
- Zimmermann S
- Zinonos Z
- Ziolkowski M
- Zitoun R
- Zivkovic L
- Zmouchko VV
- Zobernig G
- Zoccoli A
- Zolnierowski Y
- Zsenei A
- Zutshi V
- Zwalinski L
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/03/2013
- Field of study
The jet energy scale and its systematic uncertainty are determined for jets measured with the ATLAS detector at the LHC in proton-proton collision data at a centre-of-mass energy of âs = 7TeV corresponding to an integrated luminosity of 38 pb-1. Jets are reconstructed with the anti-kt algorithm with distance parameters R=0. 4 or R=0. 6. Jet energy and angle corrections are determined from Monte Carlo simulations to calibrate jets with transverse momenta pTâ„20 GeV and pseudorapidities {pipe}η{pipe}<4. 5. The jet energy systematic uncertainty is estimated using the single isolated hadron response measured in situ and in test-beams, exploiting the transverse momentum balance between central and forward jets in events with dijet topologies and studying systematic variations in Monte Carlo simulations. The jet energy uncertainty is less than 2. 5 % in the central calorimeter region ({pipe}η{pipe}<0. 8) for jets with 60â€pT<800 GeV, and is maximally 14 % for pT<30 GeV in the most forward region 3. 2â€{pipe}η{pipe}<4. 5. The jet energy is validated for jet transverse momenta up to 1 TeV to the level of a few percent using several in situ techniques by comparing a well-known reference such as the recoiling photon pT, the sum of the transverse momenta of tracks associated to the jet, or a system of low-pT jets recoiling against a high-pT jet. More sophisticated jet calibration schemes are presented based on calorimeter cell energy density weighting or hadronic properties of jets, aiming for an improved jet energy resolution and a reduced flavour dependence of the jet response. The systematic uncertainty of the jet energy determined from a combination of in situ techniques is consistent with the one derived from single hadron response measurements over a wide kinematic range. The nominal corrections and uncertainties are derived for isolated jets in an inclusive sample of high-pT jets. Special cases such as event topologies with close-by jets, or selections of samples with an enhanced content of jets originating from light quarks, heavy quarks or gluons are also discussed and the corresponding uncertainties are determined. © 2013 CERN for the benefit of the ATLAS collaboration
Uptake Mechanism of ApoE-Modified Nanoparticles on Brain Capillary Endothelial Cells as a Blood-Brain Barrier Model
- Author
- A Friese
- A Zensi
- A Zensi
- AE Gulyaev
- AM Butt
- Anja Zensi
- B Petri
- C Crone
- C Weber
- C Weber
- CA Peters-Libeu
- Claus U. Pietrzik
- CU Pietrzik
- DJ Begley
- DJ Begley
- DM Hatters
- E Leupold
- E Leupold
- EA Neuwelt
- Franz Worek
- G Bu
- G Bu
- Hagen von Briesen
- I Sauer
- I Sauer
- J Hertz
- J Herz
- J Kreuter
- J Kreuter
- J Kreuter
- J Kreuter
- J Kreuter
- J Kreuter
- J Kreuter
- Jörg Kreuter
- K Langer
- K Michaelis
- K Michaelis
- K Ulbrich
- KH Weisgraber
- L Hasadsri
- LL Rubin
- M LĂŒck
- Maria A. Deli
- P Calvo
- P Calvo
- R Alyautdin
- RN Alyautdin
- RN Alyautdin
- S Rhaese
- Sabrina E. Tschickardt
- Sascha L. Wien
- SC Steiniger
- Sylvia Wagner
- T Hekmatara
- T Vogel
- Tikva Vogel
- TL Innerarity
- U Schroeder
- Wladislaw Maier
- WM Pardridge
- WM Pardridge
- WM Pardridge
- Y Omidi
- Publication venue
- Public Library of Science
- Publication date
- 01/01/2012
- Field of study
Background: The blood-brain barrier (BBB) represents an insurmountable obstacle for most drugs thus obstructing an effective treatment of many brain diseases. One solution for overcoming this barrier is a transport by binding of these drugs to surface-modified nanoparticles. Especially apolipoprotein E (ApoE) appears to play a major role in the nanoparticle-mediated drug transport across the BBB. However, at present the underlying mechanism is incompletely understood.
Methodology/Principal Findings: In this study, the uptake of the ApoE-modified nanoparticles into the brain capillary endothelial cells was investigated to differentiate between active and passive uptake mechanism by flow cytometry and confocal laser scanning microscopy. Furthermore, different in vitro co-incubation experiments were performed with competing ligands of the respective receptor.
Conclusions/Significance: This study confirms an active endocytotic uptake mechanism and shows the involvement of low density lipoprotein receptor family members, notably the low density lipoprotein receptor related protein, on the uptake of the ApoE-modified nanoparticles into the brain capillary endothelial cells. This knowledge of the uptake mechanism of ApoE-modified nanoparticles enables future developments to rationally create very specific and effective carriers to overcome the blood-brain barrier
The use of the temporal scan statistic to detect methicillin-resistant Staphylococcus aureus clusters in a community hospital
- Author
- A Mellmann
- AJ Hall
- B Shopsin
- BC Kahl
- BD Sauders
- C Cuny
- Clinical and Laboratory Standards Institute
- CU Köser
- David L Pearl
- DE Craven
- DL Monnet
- DL Pearl
- FC Tenover
- FH Yap
- G Kuhn
- GR Golding
- IR Dohoo
- IR Dohoo
- J Scott Weese
- JM Jennings
- K Wilkinson
- LY Chai
- M Goetghebeur
- M Kulldorff
- M Torabi
- Meredith C Faires
- MT Guerin
- N Daneman
- Olaf Berke
- P Van De Griend
- P Wiersma
- Richard J Reid-Smith
- S Rankin
- SG Weber
- SR Harris
- SR Harris
- SS Huang
- StataCorp
- T Kim
- William A Ciccotelli
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- Field of study
Phase diagram of the two-dimensional Hubbard-Holstein model
- Author
- A Lanzara
- A Nocera
- AH CastroNeto
- AS Darmawan
- B Keimer
- B Xiao
- C Chen
- CB Mendl
- CU Lavanya
- CW Chen
- D Wang
- E Berger
- E Jeckelmann
- E Khatami
- EA Nowadnick
- EA Nowadnick
- EH DaSilvaNeto
- F Becca
- F Giustino
- F HĂ©bert
- H Matsueda
- H-H Kim
- J Bardeen
- J Bauer
- J Bauer
- J Chang
- J Gubernatis
- JE Hirsch
- JE Hirsch
- K Rossnagel
- M Hohenadler
- M Hohenadler
- M Hohenadler
- M Weber
- O Cyr-ChoiniĂšre
- P Barone
- R Blankenbecler
- R Hlubina
- R Hlubina
- RE Peierls
- RK Kaul
- RR dosSantos
- S Johnston
- S Karakuzu
- S Karakuzu
- S Li
- S Li
- S Manzeli
- S Pradhan
- S Sorella
- SR White
- T Cuk
- T Ohgoe
- T Sato
- T Wu
- TP Devereaux
- VJ Luther
- W Kohn
- WD Wise
- WQ Ning
- Y Deng
- Y Murakami
- Y-X Zhang
- ZH Liu
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/01/2020
- Field of study
The electron\u2013electron and electron\u2013phonon interactions play an important role in correlated materials, being key features for spin, charge and pair correlations. Thus, here we investigate their effects in strongly correlated systems by performing unbiased quantum Monte Carlo simulations in the square lattice Hubbard-Holstein model at half-filling. We study the competition and interplay between antiferromagnetism (AFM) and charge-density wave (CDW), establishing its very rich phase diagram. In the region between AFM and CDW phases, we have found an enhancement of superconducting pairing correlations, favouring (nonlocal) s-wave pairs. Our study sheds light over past inconsistencies in the literature, in particular the emergence of CDW in the pure Holstein model case
Observation of the diphoton decay of the Higgs boson and measurement of its properties
- Author
- 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
- Akchurin N. Fe
- Akgun B. Ey
- Akin I. V. Dd
- Albajar C. Cs
- Albayrak E. A. Ef
- Albergo S. Bd
- 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
- Alves G. A. J
- 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
- Antunovic Z. S
- Apanasevich L. Ee
- Apollinari G. Dz
- Appelt E. Ff
- Apresyan A. Du
- Apyan A. El
- Arcidiacono R. Bo
- Arenton M. W. Fg
- Argiro S. Bo
- Arneodo M. Bo
- Arora S. Fb
- Asavapibhop B. Db
- Asawatangtrakuldee C. P
- Asin I. Ak
- Askew A. Ec
- Aslanoglou X. Ap
- Assran Y. W
- Ata M. Ai
- Attikis A. U
- Aubin A. Ad
- Auffray E. Cv
- Autermann C. Ah
- Auzinger G. Cv
- Avdeeva E. Eo
- Avery P. Ea
- Avetisyan A. Dn
- Avila C. Q
- Azarkin M. Cn
- Azhgirey I. Cp
- Aziz T. Ay
- Azzi P. Bj
- Azzolini V. Dv
- Azzurri P. Bm
- Baarmand M. M. Ed
- Babb J. Dr
- Baber M. Dj
- Bacchetta N. Bj
- Bachmair F. Cx
- Bachtis M. Cv
- Baden A. Ek
- Baffioni S. Ac
- Bagliesi G. Bm
- Baillon P. Cv
- Bainbridge R. Dj
- Bakhshiansohi H. Az
- Bakirci M. N. Dc
- Ball A. H. Cv
- Ban Y. P
- Banerjee S. Aw
- Banerjee S. Ay
- Bansal M. D
- Bansal S. D
- Barbagli G. Be
- Barberis E. Eq
- Barbieri R. El
- Barbone L. Bb
- Barfuss A. F. Ei
- Bargassa P. Ci
- Barge D. Dt
- Baringer P. Eh
- Barker A. Fb
- Barnes V. E. Ew
- Barnett B. A. Eg
- Barney D. Cv
- Barone L. Bn
- Barth C. Am
- Bartosik N. Ak
- Basegmez S. H
- Battilana C. Cr
- Bauer G. El
- Bauerdick L. A. T. Dz
- Baumgartel D. Eq
- Baus C. Am
- Bayshev I. Cp
- Bazterra V. E. Ee
- BaÌni L. Cx
- Bean A. Eh
- Beauceron S. Af
- Beaudette F. Ac
- Beaupere N. Af
- Beernaert K. G
- Behnamian H. Az
- Behr J. Ak
- Behrenhoff W. Ak
- Behrens U. Ak
- BeiraÌo Da Cruz E. Silva C. Ci
- Belforte S. Bp
- Beliy N. I
- Belknap D. A. Fi
- Bell A. J. Ak
- Bell K. W. Di
- Bellan R. Bo
- Bellato M. Bj
- Belloni A. Ek
- Beluffi C. H
- Belyaev A. Co
- Belyaev A. Di
- Benaglia A. Cv
- Bencze G. Aq
- Bendavid J. Cv
- Benedetti D. Ew
- Benelli G. Eh
- Benhabib L. Cv
- Beni N. Ar
- Benitez J. F. Cv
- Benucci L. G
- Benussi L. Bf
- Benvenuti A. C. Bc
- Beranek S. Ah
- Beretvas A. Dz
- Bergauer T. B
- Berger J. Am
- Bergholz M. Ak
- Beri S. B. Au
- Bernardes C. A. L
- Bernardini J. Bm
- Bernet C. Cv
- Berry D. Ee
- Berry E. Do
- Berryhill J. Dz
- Bertl W. Cw
- Besancon M. Ab
- Betchart B. Ez
- Bethani A. Ak
- Betts R. R. Ee
- Bhardwaj A. Av
- Bhat P. C. Dz
- Bhatnagar V. Au
- Bhattacharya S. Aw
- Bhattacharya S. Do
- Bhawandeep U. Au
- Bhowmik S. Ay
- Bialkowska H. Cg
- Bian J. G. O
- Bianchi G. Cv
- Bianchini L. Cx
- Bianco S. Bf
- Biasini M. Bl
- Biasotto M. Bj
- Biino C. Bo
- Bilei G. M. Bl
- Bilin B. Dd
- Bilki B. Ef
- Bilmis S. Dd
- Bitioukov S. Cp
- Blekman F. E
- Blobel V. Al
- Bloch D. Ad
- Bloch P. Cv
- Bloom K. Eo
- Bluj M. Cg
- Blumenfeld B. Eg
- Blyweert S. E
- Boccali T. Bm
- Bocci A. Cv
- Bochenek J. Ec
- Bodek A. Ez
- Bodlak M. V
- Boimska B. Cg
- Bolla G. Ew
- Bolognesi S. Eg
- Bonacorsi D. Bc
- Bonato A. Cv
- Bondu O. Cv
- Bontenackels M. Ah
- Boos E. Co
- Bornheim A. Du
- Borras K. Ak
- Bortignon P. Cx
- Bortoletto D. Ew
- Bose S. Eo
- Bose T. Dn
- Botta C. Cv
- Boudoul G. Af
- Bouhali O. Fd
- Bourilkov D. Ea
- Boutle S. Fg
- Bouvier E. Af
- BoÌser C. Am
- Bradmiller Feld J. Dt
- Braibant Giacomelli S. Bc
- Branca A. Bj
- Branson J. G. Ds
- Breedon R. Dp
- Breto G. Dp
- Breuker H. Cv
- Brew C. Di
- Brigliadori L. Bc
- Brigljevic V. T
- Brinkerhoff A. Es
- Brinson J. Et
- Brito L. J
- Broccolo G. Bm
- Brochero Cifuentes J. A. Cu
- Brochet S. Af
- Brodski M. Ai
- Brom J. M. ad
- Brona G. Ch
- Brooke J. J. Dh
- Brown R. M. Di
- 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
- Cerati G. B. Ds
- 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
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- 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
- Cittolin S. Ds
- Ciulli V. Be
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- Codispoti G. Bc
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- Heredia de La Cruz I. Bz
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- Langenegger U. Cw
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- LIGABUE FRANCO
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- Lopez Fernandez R. Bz
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- Lungu G. Fa
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- Luukka P. Z
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- Lychkovskaya N. Cm
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- Macneill I. Ds
- Maes M. E
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- Maity M. Ay
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- Manthos N. Ap
- Mantovani G. Bl
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- Marco J. Cu
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- 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
- MaÌenpaÌaÌ T. Z
- 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
- MineÌ 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
- MuÌller T. Am
- My S. Bb
- 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
- NaÌgeli C. Cx
- Negrete M. O. Dr
- Nessi Tedaldi F. Cx
- Neu C. Fg
- Neumeister N. Ew
- Newbold D. M. Dh
- Newman Holmes C. Dz
- Newman H. B. Du
- 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
- NuÌrnberg A. Am
- 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
- OâBrien C. Ee
- OâDell V. Dz
- 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
- PernieÌ 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
- PeÌrez Calero Yzquierdo A. Cr
- 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
- PimiaÌ M. Cv
- Pin A. H
- Pinna Angioni G. L. Bo
- Piotrzkowski K. H
- Piparo D. Cv
- Piperov S. M
- PiroueÌ 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
- 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
- Rodrigo T. Cu
- Rodrigues Antunes J. Ci
- Rodriguez J. L. Eb
- RodriÌguez Marrero A. Y. Cu
- 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
- RoÌcker S. Am
- 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
- S.t. John J. Dn
- Sabes D. Af
- Sacchi R. Bo
- Safarzadeh B. Az
- Safonov A. Fd
- Safronov G. Cm
- Saha A. Bl
- Sahin M. OÌ. 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
- Salvati E. Dx
- Salvini P. Bk
- Sammet J. Ah
- Sanabria J. C. Q
- Sanchez Hernandez A. Bz
- Sander C. Al
- Sanders D. A. En
- 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
- Schael S. Ah
- SchaÌfer C. Cv
- 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
- SchoÌfbeck R. B
- SchroÌder 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
- Silkworth C. Ee
- Silva P. Cv
- Silvers D. Ew
- Silvestris L. Bb
- 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
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- 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
- Stadie H. Al
- Stahl A. Aj
- Staiano A. Bo
- Starodumov A. Cx
- Steggemann J. Cv
- SteinbruÌck G. Al
- Stenson K. Dw
- Stephans G. S. F. El
- Stickland D. Eu
- Stieger B. Cv
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- Stober F. M. Am
- Stolin V. Cm
- Stolp D. Dp
- Stone R. Fb
- Stoye M. Cv
- Stoykova S. M
- Stoynev S. Er
- StoÌckli F. El
- Strauss J. B
- Stringer R. Eh
- Strobbe N. G
- Strom D. E
- Stuart D. Dt
- Stupak J. Ex
- Sturdy J. Fh
- 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
- Sznajder A. K
- 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
- Thea A. Di
- Theofilatos K. Cx
- Thom J. Dx
- Thomas L. F
- Thomas S. Fb
- Thomassen P. Fb
- Thompson J. Dx
- ThuÌer S. Ai
- Thyssen F. G
- Tiko A. X
- Timciuc V. Du
- Tiras E. Ef
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- Tkaczyk S. Dz
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- Tomalin I. R. Di
- Tonelli Manganote E. J. K
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- Tonwar S. C. Ek
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- Topkar A. Ax
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- Tosi S. Bg
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- Traczyk P. Bn
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- Travaglini R. Bc
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- 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
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- 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
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- Uvarov L. Ck
- Uzunian A. Cp
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- Valls N. Es
- Valuev V. Dq
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- Van Doninck W. E
- Van Haevermaet H. D
- Van Hove P. Ad
- Van Mechelen P. D
- Van Mulders P. E
- Van Onsem G. P. E
- Van Remortel N. D
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- Vanlaer P. F
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- Varela J. Ci
- Varelas N. Ee
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- Vazquez Valencia F. Ca
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- Velkovska J. Ff
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- Venturi A. Bm
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- Verzetti M. Cy
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- Vidal R. Dz
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- Vinogradov A. Cn
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- Vischia P. Ci
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- Vitulo P. Bk
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- Volpe R. Cz
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- Vorobyev A. Ck
- Vorobyev A. Ck
- Voutilainen M. Y
- Vuosalo C. Fi
- Vutova M. M
- Wagner Kuhr J. Am
- Wagner S. R. Dw
- 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
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- Wayne M. Es
- Weber H. A. Cx
- Weber H. Ah
- Weber M. Ai
- Weber M. Dq
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- Weinberg M. Ec
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- 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
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- Wittich P. Dx
- Wittmer B. Ah
- Wolf M. Es
- Wolf R. Am
- Wolfe H. Et
- Wollny H. Cv
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- 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
- WoÌhri H. K. Cv
- Wright D. Ej
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- Wyslouch B. El
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- 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
- Publication date
- 01/01/2014
- Field of study
Peer reviewe
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