DUBINI, GABRIELE
 Distribuzione geografica
Continente #
NA - Nord America 826
EU - Europa 612
AS - Asia 286
SA - Sud America 7
OC - Oceania 3
AF - Africa 2
Totale 1.736
Nazione #
US - Stati Uniti d'America 801
GB - Regno Unito 218
CN - Cina 129
DE - Germania 94
SG - Singapore 71
IT - Italia 69
IE - Irlanda 68
SE - Svezia 34
RO - Romania 33
JO - Giordania 29
RU - Federazione Russa 26
CA - Canada 25
MY - Malesia 23
FR - Francia 16
BG - Bulgaria 14
ID - Indonesia 10
TR - Turchia 9
FI - Finlandia 8
UA - Ucraina 8
BE - Belgio 7
IN - India 6
NL - Olanda 5
GR - Grecia 4
VN - Vietnam 4
CZ - Repubblica Ceca 3
AU - Australia 2
BR - Brasile 2
CL - Cile 2
CO - Colombia 2
ES - Italia 2
JP - Giappone 2
SN - Senegal 2
AR - Argentina 1
BA - Bosnia-Erzegovina 1
DK - Danimarca 1
HK - Hong Kong 1
IL - Israele 1
KR - Corea 1
LT - Lituania 1
NZ - Nuova Zelanda 1
Totale 1.736
Città #
Chandler 206
Southend 174
Princeton 96
Dublin 68
Berlin 58
Singapore 51
Beijing 47
Santa Clara 40
Boardman 39
Ann Arbor 31
Council Bluffs 31
Galati 30
San Donato Milanese 29
Ashburn 28
Houston 25
Shanghai 23
Wilmington 16
Woodbridge 13
Nürnberg 12
Torino 12
Toronto 12
Mcallen 11
Falls Church 10
Jakarta 10
Montréal 9
Helsinki 8
Istanbul 8
Redwood City 8
Miami 7
Seattle 7
Yubileyny 7
Brussels 6
Fairfield 6
Norwalk 6
Sofia 6
Anaheim 5
London 5
Chicago 4
Dong Ket 4
Jinan 4
New York 4
Redmond 4
Andover 3
Kunming 3
Nanjing 3
Trumbull 3
Wuhan 3
Caluire-et-Cuire 2
Centro 2
Dearborn 2
Groningen 2
Hefei 2
Lake Forest 2
Lodi 2
Lozzo Atestino 2
Menlo Park 2
Milan 2
Nanchang 2
Rotterdam 2
Sirmione 2
São Paulo 2
Turin 2
Victoria 2
Washington 2
Aigaleo 1
Amsterdam 1
Apo 1
Auckland 1
Baotou 1
Basking Ridge 1
Binasco 1
Boca Raton 1
Bremen 1
Cambridge 1
Canberra 1
Chongqing 1
Clifton 1
Cornate D'adda 1
Denver 1
Erding 1
Fossano 1
Frankfurt am Main 1
Fremont 1
Gent 1
Guangzhou 1
Haifa 1
Hangzhou 1
Hunedoara 1
Izmir 1
Jacksonville 1
Leawood 1
Lonato 1
Montreal 1
Moscow 1
Nuremberg 1
Ottawa 1
Palermo 1
Phoenix 1
Pitesti 1
Rende 1
Totale 1.265
Nome #
Reconstruction of stented coronary arteries from optical coherence tomography images: Feasibility, validation, and repeatability of a segmentation method 92
Fluid–Structure Interaction Model of a Percutaneous Aortic Valve: Comparison with an In Vitro Test and Feasibility Study in a Patient-Specific Case 89
A patient-specific study investigating the relation between coronary hemodynamics and neo-intimal thickening after bifurcation stenting with a polymeric bioresorbable scaffold 84
A framework for computational fluid dynamic analyses of patient-specific stented coronary arteries from optical coherence tomography images 79
Automatic segmentation of optical coherence tomography pullbacks of coronary arteries treated with bioresorbable vascular scaffolds: Application to hemodynamics modeling 79
Computational replication of the patient-specific stenting procedure for coronary artery bifurcations: From OCT and CT imaging to structural and hemodynamics analyses 79
Differences in rotational positioning and subsequent distal main branch rewiring of the Tryton stent: An optical coherence tomography and computational study 78
Biomechanical Impact of Wrong Positioning of a Dedicated Stent for Coronary Bifurcations: A Virtual Bench Testing Study 75
Computational fluid dynamics of stented coronary bifurcations studied with a hybrid discretization method 72
Patient-Specific Modeling of Stented Coronary Arteries Reconstructed from Optical Coherence Tomography: Towards a Widespread Clinical Use of Fluid Dynamics Analyses 69
Trends in biomedical engineering: focus on Patient Specific Modeling and Life Support Systems 61
Stented coronary arteries: a semi-automatic segmentation method for OCT-based reconstruction 59
Impact of plaque type and side branch geometry on side branch compromise after provisional stent implantation: A simulation study 59
Fluid–Structure Simulation of a Transcatheter Aortic Valve Implantation: Potential Application to Patient-Specific Cases 57
Numerical analysis of the culotte stenting technique. 55
A comparison between standard and dedicated stents for coronary bifurcations: structural and fluid dynamic numerical simulations 54
Simulation of oxygen transfer in stented arteries and correlation with in-stent restenosis 54
Reconstruction of stented coronary arteries for CFD analyses: from in vitro to patient-specific models 53
Sequential structural and fluid dynamic numerical simulations of a stented bifurcated coronary artery 53
Patient-specific virtual simulations of stenting procedures in coronary bifurcations 52
Patient-specific computer modelling of coronary bifurcation stenting: The John Doe programme 52
Positioning of a dedicated stent for coronary bifurcations: an in silico study 51
First report on free expansion simulations of a dedicated bifurcation stent mounted on a stepped balloon 50
A Structural and fluid dynamic approach to design a new tapered balloon dedicated to stenting procedure in coronary bifurcations. 50
Biomechanical Modeling to Improve Coronary Artery Bifurcation Stenting: Expert Review Document on Techniques and Clinical Implementation 49
A structural and fluid dynamic approach to investigate a new angioplasty balloon dedicated to bifurcation lesions. 48
Numerical modelling of stenting procedures in coronary bifurcations: A structural and fluid dynamic combined approach 48
Virtual bench testing to study coronary bifurcation stenting 40
Stent deformation, physical stress, and drug elution obtained with provisional stenting, conventional culotte and Tryton-based culotte to treat bifurcations: a virtual simulation study 40
Totale 1.781
Categoria #
all - tutte 7.196
article - articoli 5.187
book - libri 0
conference - conferenze 2.009
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 0
Totale 14.392


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2019/2020274 0 0 0 0 40 66 6 43 43 17 15 44
2020/2021120 58 3 1 0 4 11 6 2 1 15 13 6
2021/2022269 17 0 7 3 2 4 4 8 31 16 51 126
2022/2023559 63 128 5 66 47 78 24 26 95 6 11 10
2023/2024142 9 31 15 20 5 11 2 18 9 2 7 13
2024/2025264 11 115 18 80 40 0 0 0 0 0 0 0
Totale 1.781