AMBROSI, DAVIDE CARLO
 Distribuzione geografica
Continente #
EU - Europa 8.724
NA - Nord America 7.931
AS - Asia 2.591
SA - Sud America 315
AF - Africa 90
OC - Oceania 4
Continente sconosciuto - Info sul continente non disponibili 2
Totale 19.657
Nazione #
US - Stati Uniti d'America 7.852
DE - Germania 2.704
IT - Italia 1.880
GB - Regno Unito 1.263
FR - Francia 1.233
CN - Cina 929
SG - Singapore 896
UA - Ucraina 419
BR - Brasile 269
KR - Corea 257
IE - Irlanda 198
TR - Turchia 197
SE - Svezia 188
CH - Svizzera 143
NL - Olanda 142
RU - Federazione Russa 139
FI - Finlandia 113
HK - Hong Kong 91
JO - Giordania 72
CA - Canada 61
EU - Europa 57
SN - Senegal 51
VN - Vietnam 37
AT - Austria 36
BE - Belgio 33
JP - Giappone 27
RO - Romania 25
BG - Bulgaria 22
CZ - Repubblica Ceca 22
ES - Italia 19
AP - ???statistics.table.value.countryCode.AP??? 17
ID - Indonesia 16
IN - India 15
MY - Malesia 15
ZA - Sudafrica 14
EC - Ecuador 13
GR - Grecia 12
MX - Messico 12
IL - Israele 10
IR - Iran 10
BD - Bangladesh 9
AR - Argentina 8
PE - Perù 8
PK - Pakistan 8
AE - Emirati Arabi Uniti 6
KE - Kenya 6
MA - Marocco 6
PL - Polonia 6
TW - Taiwan 6
CL - Cile 5
IQ - Iraq 5
CO - Colombia 4
CY - Cipro 4
LT - Lituania 4
SA - Arabia Saudita 4
AU - Australia 3
DZ - Algeria 3
PY - Paraguay 3
RS - Serbia 3
TH - Thailandia 3
TN - Tunisia 3
UZ - Uzbekistan 3
VE - Venezuela 3
CU - Cuba 2
EG - Egitto 2
HU - Ungheria 2
LB - Libano 2
NO - Norvegia 2
PT - Portogallo 2
UY - Uruguay 2
AZ - Azerbaigian 1
BA - Bosnia-Erzegovina 1
CM - Camerun 1
CR - Costa Rica 1
DO - Repubblica Dominicana 1
GE - Georgia 1
GT - Guatemala 1
HR - Croazia 1
KG - Kirghizistan 1
LV - Lettonia 1
LY - Libia 1
MD - Moldavia 1
MO - Macao, regione amministrativa speciale della Cina 1
MW - Malawi 1
NG - Nigeria 1
NP - Nepal 1
NZ - Nuova Zelanda 1
OM - Oman 1
PH - Filippine 1
PR - Porto Rico 1
ZW - Zimbabwe 1
Totale 19.657
Città #
Ashburn 2.112
Southend 1.121
Seattle 835
Singapore 472
Fairfield 460
Chandler 426
Milan 343
Princeton 330
Woodbridge 232
Beijing 230
Chicago 224
Jacksonville 221
Houston 201
Wilmington 194
Santa Clara 193
Berlin 192
Dublin 191
San Ramon 191
Cambridge 185
Turin 181
Hangzhou 172
Ann Arbor 171
Boardman 151
Bern 133
Torino 124
Izmir 120
Dallas 114
Baltimore 112
Helsinki 100
San Donato Milanese 95
Hong Kong 70
Seoul 68
Brugnera 61
Monopoli 59
Overberg 59
Pennsylvania Furnace 58
Shanghai 55
Buffalo 52
Zaporozhye 51
Zhengzhou 50
Sakarya 49
Hefei 39
New York 37
Rome 37
Herkenbosch 36
Mountain View 34
Brussels 33
Des Moines 33
Los Angeles 33
Redwood City 32
Frankfurt 30
Bologna 28
Orbassano 28
Toronto 27
Loreto 25
San Jose 23
London 22
San Francisco 22
Council Bluffs 21
Frankfurt am Main 20
Sofia 20
Shenzhen 19
Washington 19
San Diego 18
São Paulo 18
Padua 17
Yubileyny 17
Amsterdam 16
Andover 16
Paris 16
Columbus 15
Kwai Chung 15
Munich 15
Putian 15
Florence 14
Jakarta 14
Melun 14
Modena 14
Norwalk 14
The Dalles 14
Atlanta 13
Ho Chi Minh City 13
Miami 13
Ningbo 13
Falls Church 12
Guangzhou 12
Hanoi 12
Falkenstein 11
Istanbul 11
Vienna 11
Athens 10
Fremont 10
Lappeenranta 10
Saint Petersburg 10
Verona 10
Wuhan 10
Augusta 9
Brescia 9
Brasília 8
Curitiba 8
Totale 11.553
Nome #
Force traction microscopy: An inverse problem with pointwise observations. 470
The interplay between stress and growth in solid tumors 440
Approximation of Shallow Water equations by Roe's Riemann solver 436
Mechanics and chemotaxis in the morphogenesis of vascular networks 424
Percolation, morphogenesis, and Burgers dynamics in blood vessels formation 408
A 3D mathematical model for the prediction of mucilage dynamics 403
Inertial effects during the infiltration of an elastic porous medium 390
Mechano-transduction in tumour growth modelling 383
La Matematica della Bicicletta 352
A numerical method for the inverse problem of cell traction in 3D 335
Infiltration through deformable porous media 330
On the closure of mass balance models for tumor growth 320
Exogenous Control of Vascular Network Formation in Vitro: A Mathematical Model 309
Modeling the early stages of vascular network assembly 305
A review of vasculogenesis models 298
Time-dependent traction force microscopy for cancer cells as a measure of invasiveness 298
Modelling the early stages of vascular networks assembly 295
Traction forces of cancer cells 293
Modelling the early stages of vascular network assembly 291
Spiral waves on a contractile tissue 289
Mathematical models for soil consolidation problems: a state of the art report 287
Interaction of two quasi-monochromatic waves in shallow water 281
Mechanical models in tumour growth 281
Modelling tumor progression, heterogenity, and immune competition 277
Parallel Computation for Shallow Water Flow: a Domain Decomposition Approach 274
Cell directional [persistence] and chemotaxis in vascular morphogenesis 267
TRACTION PATTERNS OF TUMOR CELLS 262
An elasto-visco-plastic model of cell aggregates 260
Mathematical and numerical modelling of shallow water flow} 257
A new finite element scheme for the Boussinesq equations 256
La matematica della bicicletta 255
Recent developments and open problems in composites materials manufacturing 253
Modelling industrial processesinvolving infiltration in deformable porous media 251
A Taylor--Galerkin method for simulating nonlinear dispersive water waves 249
Growth of endothelial cell networks and Burgers dynamics 249
Numerical simulation of unsteady flow at Po river delta 247
Growth and dissipation in biological tissues 246
Cellular traction as an inverse problem 245
The insight of mixtures theory for growth and remodeling 242
Modelling matrix injection through elasticporous preforms 241
Stress and growth in soft biological tissues 230
Stabilization of the inverted pendulum on a skate 230
Computational Fluid Dynamics at CRS4 229
Full potential and Eulersolutions for transonic unsteady flow 226
Modelling injection moulding processes with deformable porous preforms 221
STRETCH ACTIVATED CURRENT AND THE ELECTROMECHANICALCOUPLING IN THE HEART 220
Cell Adhesion Mechanisms and Stress Relaxation in the Mechanics of Tumours 216
Mechanical aspects of growth in soft tissues 214
A 2D numerical simulation of the Po river delta flow 211
Stress--modulated remodelling of a non--homogeneous body 209
On the mechanics of a growing tumor 203
Hamiltonian formulation for surface waves in a layered fluid 203
Stress modulated growth 202
Mesh adaption strategiesfor shallow water flow 199
Comparison among finite element, finite volume and finite difference approximation to shallowwater equations 198
Numerical simulation of the growth ofa multicellular spheroid 196
Mathematical Modelling of a Solid--Liquid Mixture with Mass Exchange Between Constituents 186
The role of stress in the growth of amulticell spheroid 183
Mesh adaption strategies for steadyshallow water flow 170
Numerical solutions of shallow waterequations 165
Equilibrium of Two Rods in Contact Under Pressure 162
Tumours as elasto-visco-plastic growing bodies 157
Solid Tumors Are Poroelastic Solids with a Chemo-mechanical Feedback on Growth 143
The mathematics of mechanobiology 132
ELEMENTARY MECHANICS OF THE MITRAL VALVE 122
The shape of the mitral annulus: A hypothesis of mechanical morphogenesis 119
Active stress as a local regulator of global size in morphogenesis 116
Hyperelastic Models for Contractile Tissues 115
Strain energy storage and dissipation rate in active cell mechanics 105
Growth and remodelling of living tissues: Perspectives, challenges and opportunities 103
Reconstruction of the local contractility of the cardiac muscle from deficient apparent kinematics 102
A computational framework for the personalized clinical treatment of glioblastoma multiforme 100
Plasticity in passive cell mechanics 100
A multiscale modeling approach to transport of nano-constructs in biological tissues 98
Mechano-biological model of glioblastoma cells in response to osmotic stress 91
Activation of a muscle as a mapping of stress–strain curves 86
Trends in biomedical engineering: focus on Patient Specific Modeling and Life Support Systems 83
Mechanics and polarity in cell motility 80
Finite element simulations of the active stress in the imaginal disc of the Drosophila Melanogaster 79
The role of the microvascular tortuosity in tumor transport phenomena 77
Mechanobiology and morphogenesis in living matter: a survey 77
Active Stress as a Local Regulator of Global Size in Morphogenesis 76
Mathematical framework for traction force microscopy 75
Biomechanical modelling in nanomedicine: multiscale approaches and future challenges 74
An orthotropic active–strain model for the myocardium mechanics and its numerical approximation 73
Theory and application of arterial tissue in-host remodelling 72
Bifurcation analysis of pressure-induced detachment of a rod adhered to a plate 71
Activation Models for the Numerical Simulation of Cardiac Electromechanical Interactions 71
Configurational forces for growth and shape regulations in morphogenesis 70
Active Stress vs. Active Strain in Mechanobiology: Constitutive Issues 65
Active contraction of the cardiac ventricle and distortion of the microstructural architecture 63
Multiscale homogenization for fluid and drug transport in vascularized malignant tissues 63
Mass transport in morphogenetic processes: a second gradient theory for volumetric growth and material remodeling 61
Electromechanical Coupling in Cardiac Dynamics: The Active Strain Approach 61
A homoclinic solution for excitation waves on a contractile substratum 55
Non-normal stability analysis of a shear current under surface gravity waves 55
Effective governing equations for poroelastic growing media 53
Perspectives on biological growth and remodeling 48
Force transmission in migrating cells 46
Numerical Approximation of the Transonic Flow over a Pitching Airfoil 39
Totale 19.798
Categoria #
all - tutte 56.623
article - articoli 46.294
book - libri 0
conference - conferenze 6.690
curatela - curatele 428
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 3.211
Totale 113.246


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2020/2021804 0 0 0 118 32 122 69 78 78 174 97 36
2021/2022793 55 45 17 33 41 64 24 28 24 52 111 299
2022/20231.665 159 283 18 103 159 234 113 98 236 15 78 169
2023/2024421 18 22 17 42 54 58 22 21 21 19 48 79
2024/20252.035 28 368 115 163 192 135 58 186 299 113 144 234
2025/20261.213 360 304 400 149 0 0 0 0 0 0 0 0
Totale 19.798