TALK KEYWORD INDEX
This page contains an index consisting of author-provided keywords.
1 | |
1) Talus | |
1D blood flow model | |
2 | |
2) Tibio-Fibula-Talar Joint | |
3 | |
3) Sub-talar Joint | |
3D Agent Based Model | |
3D cell migration | |
3D Computational Fluid Dynamics | |
3D mesoscopic imaging | |
3D porous scaffolds | |
3D printing | |
3D reconstruction | |
3D scaffold | |
3D-printed Titanium Scaffold | |
4 | |
4) Third Foot Rocker | |
4-point bending test | |
4D Flow MRI | |
5 | |
5) Universal Transducer | |
6 | |
6 DOF arthrometer | |
6) Characterize | |
7 | |
7) Prototype Prosthetic Talus Bone | |
A | |
abm | |
absolute risk of fracture | |
accuracy | |
Acetabulum | |
Acetaminophen | |
acoustic radiation force | |
acquired resistance | |
Actin | |
adaptation | |
Adolescent Idiopathic Scoliosis - AIS | |
AF | |
agent-based | |
Agent-based model | |
Agent-based modelling | |
agreement | |
aliasing | |
alignment interactions | |
Amputee | |
Amyloid beta | |
Anatomical Atlas | |
Androgen Deprivation Therapy | |
Angiogenesis | |
ANP | |
Anterograde reamed nail | |
anti-arrhythmia | |
AnyBody | |
Aorta | |
Aortic Arch | |
Aortic dissection | |
Aortic Stenosis | |
Aortic Valve | |
Apex Vertebra Transpositions | |
applicability | |
Arrhythmogenesis | |
Arterial wall | |
artificial heart | |
ASTM-F382-14 | |
atherosclerosis | |
Atrial Arrhythmia | |
atrial electrophysiology | |
Atrial fibrillation | |
atrial flutter | |
Augmented Reality | |
automatization | |
Autoregulation | |
AV-fistula | |
AVVR | |
Axon | |
Axonal Strain | |
Axonal transport | |
B | |
balloon angioplasty | |
Basket catheters | |
Bayesian Filtering | |
Bayesian inverse problems | |
Bayesian optimization | |
Beat-to-beat repolarization variability | |
Beta-adrenergic stimulation | |
bevacizumab | |
Binding affinity | |
Bioabsotbable vascular scaffolds | |
biochemical signaling | |
biodegradation | |
Bioinformatics | |
biomarker | |
biomarkers | |
Biomechanical Analysis | |
Biomechanical behaviour of tumour bone | |
Biomechanical Properties | |
Biomechanics | |
biomedical image | |
biomolecular markers | |
Biophysical model | |
biophysical modeling | |
biophysical simulations | |
bioreactor | |
bioresorbable | |
blood | |
blood clot | |
Blood clotting | |
Blood flow | |
Blood flow modeling | |
BMP | |
body surface potential mapping | |
Body-composition model | |
Bodylogical | |
Bone | |
Bone architecture | |
bone regeneration | |
bone remodelling | |
boundary condition | |
Braak Model | |
Brain Deformation | |
breast cancer | |
burn injuries | |
C | |
Cadaver | |
Cadaver experiments | |
calcium | |
Cancer signalling | |
cardiac electromechanics | |
Cardiac electrophysiology | |
Cardiac Imaging | |
cardiac magnetic resonance imaging | |
Cardiac modelling | |
cardiac stress test | |
cardiovascular | |
cardiovascular biomechanics | |
Cardiovascular diseases | |
Cardiovascular Modelling | |
Cardiovascular Monitoring | |
Cardiovascular patch reconstruction | |
cardiovascular systems | |
Cartesian grid Finite Element Method | |
cartilage | |
Cartilage Endplate effects | |
Cartilage endplates permeability | |
Cataract surgery | |
Cell deformation | |
Cell mechanics | |
Cell migration | |
cell resolved blood flow modelling | |
cell shape | |
CellML | |
cellular automata | |
Cellular flow | |
Cement Injection | |
cerebral aneurysm | |
cerebral blood flow | |
CFD | |
Chemical diffusion | |
Chemo-mechano-biological modelling | |
CHIC | |
Childbirth Simulations | |
Chondrocyte | |
chondrocytes | |
Chronic infection | |
Circulatory system | |
clinical decision support | |
clinical trial | |
clot | |
cloud | |
Cloud platforms | |
CMF plate | |
coagulation | |
Coarctation of the Aorta | |
collagen | |
Collagen Scaffold | |
collective cell migration | |
Composite clavicle | |
Computational Cardiology | |
Computational Fluid Dynamic | |
computational fluid dynamics | |
Computational fluid-dynamics | |
computational hemodynamics | |
Computational Human Body Model | |
computational medicine | |
Computational methods | |
Computational model | |
Computational model validation | |
Computational modeling | |
Computational modelling | |
Computational Models | |
Computational Simulation | |
computational solid mechanics | |
Computational surgery | |
Computer modellling | |
computer models | |
Computer simulation | |
Computer Vision | |
Computer-aided Tissue Engineering | |
Confined cell migration | |
Congenital Heart defects | |
Congenital Heart Disease | |
Connectome | |
Constrained mixture theory | |
continuum damage mechanics | |
Continuum mechanics | |
continuum model | |
continuum-mechanics | |
contractility | |
Contracting Ventricle | |
Control theory | |
Convection-diffusion-reaction equations | |
coronary artery | |
coronary artery disease | |
Coronary stenting | |
Coronary vessel stenosis | |
Cortical Thickness Estimation | |
Coupled model | |
Coupling | |
Crack Propagation | |
Cranio-maxillofacial | |
credibility | |
Credibility of modeling and simulation | |
critical size defects | |
crosstalk | |
Current | |
Customized parametric design | |
D | |
Data assimilation | |
Decision Support System | |
Deformable Models | |
Deformetrica | |
dental applications | |
DES | |
design | |
Diabetic | |
Diabetic retinopathy | |
Diagnosis | |
diagnostic models | |
Diet | |
Differentiation | |
digital image correlation | |
Dissolution | |
Distributed data access | |
DNA damage | |
Dobutamine | |
Drug delivery systems | |
drug- induced QT prolongation | |
Drug-eluting stent | |
DXA imaging | |
dynamic meshes | |
Dynamic modelling | |
Dynamic Networks | |
Dynamical Systems | |
E | |
e-Health | |
ECG analysis | |
effect-site | |
elastic wave propagation | |
electrical activation sequence | |
Electrical propagation | |
Electro-mechanical | |
Electro-Mechanical cardiac models | |
electro-physiology | |
electro-quasistatic formulation | |
Electro-stimulating implants | |
Electroanatomical mapping | |
electrocardiogram | |
Electrocardiographic | |
electroceuticals | |
electromagnetic stimulation | |
electromechanics | |
Electrophysiological simulations | |
Electrophysiology | |
Electroporation | |
EMG | |
enddiastolic pressure volume relation | |
Endothelial cells | |
endothelium response | |
Energy expenditure | |
Energy intake | |
Ensemble simulation | |
Epithelial transport | |
exploratory study | |
F | |
FAIR | |
FE modelling | |
FEHM | |
FEM | |
femoral artery | |
Femoral fracture | |
femur strength | |
Fibrillatory patterns | |
Fibrosis | |
Finite element | |
Finite element analysis | |
finite element method | |
finite element methods | |
Finite element simulation | |
Finite Elements | |
Finite elements modelling | |
Finite volume method | |
Finite-element Analysis | |
flow resistance | |
fluid administration | |
fluid dynamics | |
Fluid structure interaction simulation | |
Fluid-structure interaction | |
Fluid-structure model | |
forward simulations | |
forward uncertainty propagation | |
fractal tree | |
Fractional Flow Reserve | |
Fractional modeling | |
Fracture classification | |
free software | |
FSI | |
Full-blown 3D approach | |
Fully coupled model | |
functional | |
Functional hyperemia | |
functional spinal units | |
functionalized anatomical models | |
FXR | |
G | |
Gait analysis | |
Gap analysis | |
Gene Regulation Network | |
Genetic Algorithm | |
Genomic | |
genomics | |
Glucose Uptake | |
Glycomics | |
growth and remodelling | |
growth factors | |
H | |
HBV | |
Heart | |
Heart failure | |
Heart function | |
heart modelling | |
heart rate | |
Heart Valve | |
Helmet testing | |
Hemodynamic | |
hemodynamic stimuli | |
Hemodynamics | |
Hemostasis | |
Hepatocyte | |
hernia | |
High detailed heart geometries | |
high performance computing | |
high-impact exercise | |
hip fracture | |
Hip fracture risk | |
hip fracture risk assessment | |
Homogenisation | |
HPC | |
hPDC | |
HR-pQCT | |
Human atria | |
Human body model | |
human liver resection | |
human mesenchymal stem cell | |
Human ventricular cell models | |
hydroxyapatite | |
hyper-parameter optimization | |
Hyper-reduction | |
hypermodel | |
hypermodels | |
hypertension | |
I | |
Image Analysis | |
image segmentation | |
Image-based FE analysis | |
Image-based in vitro analysis | |
image-based in-vitro analysis | |
Image-based method | |
imaging | |
Immunology | |
Implant stability | |
in silico | |
in silico clinical trial | |
In Silico Clinical Trials | |
In Silico Drug Trials | |
in silico medicine | |
in silico modeling | |
In Silico Models | |
in silico oncology | |
in silico trial | |
in silico workflow | |
in vitro | |
in vitro validation | |
in-silico | |
In-silico device testing | |
In-silico model | |
In-stent restenosis | |
in-vitro | |
indirect mechanotransduction | |
Inference | |
Infertile patients | |
Inflammation | |
Intensive Care Units | |
Intervertebral Disc | |
Intervertebral disc degeneration | |
Intracranial aneurysms | |
Intramedullary nail | |
Intraocular lens | |
inverse problems | |
Ischemia | |
J | |
Joint force | |
Joint Kinematics | |
joint reactions | |
Juvenile Idiopathic Arthritis (JIA) | |
K | |
Kalman filter | |
kinematics | |
Knee | |
Knee model | |
L | |
Lagrangian flow simulations | |
laser induced fluorescence | |
lattice Boltzmann method | |
lattice gases | |
Lattice_Boltzmann based method | |
LDL | |
Left Atrium | |
Left Ventricle | |
Left ventricular function | |
Ligament properties | |
ligament strains | |
Limb development | |
Liver Failure | |
liver regeneration | |
Locally Linear Embedding | |
Low-frequency oscillations | |
lumped parameter model | |
Lung FE Model | |
M | |
Machine Learning | |
Magnetic Resonance Imaging | |
Malignant melanoma | |
mandibular reconstruction | |
MAPK | |
material | |
Material properties | |
mathematical model | |
mathematical modeling | |
Mathematical modelling | |
Mechanical lung characterization | |
Mechanical properties | |
Mechanical Stretch | |
mechanobiology | |
mechanosensitivity | |
Mechanotransduction | |
medical data storage | |
medical devices | |
Medical imaging | |
meniscus | |
mesh generation | |
meshless | |
MI morphology | |
Microaneurysm | |
Microfluidics | |
Micromorphology | |
Mitral Valve | |
Mock Circulatory Loop | |
mock loop | |
model | |
Model annotation | |
model calibration | |
Model order reduction | |
Model Order Reduction Methods | |
Model reduction | |
model simplification | |
model validation | |
modeling | |
modeling platform | |
Modelling | |
Modelling environment | |
Modelling standards | |
morphine | |
Morphing | |
Morphing Algorithms | |
Morphological Analysis | |
Morphology | |
mRNA expression | |
Multi-physic and multiscale model | |
multi-scale | |
multi-step optimisation approach | |
multifactorial interventions | |
Multiphysic modelling | |
Multiphysics | |
Multiphysics Modeling | |
multiphysics simulation | |
Multiple Organ Dysfunction | |
Multiscale | |
multiscale cancer modelling | |
multiscale modeling | |
Multiscale modelling | |
multiscale multiphysics modeling | |
Multiscale Simulation | |
multiscale time | |
Muscles | |
musculoskeletal | |
Musculoskeletal Disorders | |
Musculoskeletal model | |
Musculoskeletal modelling | |
musculoskeletal system | |
myocardial infarction | |
Myocardial ischemia | |
myocardial stiffness | |
myocardium | |
Myofibers | |
Myosin | |
N | |
N-acetylcysteine | |
Nanoscale | |
nasal airflow | |
nearside crash | |
Neck and Low Back Pain | |
neo-intimal coverage | |
neotissue growth | |
Neural networks | |
Neuroblastoma | |
Neurodegeneration | |
neurodegenerative diseases | |
neuromodulation | |
Neuronal networks | |
neuroprosthetics | |
Neurostimulation | |
Non-invasive 3D Diagnosis | |
Non-invasive markers | |
Non-linearly elastic | |
Nucleus mechanical properties | |
Nucleus Pulposus cells | |
null space | |
Numerical modeling | |
Numerical models | |
numerical simulation | |
O | |
OCT | |
Oesophageal atresia | |
Oncosimulator | |
One-dimensional haemodynamic models | |
one-dimensional modelling | |
online platform | |
OpenCOR | |
OpenFoam | |
optical coherence tomography | |
Optimization | |
Optimizing | |
Orthopaedics | |
Orthopedic implants | |
Osteoblast | |
Osteocyte | |
osteoporosis | |
osteoporotic hip fractures | |
Osteosynthesis | |
outlet boundary conditions | |
P | |
p53 signalling | |
Paediatrics | |
parameter estimation | |
Parameter identification | |
parametric human project | |
Parametric model | |
Parametric Models | |
Parkinson's disease | |
Patient avatars | |
patient personalization | |
patient specific | |
Patient Stratification | |
Patient-specific | |
Patient-specific 3D models | |
patient-specific finite element | |
patient-specific heart simulation | |
patient-specific model | |
Patient-specific modeling | |
Patient-specific modelling | |
Patient-Specific models | |
Pedicle Screws | |
Pelvic injury | |
Percutaneous Pulmonary Valve Implantation | |
perfusion bioreactor | |
persistent motion | |
Personalised Decision Support | |
Personalised medicine | |
personalized medicine | |
Personalized models | |
personalized pharmacodynamic models | |
personalized simulations | |
phantom-less calibration | |
pharmaceutical | |
pharmaceuticals | |
phase maps | |
phase phane analysis | |
phase-contrast MRI | |
physical activity | |
Physiological simulation | |
Physiome | |
Physiome journal | |
Physiome Model Repository | |
Physiome Modelling Repository | |
pk/pd | |
plaque | |
plaque progression | |
Platelet activation | |
platelet-binding model | |
PMHS | |
polycaprolactone | |
Population-specific modelling | |
Populations of models | |
poroelastic | |
Poroelastic material | |
Poroelastic materials | |
Porous media | |
postmenopausal women | |
Potential | |
Pre surgical planning | |
Pre-surgical planning | |
precision medicine | |
predictive modeling | |
Predictive modelling | |
Pregnancy | |
Pressure recovery | |
pressure-volume loops | |
Primary stability | |
Principal Component Analysis | |
Proarrhytmic Risk | |
Prognostic model | |
Proper Generalized Decomposition | |
prostate cancer | |
Protein aggregation | |
proteomics | |
Pubovisceralis Muscle | |
Pulmonary Regurgitation | |
Pulmonary Valve | |
Pulsatile mock circulatory loop | |
PV loops | |
python | |
R | |
Radiotherapy | |
RAF heterodimerization | |
RAF kinase | |
Re-entry | |
reduced basis methods | |
reduced order model | |
reduced order modelling | |
redundancy | |
Refractive error | |
regenerative medicine | |
regulation | |
regulatory-grade evidence | |
Regurgitation | |
Rehabilitation | |
Renal denervation | |
repair | |
reproducibility | |
Reproducibility and Reliability | |
Reproducible science | |
respiration | |
Retina | |
reversal-agents | |
Reverse engineering | |
rheology | |
rib cage | |
Right Ventricle | |
Right Ventricular Outflow Tract | |
ROM error surrogates | |
Rotor detection | |
Rotors | |
Rubric for assessment | |
Rule Based Method | |
rupture criteria | |
S | |
Sacral Region Stiffness | |
Sacrum | |
safety pharmacology | |
scaffold | |
Scaffold Design | |
scaling law | |
Scapula Modelling | |
screw | |
security | |
SED-ML | |
segmentation method | |
Self-expanding Colonic stent | |
self-similar nature | |
sensitivity analysis | |
Sepsis | |
Sequential estimation | |
Shape Models | |
Shape optimization | |
Shear stress | |
Signalling Network | |
Signalling pathways | |
SIMon | |
Simplified Advective Work-energy relative pressure | |
Simscape | |
simulation | |
simulation environment | |
Simulink | |
single-ventricle physiology | |
skeletal muscle | |
skeletal muscle mechanics | |
Skeletal muscle modelling | |
sled testing | |
Small Intestine | |
smooth muscle cells | |
soft tissue | |
software | |
solid mechanics | |
solid stress | |
SPARC initiative | |
Specific-binding | |
specification | |
SPH | |
Spine | |
Statistical Shape Analysis | |
statistical shape model | |
Statistical Shape Models | |
stem cell niche | |
Stenosis | |
Stenotic valve pressure gradient | |
stent | |
stent deployment | |
Stent design parameters | |
stent-retriever | |
steps | |
stochastic processes | |
strain-stretch curve | |
Stress Shielding | |
Stretch activated channels | |
Subject-specific | |
surgical decision support | |
Surrogate Modeling | |
suspension physics | |
Sympathetic stimulation | |
systems biology | |
systems medicine | |
T | |
tau-leaping simulation method | |
TAVI | |
tensile testing | |
Tetralogy of Fallot | |
Textural Image | |
Th17 | |
thrombectomy | |
thrombosis | |
thrombus formation | |
Time series analysis | |
tissue engineering | |
Tissue heterogeneity | |
Tissue lengthening | |
tissue regeneration | |
titanium | |
Tolerance development | |
Topological data analysis | |
Total hip arthroplasty | |
total knee arthroplasty | |
toxicity | |
trabecular bone | |
Trabeculations | |
transient elastography | |
Translational medicine | |
transport physics | |
Traumatic Brain Injury (TBI) | |
tumor growth | |
tumour growth | |
Tumour microenvironment | |
Tumour tissue evolution | |
Tumour trabeculae area evolution | |
U | |
Uncertainty | |
Uncertainty quantification | |
Uterine contraction | |
Uterus | |
V | |
validation | |
validation and verification | |
vascular networks | |
vasospasm | |
ventricular afterload | |
Ventricular assist devices (VAD) | |
verification and validation | |
VHM | |
Vibration analysis | |
virtual human modeling | |
virtual treatment planning | |
Von Willebrand factor | |
W | |
Wall Compliance | |
Wall Shear Stress | |
Weaire-Phelan Model | |
Weight change | |
whole-body | |
Workplace intervention | |
wound contraction |