Michel Rochette
Overview
Explore the profile of Michel Rochette including associated specialties, affiliations and a list of published articles.
Author names and details appear as published. Due to indexing inconsistencies, multiple individuals may share a name, and a single author may have variations. MedLuna displays this data as publicly available, without modification or verification
Snapshot
Snapshot
Articles
24
Citations
120
Followers
0
Related Specialties
Related Specialties
Top 10 Co-Authors
Top 10 Co-Authors
Published In
Published In
Affiliations
Affiliations
Soon will be listed here.
Recent Articles
1.
Fluid-structure-growth modeling in ascending aortic aneurysm: capability to reproduce a patient case
Yan K, Ye W, Martinez A, Geronzi L, Escrig P, Tomasi J, et al.
Biomech Model Mechanobiol
. 2025 Jan;
PMID: 39760773
Predicting the evolution of ascending aortic aneurysm (AscAA) growth is a challenge, complicated by the intricate interplay of aortic geometry, tissue behavior, and blood flow dynamics. We investigate a flow-structural...
2.
Taylor D, Saxton H, Halliday I, Newman T, Feher J, Gosling R, et al.
Comput Biol Med
. 2024 Mar;
173:108299.
PMID: 38537564
Background: Myocardial ischaemia results from insufficient coronary blood flow. Computed virtual fractional flow reserve (vFFR) allows quantification of proportional flow loss without the need for invasive pressure-wire testing. In the...
3.
Manche M, El Houari K, Kachenoura A, Albera L, Rochette M, Hernandez A, et al.
Comput Biol Med
. 2023 Nov;
167:107698.
PMID: 37956624
The resolution of the inverse problem of electrocardiography represents a major interest in the diagnosis and catheter-based therapy of cardiac arrhythmia. In this context, the ability to simulate several cardiac...
4.
Martinez A, Hoeijmakers M, Geronzi L, Morgenthaler V, Tomasi J, Rochette M, et al.
Comput Biol Med
. 2023 Nov;
167:107603.
PMID: 37922602
Ascending aorta simulations provide insight into patient-specific hemodynamic conditions. Numerous studies have assessed fluid biomarkers which show a potential to aid clinicians in the diagnosis process. Unfortunately, there exists a...
5.
Geronzi L, Bel-Brunon A, Martinez A, Rochette M, Sensale M, Bouchot O, et al.
IEEE Trans Biomed Eng
. 2023 Jun;
70(11):3248-3259.
PMID: 37390004
Objective: We propose a procedure for calibrating 4 parameters governing the mechanical boundary conditions (BCs) of a thoracic aorta (TA) model derived from one patient with ascending aortic aneurysm. The...
6.
Geronzi L, Martinez A, Rochette M, Yan K, Bel-Brunon A, Haigron P, et al.
Comput Biol Med
. 2023 Jun;
162:107052.
PMID: 37263151
Objective: ascending aortic aneurysm growth prediction is still challenging in clinics. In this study, we evaluate and compare the ability of local and global shape features to predict the ascending...
7.
Taylor D, Feher J, Czechowicz K, Halliday I, Hose D, Gosling R, et al.
Eur Heart J Digit Health
. 2023 Mar;
4(2):81-89.
PMID: 36974271
Aims: Ischaemic heart disease results from insufficient coronary blood flow. Direct measurement of absolute flow (mL/min) is feasible, but has not entered routine clinical practice in most catheterization laboratories. Interventional...
8.
Geronzi L, Haigron P, Martinez A, Yan K, Rochette M, Bel-Brunon A, et al.
Front Physiol
. 2023 Mar;
14:1125931.
PMID: 36950300
The current guidelines for the ascending aortic aneurysm (AsAA) treatment recommend surgery mainly according to the maximum diameter assessment. This criterion has already proven to be often inefficient in identifying...
9.
Rigoard P, Moens M, Goudman L, Le Tutour T, Rochette M, Dany J, et al.
J Clin Med
. 2023 Mar;
12(5).
PMID: 36902533
Spinal cord (SC) anatomy is often assimilated to a morphologically encapsulated neural entity, but its functional anatomy remains only partially understood. We hypothesized that it could be possible to re-explore...
10.
Marin-Castrillon D, Geronzi L, Boucher A, Lin S, Morgant M, Cochet A, et al.
MAGMA
. 2023 Feb;
36(5):687-700.
PMID: 36800143
Objective: In the management of the aortic aneurysm, 4D flow magnetic resonance Imaging provides valuable information for the computation of new biomarkers using computational fluid dynamics (CFD). However, accurate segmentation...