Yosibash Zohar

Yosibash Zohar

Tel Aviv University

H-index: 37

Asia-Israel

About Yosibash Zohar

Yosibash Zohar, With an exceptional h-index of 37 and a recent h-index of 21 (since 2020), a distinguished researcher at Tel Aviv University, specializes in the field of Biomechanics, high order finite elements, fracture mechanics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Predicting failure initiation at V-notch tips in an AISI 4340 alloy by a continuum damage model

Crack nucleation in heterogeneous bars: h- and p-FEM of a phase field model

The influence of femoral lytic tumors segmentation on autonomous finite element analysis

Multiscale Coupled Models for Complex Media: From Analysis to Simulation in Geophysics and Medicine

On the influence of computed tomography's slice thickness on computer tomography based finite element analyses results

Femurs segmentation by machine learning from CT scans combined with autonomous finite elements in orthopedic and endocrinology applications

Assessment of probability of bone fracture

Mechanical response and fracture of pultruded carbon fiber/epoxy in various modes of loading

Yosibash Zohar Information

University

Position

___

Citations(all)

4854

Citations(since 2020)

1537

Cited By

3929

hIndex(all)

37

hIndex(since 2020)

21

i10Index(all)

95

i10Index(since 2020)

44

Email

University Profile Page

Tel Aviv University

Google Scholar

View Google Scholar Profile

Yosibash Zohar Skills & Research Interests

Biomechanics

high order finite elements

fracture mechanics

Top articles of Yosibash Zohar

Title

Journal

Author(s)

Publication Date

Predicting failure initiation at V-notch tips in an AISI 4340 alloy by a continuum damage model

Engineering Fracture Mechanics

Brigit Mittelman

Nitzan Rom

Zohar Yosibash

Elad Priel

2024/4/12

Crack nucleation in heterogeneous bars: h- and p-FEM of a phase field model

Computational Mechanics

Maxime Levy

Francesco Vicentini

Zohar Yosibash

2024/3/18

The influence of femoral lytic tumors segmentation on autonomous finite element analysis

Clinical Biomechanics

Oren Rachmil

Kent Myers

Omri Merose

Amir Sternheim

Zohar Yosibash

2024/2/2

Multiscale Coupled Models for Complex Media: From Analysis to Simulation in Geophysics and Medicine

Oberwolfach Reports

Malgorzata Peszynska

Iuliu Sorin Pop

Barbara Wohlmuth

Zohar Yosibash

2023/3/10

On the influence of computed tomography's slice thickness on computer tomography based finite element analyses results

Clinical Biomechanics

Leetal Eliyahu

Zohar Yosibash

Irit Avivi

Yael C Cohen

Gal Ariel

...

2023/2/1

Femurs segmentation by machine learning from CT scans combined with autonomous finite elements in orthopedic and endocrinology applications

Computers & Mathematics with Applications

Zohar Yosibash

Yekutiel Katz

Trabelsi Nir

Amir Sternheim

2023/12/15

Assessment of probability of bone fracture

2023/7/27

Mechanical response and fracture of pultruded carbon fiber/epoxy in various modes of loading

Crystals

Arie Bussiba

Ilan Gilad

Snir Lugassi

Sigal David

Jacob Bortman

...

2022/6/16

Can the finite fracture mechanics coupled criterion be applied to V-notch tips of a quasi-brittle steel alloy?

Engineering Fracture Mechanics

Zohar Yosibash

Vered Mendelovich

Ilan Gilad

Arie Bussiba

2022/6/15

Can neck fractures in proximal humeri be predicted by CT-based FEA?

Journal of Biomechanics

Gal Dahan

Ori Safran

Zohar Yosibash

2022/5/1

Towards validation of crack nucleation criteria from V-notches in quasi-brittle metallic alloys: Energetics or strength?

Computer Methods in Applied Mechanics and Engineering

Tianchen Hu

John E Dolbow

Zohar Yosibash

2022/12/1

Predicting fracture in the proximal humerus using phase field models

Journal of the Mechanical Behavior of Biomedical Materials

Lisa Hug

G Dahan

Stefan Kollmannsberger

Ernst Rank

Zohar Yosibash

2022/10/1

Automated bone segmentation in images

2022/9/20

Assessing hip fracture risk in type-2 diabetic patients using CT-based autonomous finite element methods: a feasibility study

The Bone & Joint Journal

Dani Rotman

Gal Ariel

Jorge Rojas Lievano

Haggai Schermann

Nir Trabelsi

...

2021/9/1

Edge stress intensity functions along elliptic and part-elliptic 3D cracks

Engineering Fracture Mechanics

Zohar Yosibash

Yaron Schapira

2021/3/15

Efficient Simulation of Crack Propagation in Complex Geometries using a Phase-Field Model and the Finite Cell Method

L Hug

S Kollmannsberger

J Kirschke

Martin Potten

Georg Stockinger

...

2021

A 3D benchmark problem for crack propagation in brittle fracture

Computer Methods in Applied Mechanics and Engineering

Lisa Hug

Stefan Kollmannsberger

Zohar Yosibash

Ernst Rank

2020/6/1

Asymptotic solution of the elasticity equations in the vicinity of an elliptical crack front

Engineering Fracture Mechanics

Yaron Schapira

Zohar Yosibash

2020/1/1

Hip fracture risk assessment in elderly and diabetic patients: combining autonomous finite element analysis and machine learning

Journal of Bone and Mineral Research

Zohar Yosibash

Nir Trabelsi

Itay Buchnik

Kent W Myers

Moshe Salai

...

2020/12/1

When and where do patients with bone metastases actually break their femurs?: a CT-based finite element analysis

The Bone & Joint Journal

Amir Sternheim

Frank Traub

Nir Trabelsi

Solomon Dadia

Yair Gortzak

...

2020/5/1

See List of Professors in Yosibash Zohar University(Tel Aviv University)