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Jafar Arash Mehr
ResearcherPublications, citations & collaboration network
Jafar Arash Mehr is a researcher indexed in ScholarIQ from OpenAlex & ORCID. ScholarIQ records 11 works, 30 citations, an h-index of 3 and an i10-index of 0.
11
Works
30
Citations
3
h-index
0
i10-index
IDs:OpenAlex
How has Jafar Arash Mehr's publication output changed over time?
ScholarIQpublication output · 2018–2026
Output grew0% over the shown period — from 1 works in 2018 to 1 in 2026.
1
1
1
4
1
1
1
1
20182019202020222023202420252026
What are the most-cited papers on Jafar Arash Mehr?
ScholarIQmost cited works
Modeling and experimental investigation of electromechanical properties of scleral tissue; a CEM model using an anisotropic hyperelastic constitutive relation
Hamed Hatami-Marbini, Jafar Arash Mehr
S11710983. 20229 Citations
Experimental and numerical analysis of electroactive characteristics of scleral tissue
Jafar Arash Mehr, Hamed Hatami-Marbini
S173145877. 20228 Citations
Numerical Investigation on the Role of Mechanical Factors Contributing to Globe Flattening in States of Elevated Intracranial Pressure
Jafar Arash Mehr, Heather E. Moss, Hamed Hatami-Marbini
Life. 20206 CitationsOPEN ACCESS
Regional differences in electroactive response of the sclera
Hamed Hatami-Marbini, Jafar Arash Mehr
Proceedings of the Institution of Mechanical Engineers Part H Journal of Engineering in Medicine. 20243 Citations
Finite Deformation of Scleral Tissue under Electrical Stimulation: An Arbitrary Lagrangian-Eulerian Finite Element Method
Jafar Arash Mehr, Hamed Hatami-Marbini
Bioengineering. 20232 CitationsOPEN ACCESS
Related on ScholarIQ
Northwestern University
Institution
Modeling and experimental investigation of electromechanical properties of scleral tissue; a CEM model using an anisotropic hyperelastic constitutive relation
Paper
Experimental and numerical analysis of electroactive characteristics of scleral tissue
Paper
Numerical Investigation on the Role of Mechanical Factors Contributing to Globe Flattening in States of Elevated Intracranial Pressure
Paper
Regional differences in electroactive response of the sclera
Paper
Finite Deformation of Scleral Tissue under Electrical Stimulation: An Arbitrary Lagrangian-Eulerian Finite Element Method
Paper