Mohammadhossein Ebrahimi
Overview
Explore the profile of Mohammadhossein Ebrahimi including associated specialties, affiliations and a list of published articles.
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15
Citations
93
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Recent Articles
1.
Jahangir S, Esrafilian A, Ebrahimi M, Stenroth L, Alkjaer T, Henriksen M, et al.
J Biomech
. 2023 Oct;
160:111800.
PMID: 37797566
Fibril-reinforced poroviscoelastic material models are considered state-of-the-art in modeling articular cartilage biomechanics. Yet, cartilage material parameters are often based on bovine tissue properties in computational knee joint models, although bovine...
2.
Kuan Moo E, Ebrahimi M, Hrynevich A, de Ruijter M, Castilho M, Malda J, et al.
J Mech Behav Biomed Mater
. 2023 Jun;
143:105941.
PMID: 37285774
Fluid pressure develops transiently within mechanically-loaded, cell-embedding hydrogels, but its magnitude depends on the intrinsic material properties of the hydrogel and cannot be easily altered. The recently developed melt-electrowriting (MEW)...
3.
Pala S, Hanninen N, Mohammadi A, Ebrahimi M, Moller N, Brommer H, et al.
J Orthop Res
. 2023 May;
41(12):2657-2666.
PMID: 37203565
The aim of this study is to assess whether articular cartilage changes in an equine model of post-traumatic osteoarthritis (PTOA), induced by surgical creation of standard (blunt) grooves, and very...
4.
Ebrahimi M, Turkiewicz A, Finnila M, Saarakkala S, Englund M, Korhonen R, et al.
J Biomech
. 2022 Nov;
145:111390.
PMID: 36442429
The relationships between structure and function in human knee femoral cartilage are not well-known at different stages of osteoarthritis. Thus, our aim was to characterize the depth-dependent composition and structure...
5.
Kuan Moo E, Ebrahimi M, Sibole S, Tanska P, Korhonen R
Acta Biomater
. 2022 Sep;
153:178-189.
PMID: 36113721
The function of articular cartilage as a load-bearing connective tissue is derived primarily from a balanced interaction between the swelling proteoglycan (PG) matrix and tension-resistant collagen fibrous network. Such balance...
6.
Mohammadi A, Moller N, Ebrahimi M, Plomp S, Brommer H, van Weeren P, et al.
Ann Biomed Eng
. 2022 Jun;
50(12):1787-1797.
PMID: 35754073
In this study, we mapped and quantified changes of proteoglycan (PG) content and biomechanical properties in articular cartilage in which either blunt or sharp grooves had been made, both close...
7.
Honkanen M, Mohammadi A, Moller N, Ebrahimi M, Xu W, Plomp S, et al.
Equine Vet J
. 2022 Mar;
55(2):315-324.
PMID: 35353399
Background: Post-traumatic osteoarthritis is a frequent joint disease in the horse. Currently, equine medicine lacks effective methods to diagnose the severity of chondral defects after an injury. Objectives: To investigate...
8.
Ebrahimi M, Ojanen S, Mohammadi A, Finnila M, Joukainen A, Kroger H, et al.
Ann Biomed Eng
. 2021 Oct;
49(12):3212.
PMID: 34617124
No abstract available.
9.
Linus A, Ebrahimi M, Turunen M, Saarakkala S, Joukainen A, Kroger H, et al.
Acta Biomater
. 2021 Aug;
134:252-260.
PMID: 34365039
The lateral resolution of infrared spectroscopy has been inadequate for accurate biochemical characterization of the cell microenvironment, a region regulating biochemical and biomechanical signals to cells. In this study, we...
10.
Ebrahimi M, Finnila M, Turkiewicz A, Englund M, Saarakkala S, Korhonen R, et al.
Ann Biomed Eng
. 2021 Aug;
49(9):2622-2634.
PMID: 34341898
Osteoarthritis (OA) degrades articular cartilage and weakens its function. Modern fibril-reinforced poroelastic (FRPE) computational models can distinguish the mechanical properties of main cartilage constituents, namely collagen, proteoglycans, and fluid, thus,...