Sepideh Shakeri
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Senior Graduate Assistant
Also affiliated: Mashhad University of Medical Sciences (2011–2023); Ghaem Hospital (2017–2018); Mazandaran University of Medical Sciences (2008)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Sepideh Shakeri's research focuses on the application of advanced imaging techniques and computational methods for the detection and characterization of diseases. Her work has significantly explored the use of magnetic resonance imaging (MRI), particularly multi-parametric MRI (mp-MRI), in the context of prostate cancer. She has investigated deep learning approaches, such as FocalNet, to improve the accuracy of cancer detection and Gleason score prediction from mp-MRI data. Shakeri has also contributed to understanding the prognostic importance of specific genetic mutations, as seen in her work on core binding factor acute myeloid leukemia.
Her research methodology often involves retrospective studies and the development of novel systems for aligning in vivo imaging with ex vivo histopathology. Collaborators on her projects at the University of Arkansas at Fayetteville include Tyrone A. Washington, Eleanor R. Schrems, Ana Regina Cabrera, and Izzeldin Ahmed. Shakeri's scholarship metrics include an h-index of 17, with 69 total publications and over 1,000 citations.
Metrics
- h-index: 8
- Publications: 32
- Citations: 351
Positions
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Senior Graduate Assistant publications 2026University of Arkansas at Fayetteville Institution web page
Selected Publications
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Combined High-Intensity Exercise and Autologous Muscle Grafting Differentially Modulate Myogenesis and Extracellular Matrix Remodeling by Sex in VML-Injured Muscle (2026)
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Exercise Intensities Modulates Inflammatory Gene Expression to Minced Muscle Repair Following Volumetric Muscle Loss (2026)
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Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle (2025)
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Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females (2025)
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The Effect of Leucine Supplementation on Inflammatory and Myogenic Genes at the Onset of Skeletal Muscle Regeneration in Aged Male Mice (2025)
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The effect of leucine supplementation on extracellular matrix remodeling in aged male mice at the onset of muscle regeneration (2025)
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Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice (2025)
Collaboration Network
Top Collaborators
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- The effect of leucine supplementation on extracellular matrix remodeling in aged male mice at the onset of muscle regeneration
- The Effect of Leucine Supplementation on Inflammatory and Myogenic Genes at the Onset of Skeletal Muscle Regeneration in Aged Male Mice
- Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- The effect of leucine supplementation on extracellular matrix remodeling in aged male mice at the onset of muscle regeneration
- The Effect of Leucine Supplementation on Inflammatory and Myogenic Genes at the Onset of Skeletal Muscle Regeneration in Aged Male Mice
- Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle
- The effect of leucine supplementation on extracellular matrix remodeling in aged male mice at the onset of muscle regeneration
- The Effect of Leucine Supplementation on Inflammatory and Myogenic Genes at the Onset of Skeletal Muscle Regeneration in Aged Male Mice
- Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- The effect of leucine supplementation on extracellular matrix remodeling in aged male mice at the onset of muscle regeneration
- The Effect of Leucine Supplementation on Inflammatory and Myogenic Genes at the Onset of Skeletal Muscle Regeneration in Aged Male Mice
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
- Global mitophagy inhibition via BNIP3 ablation is not sufficient to alleviate skeletal muscle impairments in male and female tumor-bearing mice
- Promoting mitochondrial fusion is protective against cancer-induced muscle detriments in males and females
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