Samuil Ivanovsky
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Also affiliated: United States Food and Drug Administration (2014); Emory University (2014)
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Samuil Ivanovsky's research investigates molecular and genetic mechanisms underlying disease, with a particular focus on autism spectrum disorder and neurological conditions. His work has explored oxidative DNA damage and altered DNA methylation in the cerebellum of mouse models of autism, comparing these findings to human post-mortem samples. Ivanovsky has also conducted studies on histone modifications and gene expression in the mouse cerebellum. His research interests extend to cardiovascular diagnostics, with publications detailing the development of tissue-mimicking human torso phantoms for pressure diagnostics using additive manufacturing. Additionally, he has investigated outcomes of atrial fibrillation in patients with multiple myeloma undergoing chemotherapy and autologous stem cell transplant.
Metrics
- h-index: 1
- Publications: 4
- Citations: 87
Selected Publications
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Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing (2026)
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Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing (2026)
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TO STUDY THE OUTCOMES OF ATRIAL FIBRILLATION IN THE PATIENTS WITH MULTIPLE MYELOMA AFTER CHEMOTHERAPY AND AUTOLOGOUS STEM CELL TRANSPLANT AT THE MYELOMA CENTER, UNIVERSITY OF ARKANSAS FOR MEDICAL SCIENCES (UAMS), LITTLE ROCK, AR (2023)
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Cerebellar Oxidative DNA Damage and Altered DNA Methylation in the BTBR T+tf/J Mouse Model of Autism and Similarities with Human Post Mortem Cerebellum (2014)
Collaboration Network
Top Collaborators
- Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing
- Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing
- Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing
- Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing
- Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing
- Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing
- Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing
- Development of a Tissue-Mimicking Human Torso Phantom for Cardiovascular Pressure Diagnostics with the Aid of Additive Manufacturing
- Cerebellar Oxidative DNA Damage and Altered DNA Methylation in the BTBR T+tf/J Mouse Model of Autism and Similarities with Human Post Mortem Cerebellum
- Cerebellar Oxidative DNA Damage and Altered DNA Methylation in the BTBR T+tf/J Mouse Model of Autism and Similarities with Human Post Mortem Cerebellum
- Cerebellar Oxidative DNA Damage and Altered DNA Methylation in the BTBR T+tf/J Mouse Model of Autism and Similarities with Human Post Mortem Cerebellum
- Cerebellar Oxidative DNA Damage and Altered DNA Methylation in the BTBR T+tf/J Mouse Model of Autism and Similarities with Human Post Mortem Cerebellum
- Cerebellar Oxidative DNA Damage and Altered DNA Methylation in the BTBR T+tf/J Mouse Model of Autism and Similarities with Human Post Mortem Cerebellum
- Cerebellar Oxidative DNA Damage and Altered DNA Methylation in the BTBR T+tf/J Mouse Model of Autism and Similarities with Human Post Mortem Cerebellum
- Cerebellar Oxidative DNA Damage and Altered DNA Methylation in the BTBR T+tf/J Mouse Model of Autism and Similarities with Human Post Mortem Cerebellum
- TO STUDY THE OUTCOMES OF ATRIAL FIBRILLATION IN THE PATIENTS WITH MULTIPLE MYELOMA AFTER CHEMOTHERAPY AND AUTOLOGOUS STEM CELL TRANSPLANT AT THE MYELOMA CENTER, UNIVERSITY OF ARKANSAS FOR MEDICAL SCIENCES (UAMS), LITTLE ROCK, AR
- TO STUDY THE OUTCOMES OF ATRIAL FIBRILLATION IN THE PATIENTS WITH MULTIPLE MYELOMA AFTER CHEMOTHERAPY AND AUTOLOGOUS STEM CELL TRANSPLANT AT THE MYELOMA CENTER, UNIVERSITY OF ARKANSAS FOR MEDICAL SCIENCES (UAMS), LITTLE ROCK, AR
- TO STUDY THE OUTCOMES OF ATRIAL FIBRILLATION IN THE PATIENTS WITH MULTIPLE MYELOMA AFTER CHEMOTHERAPY AND AUTOLOGOUS STEM CELL TRANSPLANT AT THE MYELOMA CENTER, UNIVERSITY OF ARKANSAS FOR MEDICAL SCIENCES (UAMS), LITTLE ROCK, AR
- TO STUDY THE OUTCOMES OF ATRIAL FIBRILLATION IN THE PATIENTS WITH MULTIPLE MYELOMA AFTER CHEMOTHERAPY AND AUTOLOGOUS STEM CELL TRANSPLANT AT THE MYELOMA CENTER, UNIVERSITY OF ARKANSAS FOR MEDICAL SCIENCES (UAMS), LITTLE ROCK, AR
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