Suman Ghorai Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
unknown
Research Areas
Biography and Research Information
OverviewAI-generated summary
Suman Ghorai's research focuses on the toxicological effects of various compounds, particularly in the context of medical imaging agents. A recent publication investigates the optimization of detection methods for gadodiamide brain retention in rats, utilizing quantitative T2 mapping and intraperitoneal administration. This work contributes to understanding the behavior and potential accumulation of contrast media within biological systems. Ghorai's research network includes collaborators from the National Center for Toxicological Research, such as Anil K. Patri, Serguei Liachenko, Arnold Tripp, and Natalya Sadovova, with whom shared publications have been produced. The researcher's work also touches upon mutagenicity tests and cell survival following exposure to specific compounds, including organometallic compounds and oxides.
Metrics
- h-index: 2
- Publications: 3
- Citations: 68
Selected Publications
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Optimization of Detection of Gadodiamide Brain Retention in Rats Using Quantitative <scp>T<sub>2</sub></scp> Mapping and Intraperitoneal Administration (2022)
Collaboration Network
Top Collaborators
- Optimization of Detection of Gadodiamide Brain Retention in Rats Using Quantitative <scp>T<sub>2</sub></scp> Mapping and Intraperitoneal Administration
- Optimization of Detection of Gadodiamide Brain Retention in Rats Using Quantitative <scp>T<sub>2</sub></scp> Mapping and Intraperitoneal Administration
- Optimization of Detection of Gadodiamide Brain Retention in Rats Using Quantitative <scp>T<sub>2</sub></scp> Mapping and Intraperitoneal Administration
- Optimization of Detection of Gadodiamide Brain Retention in Rats Using Quantitative <scp>T<sub>2</sub></scp> Mapping and Intraperitoneal Administration
- Optimization of Detection of Gadodiamide Brain Retention in Rats Using Quantitative <scp>T<sub>2</sub></scp> Mapping and Intraperitoneal Administration
- Optimization of Detection of Gadodiamide Brain Retention in Rats Using Quantitative <scp>T<sub>2</sub></scp> Mapping and Intraperitoneal Administration
- Optimization of Detection of Gadodiamide Brain Retention in Rats Using Quantitative <scp>T<sub>2</sub></scp> Mapping and Intraperitoneal Administration
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