Amir Manzour

About Amir Manzour

Amir Manzour is a Research Fellow at The National Institutes of Health, focusing on gene and transcript differential expression to understand biological processes. He has extensive academic training in engineering and bioinformatics, holding degrees from multiple universities and contributing to significant research in genomics and HIV pathogenesis.

Work at National Institutes of Health

Amir Manzour has been a Research Fellow at the National Institutes of Health (NIH) since 2016. His role involves conducting advanced research in the field of genomics, focusing on gene and transcript differential expression. He has also served as a Visiting Postdoctoral Fellow at NIH since 2014, contributing to various projects and studies related to biological processes. His work is centered in Bethesda, MD, where he collaborates with other researchers to enhance understanding of complex biological systems.

Education and Expertise

Amir Manzour holds a Doctor of Philosophy (PhD) in Bioinformatics from The University of Georgia, where he studied from 2009 to 2012. He earned a Master's Degree in Telecommunications Engineering from Isfahan University of Technology between 2004 and 2007. Additionally, he completed his Bachelor's Degree in Electrical and Electronics Engineering at Guilan University from 1999 to 2003. His educational background is complemented by early studies in Electrical and Electronics Engineering at the University of New Brunswick and Concordia University.

Background

Amir Manzour's academic journey began with a focus on Electrical and Electronics Engineering, transitioning into specialized fields such as Telecommunications Engineering and Bioinformatics. His diverse educational experiences across multiple institutions have equipped him with a robust foundation in engineering and computational biology. This background supports his current research endeavors at NIH, where he applies his knowledge to genomic studies.

Achievements

Amir Manzour has made significant contributions to research involving Next Generation Sequencing data, which is essential for advanced genomic studies. He has been involved in projects analyzing HIV Nef RNA, which is critical for understanding the pathogenesis of HIV. Additionally, he has contributed to research on RNA switches and riboswitches, which play a vital role in gene regulation. His work in these areas reflects his commitment to advancing knowledge in genomics and molecular biology.

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