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Rajesh Kumar

Researcher at Himachal Pradesh University

Publications -  6966
Citations -  180095

Rajesh Kumar is an academic researcher from Himachal Pradesh University. The author has contributed to research in topics: Medicine & Biology. The author has an hindex of 149, co-authored 4439 publications receiving 140830 citations. Previous affiliations of Rajesh Kumar include Guru Nanak Dev University & Intuitive Surgical.

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TERT promoter mutations in telomere biology.

TL;DR: Discovery of mutations within the core promoter of the TERT gene that create de novo binding sites for E-twenty-six transcription factors provided a mechanism for cancer-specific telomerase reactivation, and hold potential as biomarkers as well as future therapeutic targets.
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Reduced synthesis of muscle proteins in chronic renal failure.

TL;DR: Results indicate that in chronic renal failure there is a decrease in the synthesis of muscle contractile and mitochondrial proteins and a decreases in muscle mitochondrial oxidative enzymes.
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Cellulose based grafted biosorbents - Journey from lignocellulose biomass to toxic metal ions sorption applications - A review

TL;DR: In this article, the general chemistry of the cellulose, different biological, chemical, physical, physio-chemical extraction techniques for its extraction from lignocellulosic biomass, purification and bleaching techniques for extracted cellulose and the mechanism of free radical grafting initiated by a variety of chemical initiators are reviewed.
Proceedings ArticleDOI

Enhanced word clustering for hierarchical text classification

TL;DR: A new information-theoretic divisive algorithm for word clustering applied to text classification is proposed and it is shown that feature clustering is an effective technique for building smaller class models in hierarchical classification.
Proceedings ArticleDOI

Preliminary experiments in cooperative human/robot force control for robot assisted microsurgical manipulation

TL;DR: Reports preliminary experiments with a robot system designed to cooperatively extend a human's ability to perform fine manipulation tasks requiring human judgement, sensory integration and hand-eye coordination, and preliminary feasibility experiments demonstrate stable one-dimensional robotic augmentation and "force scaling" of a human operator's tactile input.