VM
moryavivek
Also known as: V K Morya, V. K. Morya, Vivek K Morya, Vivek Kumar Morya, vivek morya, Morya vivek Kumar, Morya Vivek, Morya V K, Morya V.K.
Hallym University Kangnam Sacred Heart Hospital, Inha University, Deen Dayal Upadhyay Gorakhpur University, Sam Higginbottom Institute of Agriculture Technology and Sciences
About
Vivek Kumar Morya, PhD
Consultant researchers, Hallym University, Republic of Korea
Chief Scientific Advisor, AFCRC Nepal
Assistant Professor, Department of Biological Engineering, Inha University, Republic of KOREA, (2011-2017)
Employment
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Hallym University Kangnam Sacred Heart Hospital2021 - Present
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Inha University Assistant Professor2011 - 2017
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Sam Higginbottom Institute of Agriculture Technology and Sciences Assistant Professor2007 - 2010
Education
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Inha University Post Doc Fellow2010 - 2011
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Deen Dayal Upadhyay Gorakhpur University PhD2005 - 2010
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Deen Dayal Upadhyay Gorakhpur University M.Sc.2001 - 2003
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Deen Dayal Upadhyay Gorakhpur University B. Sc.1998 - 2001
Projects & Funding
Projects & funding information is unavailable.
Publications (63)
- Effect of BMAC-PRP augmentation on repair of large rotator cuff tears: a clinical evaluation among different age groups Save
- Double double-pulley triple row technique for arthroscopic rotator cuff repair: a technical note Save
- Outcome comparison of arthroscopic latissimus dorsi tendon transfer and muscle advancement for irreparable rotator cuff tear: a systematic review Save
- Double Pulley-Triple Row Technique for Arthroscopic Rotator Cuff Repair: A Technical Note Save
- A Narrative Review on the Double Pulley-Triple Row Technique for Large to Massive Rotator Cuff Repair Save
- Microbial Laccases: Structure, Function, and Applications Save
- Arthroscopic-guided Release of Supraspinatus and Infraspinatus Muscles for Repair of Large-to-Massive Rotator Cuff Tear and Suprascapular Nerve Release Save
- Revolutionizing oncology: the role of Artificial Intelligence (AI) as an antibody design, and optimization tools Save
- Synergistic HDAC4/8 Inhibition Sensitizes Osteosarcoma to Doxorubicin via pAKT/RUNX2 Pathway Modulation Save
- Synergistic HDAC4/8 Inhibition Sensitizes Osteosarcoma to Doxorubicin via pAKT/RUNX2 Pathway Modulation Save