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Tuszynski

Showing results (71-80 of 813) with videos related to

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Membranes|March 27, 2026
Molecular Simulations of Biomembranes: From Biophysics Fundamentals to Biological FunctionMd Ashrafuzzaman, Jack A Tuszynski
Nature Reviews. Molecular Cell Biology|January 5, 2023
Regulation of axonal regeneration after mammalian spinal cord injuryBinhai Zheng, Mark H Tuszynski
Progress in Brain Research|January 1, 2004
Nerve growth factor: from animal models of cholinergic neuronal degeneration to gene therapy in Alzheimer's diseaseMark H Tuszynski, Armin Blesch
Analytical Biochemistry|January 1, 1990
Spectrophotometric quantitation of anchorage-dependent cell numbers using the bicinchoninic acid protein assay reagentG P Tuszynski, A Murphy
Bio Systems|May 26, 2012
A mean field Ising model for cortical rotation in amphibian one-cell stage embryosJack A Tuszynski, Richard Gordon
Oncotarget|January 17, 2019
The molecular mechanism of action of methylene quinuclidinone and its effects on the structure of p53 mutantsSara Ibrahim Omar, Jack Tuszynski
Neuroscience Letters|April 23, 2017
Introduction to neuroscience letters special issue: "Plasticity and regeneration after spinal cord injury"Paul Lu, Mark H Tuszynski
Drug Discovery Today|July 21, 2015
A unified approach to computational drug discoveryChih-Yuan Tseng, Jack Tuszynski
The Journal of Comparative Neurology|July 12, 2001
GDNF gene delivery to injured adult CNS motor neurons promotes axonal growth, expression of the trophic neuropeptide CGRP, and cellular protectionA Blesch, M H Tuszynski
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 28, 2007
Transient growth factor delivery sustains regenerated axons after spinal cord injuryArmin Blesch, Mark H Tuszynski
Pageof 82

Showing results (71-80 of 813) with videos related to

Sort By:
Pageof 82
Membranes|March 27, 2026
Molecular Simulations of Biomembranes: From Biophysics Fundamentals to Biological FunctionMd Ashrafuzzaman, Jack A Tuszynski
Nature Reviews. Molecular Cell Biology|January 5, 2023
Regulation of axonal regeneration after mammalian spinal cord injuryBinhai Zheng, Mark H Tuszynski
Progress in Brain Research|January 1, 2004
Nerve growth factor: from animal models of cholinergic neuronal degeneration to gene therapy in Alzheimer's diseaseMark H Tuszynski, Armin Blesch
Analytical Biochemistry|January 1, 1990
Spectrophotometric quantitation of anchorage-dependent cell numbers using the bicinchoninic acid protein assay reagentG P Tuszynski, A Murphy
Bio Systems|May 26, 2012
A mean field Ising model for cortical rotation in amphibian one-cell stage embryosJack A Tuszynski, Richard Gordon
Oncotarget|January 17, 2019
The molecular mechanism of action of methylene quinuclidinone and its effects on the structure of p53 mutantsSara Ibrahim Omar, Jack Tuszynski
Neuroscience Letters|April 23, 2017
Introduction to neuroscience letters special issue: "Plasticity and regeneration after spinal cord injury"Paul Lu, Mark H Tuszynski
Drug Discovery Today|July 21, 2015
A unified approach to computational drug discoveryChih-Yuan Tseng, Jack Tuszynski
The Journal of Comparative Neurology|July 12, 2001
GDNF gene delivery to injured adult CNS motor neurons promotes axonal growth, expression of the trophic neuropeptide CGRP, and cellular protectionA Blesch, M H Tuszynski
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 28, 2007
Transient growth factor delivery sustains regenerated axons after spinal cord injuryArmin Blesch, Mark H Tuszynski
Pageof 82