Subhendu Ghosh

Delhi University, New Delhi, Delhi, India 
"Subhendu Ghosh"
Mean distance: 17.41 (cluster 16)


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Amal Kanti Bera grad student 1992-1998
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Brown CA, Kaji AH, Fantegrossi A, et al. (2020) Video Laryngoscopy Compared to Augmented Direct Laryngoscopy in Adult Emergency Department Tracheal Intubations: A National Emergency Airway Registry (NEAR) Study. Academic Emergency Medicine : Official Journal of the Society For Academic Emergency Medicine
Shrivastava R, Malik C, Ghosh S. (2016) Open channel current noise analysis of S6 peptides from KvAP channel on bilayer lipid membrane shows bimodal power law scaling Physica a: Statistical Mechanics and Its Applications. 451: 533-540
Bhattacharjee A, Das MK, Ghosh S. (2014) Synchronization in a ring of unidirectionally coupled fitzhugh-nagumo neurons International Journal of Biomathematics. 7
Verma R, Malik C, Azmi S, et al. (2011) A synthetic S6 segment derived from KvAP channel self-assembles, permeabilizes lipid vesicles, and exhibits ion channel activity in bilayer lipid membrane. The Journal of Biological Chemistry. 286: 24828-41
Yadav CK, Verma MK, Ghosh S. (2010) Statistical evidence for power law temporal correlations in exploratory behaviour of rats. Bio Systems. 102: 77-81
Banerjee J, Ghosh S. (2006) Phosphorylation of rat brain mitochondrial voltage-dependent anion as a potential tool to control leakage of cytochrome c. Journal of Neurochemistry. 98: 670-6
Banerjee J, Verma MK, Manna S, et al. (2006) Self-organised criticality and 1/f noise in single-channel current of voltage-dependent anion channel Europhysics Letters. 73: 457-463
Banerjee J, Ghosh S. (2005) Investigating interaction of ligands with voltage dependent anion channel through noise analyses. Archives of Biochemistry and Biophysics. 435: 369-71
Banerjee J, Ghosh S. (2004) Bax increases the pore size of rat brain mitochondrial voltage-dependent anion channel in the presence of tBid. Biochemical and Biophysical Research Communications. 323: 310-4
Banerjee J, Ghosh S. (2004) Interaction of mitochondrial voltage-dependent anion channel from rat brain with plasminogen protein leads to partial closure of the channel. Biochimica Et Biophysica Acta. 1663: 6-8
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