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T Bartsch

Showing results (21-30 of 53) with videos related to

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Nanotechnology|May 11, 2012
A single active nanoelectromechanical tuning fork front-end radio-frequency receiverSebastian T Bartsch, A Rusu, Adrian M Ionescu
ACS Nano|March 11, 2015
Wafer-level hysteresis-free resonant carbon nanotube transistorsJi Cao, Sebastian T Bartsch, Adrian M Ionescu
Brain Research|September 14, 2010
Distribution of 5-HT(1B), 5-HT(1D) and 5-HT(1F) receptor expression in rat trigeminal and dorsal root ganglia neurons: relevance to the selective anti-migraine effect of triptansJ D Classey, T Bartsch, P J Goadsby
Journal of Neurology|May 23, 2003
The stiff limb syndrome--a new case and a literature reviewT Bartsch, J Herzog, R Baron, et al.
Annals of Neurology|September 7, 2004
Activation of 5-HT(1B/1D) receptor in the periaqueductal gray inhibits nociceptionT Bartsch, Y E Knight, P J Goadsby
Neuroscience|April 1, 1997
Responses of rat postganglionic sympathetic vasoconstrictor neurons following blockade of nitric oxide synthesis in vivoH J Häbler, G Wasner, T Bartsch, et al.
ACS Nano|December 14, 2011
Nanomechanical silicon resonators with intrinsic tunable gain and sub-nW power consumptionSebastian T Bartsch, Andrea Lovera, Daniel Grogg, et al.
Pain|May 26, 2004
Differential modulation of nociceptive dural input to [hypocretin] orexin A and B receptor activation in the posterior hypothalamic areaT Bartsch, M J Levy, Y E Knight, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 1, 1996
p53-dependent cell cycle arrest induced by N-acetyl-L-leucinyl-L-leucinyl-L-norleucinal in platelet-derived growth factor-stimulated human fibroblastsC Dietrich, T Bartsch, F Schanz, et al.
Pain|July 27, 2005
Inhibition of nociceptive dural input in the trigeminal nucleus caudalis by somatostatin receptor blockade in the posterior hypothalamusT Bartsch, M J Levy, Y E Knight, et al.
Pageof 6

Showing results (21-30 of 53) with videos related to

Sort By:
Pageof 6
Nanotechnology|May 11, 2012
A single active nanoelectromechanical tuning fork front-end radio-frequency receiverSebastian T Bartsch, A Rusu, Adrian M Ionescu
ACS Nano|March 11, 2015
Wafer-level hysteresis-free resonant carbon nanotube transistorsJi Cao, Sebastian T Bartsch, Adrian M Ionescu
Brain Research|September 14, 2010
Distribution of 5-HT(1B), 5-HT(1D) and 5-HT(1F) receptor expression in rat trigeminal and dorsal root ganglia neurons: relevance to the selective anti-migraine effect of triptansJ D Classey, T Bartsch, P J Goadsby
Journal of Neurology|May 23, 2003
The stiff limb syndrome--a new case and a literature reviewT Bartsch, J Herzog, R Baron, et al.
Annals of Neurology|September 7, 2004
Activation of 5-HT(1B/1D) receptor in the periaqueductal gray inhibits nociceptionT Bartsch, Y E Knight, P J Goadsby
Neuroscience|April 1, 1997
Responses of rat postganglionic sympathetic vasoconstrictor neurons following blockade of nitric oxide synthesis in vivoH J Häbler, G Wasner, T Bartsch, et al.
ACS Nano|December 14, 2011
Nanomechanical silicon resonators with intrinsic tunable gain and sub-nW power consumptionSebastian T Bartsch, Andrea Lovera, Daniel Grogg, et al.
Pain|May 26, 2004
Differential modulation of nociceptive dural input to [hypocretin] orexin A and B receptor activation in the posterior hypothalamic areaT Bartsch, M J Levy, Y E Knight, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 1, 1996
p53-dependent cell cycle arrest induced by N-acetyl-L-leucinyl-L-leucinyl-L-norleucinal in platelet-derived growth factor-stimulated human fibroblastsC Dietrich, T Bartsch, F Schanz, et al.
Pain|July 27, 2005
Inhibition of nociceptive dural input in the trigeminal nucleus caudalis by somatostatin receptor blockade in the posterior hypothalamusT Bartsch, M J Levy, Y E Knight, et al.
Pageof 6