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Mechanisms of Ageing and Development
|
September 22, 2007
The effects of isoproterenol on abnormal electrical and contractile activity and diastolic calcium are attenuated in myocytes from aged Fischer 344 rats
Spring R Farrell, Susan E Howlett
Mechanisms of Ageing and Development
|
November 1, 2008
The age-related decrease in catecholamine sensitivity is mediated by beta(1)-adrenergic receptors linked to a decrease in adenylate cyclase activity in ventricular myocytes from male Fischer 344 rats
Spring R Farrell, Susan E Howlett
American Journal of Physiology. Heart and Circulatory Physiology
|
May 11, 2010
Sex differences in mechanisms of cardiac excitation-contraction coupling in rat ventricular myocytes
Spring R Farrell, Jenna L Ross, Susan E Howlett
Experimental Eye Research
|
May 8, 2020
Morphological multivariate cluster analysis of murine retinal ganglion cells selectively expressing yellow fluorescent protein
Douglas S M Iaboni, Spring R Farrell, Balwantray C Chauhan
Visual Neuroscience
|
May 8, 2014
Modulation of voltage-gated Ca2+ channels in rat retinal ganglion cells by gabapentin
Spring R Farrell, Allison Sargoy, Nicholas C Brecha, et al.
Experimental Eye Research
|
October 12, 2020
GCaMP3 expressing cells in the ganglion cell layer of Thy1-GCaMP3 transgenic mice before and after optic nerve injury
Takeshi Yabana, Michele L Hooper, Spring R Farrell, et al.
Channels (Austin, Tex.)
|
December 9, 2014
Somatostatin receptor subtype 4 modulates L-type calcium channels via Gβγ and PKC signaling in rat retinal ganglion cells
Spring R Farrell, Donald R Rankin, Nicholas C Brecha, et al.
Experimental Eye Research
|
June 14, 2015
Assessment of retinal ganglion cell damage in glaucomatous optic neuropathy: Axon transport, injury and soma loss
Andrea C Nuschke, Spring R Farrell, Julie M Levesque, et al.
Journal of Neurophysiology
|
June 25, 2010
Modulation of voltage-gated ion channels in rat retinal ganglion cells mediated by somatostatin receptor subtype 4
Spring R Farrell, Iona D Raymond, Michael Foote, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 9) with videos related to
Sort By:
Page
of 1
Mechanisms of Ageing and Development
|
September 22, 2007
The effects of isoproterenol on abnormal electrical and contractile activity and diastolic calcium are attenuated in myocytes from aged Fischer 344 rats
Spring R Farrell, Susan E Howlett
Mechanisms of Ageing and Development
|
November 1, 2008
The age-related decrease in catecholamine sensitivity is mediated by beta(1)-adrenergic receptors linked to a decrease in adenylate cyclase activity in ventricular myocytes from male Fischer 344 rats
Spring R Farrell, Susan E Howlett
American Journal of Physiology. Heart and Circulatory Physiology
|
May 11, 2010
Sex differences in mechanisms of cardiac excitation-contraction coupling in rat ventricular myocytes
Spring R Farrell, Jenna L Ross, Susan E Howlett
Experimental Eye Research
|
May 8, 2020
Morphological multivariate cluster analysis of murine retinal ganglion cells selectively expressing yellow fluorescent protein
Douglas S M Iaboni, Spring R Farrell, Balwantray C Chauhan
Visual Neuroscience
|
May 8, 2014
Modulation of voltage-gated Ca2+ channels in rat retinal ganglion cells by gabapentin
Spring R Farrell, Allison Sargoy, Nicholas C Brecha, et al.
Experimental Eye Research
|
October 12, 2020
GCaMP3 expressing cells in the ganglion cell layer of Thy1-GCaMP3 transgenic mice before and after optic nerve injury
Takeshi Yabana, Michele L Hooper, Spring R Farrell, et al.
Channels (Austin, Tex.)
|
December 9, 2014
Somatostatin receptor subtype 4 modulates L-type calcium channels via Gβγ and PKC signaling in rat retinal ganglion cells
Spring R Farrell, Donald R Rankin, Nicholas C Brecha, et al.
Experimental Eye Research
|
June 14, 2015
Assessment of retinal ganglion cell damage in glaucomatous optic neuropathy: Axon transport, injury and soma loss
Andrea C Nuschke, Spring R Farrell, Julie M Levesque, et al.
Journal of Neurophysiology
|
June 25, 2010
Modulation of voltage-gated ion channels in rat retinal ganglion cells mediated by somatostatin receptor subtype 4
Spring R Farrell, Iona D Raymond, Michael Foote, et al.
Page
of 1