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Jeffrey T Kroetsch

Showing results (11-20 of 17) with videos related to

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Nature Communications|April 6, 2017
Constitutive smooth muscle tumour necrosis factor regulates microvascular myogenic responsiveness and systemic blood pressureJeffrey T Kroetsch, Andrew S Levy, Hangjun Zhang, et al.
Journal of Molecular and Cellular Cardiology|February 23, 2017
Disrupting the key circadian regulator CLOCK leads to age-dependent cardiovascular diseaseFaisal J Alibhai, Jonathan LaMarre, Cristine J Reitz, et al.
Cardiovascular Research|November 23, 2022
Disrupting circadian control of peripheral myogenic reactivity mitigates cardiac injury following myocardial infarctionJeffrey T Kroetsch, Darcy Lidington, Faisal J Alibhai, et al.
Scientific Reports|March 23, 2019
The Clock Mechanism Influences Neurobiology and Adaptations to Heart Failure in Clock<sup>∆19/∆19</sup> Mice With Implications for Circadian MedicineAustin T H Duong, Cristine J Reitz, Emma L Louth, et al.
Matrix Biology Plus|October 25, 2021
Deletion of type VIII collagen reduces blood pressure, increases carotid artery functional distensibility and promotes elastin depositionAmanda L Mohabeer, Jeffrey T Kroetsch, Meghan McFadden, et al.
Circulation|June 7, 2012
Proximal cerebral arteries develop myogenic responsiveness in heart failure via tumor necrosis factor-α-dependent activation of sphingosine-1-phosphate signalingJingli Yang, M Hossein Noyan-Ashraf, Anja Meissner, et al.
JACC. Basic to Translational Science|January 8, 2020
CFTR Therapeutics Normalize Cerebral Perfusion Deficits in Mouse Models of Heart Failure and Subarachnoid HemorrhageDarcy Lidington, Jessica C Fares, Franziska E Uhl, et al.
Pageof 2

Showing results (11-20 of 17) with videos related to

Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 17 results.
Nature Communications|April 6, 2017
Constitutive smooth muscle tumour necrosis factor regulates microvascular myogenic responsiveness and systemic blood pressureJeffrey T Kroetsch, Andrew S Levy, Hangjun Zhang, et al.
Journal of Molecular and Cellular Cardiology|February 23, 2017
Disrupting the key circadian regulator CLOCK leads to age-dependent cardiovascular diseaseFaisal J Alibhai, Jonathan LaMarre, Cristine J Reitz, et al.
Cardiovascular Research|November 23, 2022
Disrupting circadian control of peripheral myogenic reactivity mitigates cardiac injury following myocardial infarctionJeffrey T Kroetsch, Darcy Lidington, Faisal J Alibhai, et al.
Scientific Reports|March 23, 2019
The Clock Mechanism Influences Neurobiology and Adaptations to Heart Failure in Clock<sup>∆19/∆19</sup> Mice With Implications for Circadian MedicineAustin T H Duong, Cristine J Reitz, Emma L Louth, et al.
Matrix Biology Plus|October 25, 2021
Deletion of type VIII collagen reduces blood pressure, increases carotid artery functional distensibility and promotes elastin depositionAmanda L Mohabeer, Jeffrey T Kroetsch, Meghan McFadden, et al.
Circulation|June 7, 2012
Proximal cerebral arteries develop myogenic responsiveness in heart failure via tumor necrosis factor-α-dependent activation of sphingosine-1-phosphate signalingJingli Yang, M Hossein Noyan-Ashraf, Anja Meissner, et al.
JACC. Basic to Translational Science|January 8, 2020
CFTR Therapeutics Normalize Cerebral Perfusion Deficits in Mouse Models of Heart Failure and Subarachnoid HemorrhageDarcy Lidington, Jessica C Fares, Franziska E Uhl, et al.
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