AbstractThis paper explores the influence of burst properties of the sympathetic nervous system on arterial contractility. Specifically, a mathematical model is constructed of the pathway from action potential generation in a sympathetic postganglionic neurone to contraction of an arterial smooth muscle cell. The differential equation model is a synthesis of models of the individual physiological processes, and is shown to be consistent with physiological data.The model is found to be unresponsive to tonic (regular) stimulation at typical frequencies recorded in sympathetic efferents. However, when stimulated at the same average frequency, but with repetitive respiratory-modulated burst patterns, it produces marked contractions. Moreover, t...
The current study evaluated the influence of resting muscle sympathetic nerve activity (MSNA) burst ...
The work presented in this thesis examined the cellular and molecular phenotypes associated with sym...
The control of blood pressure is a complex mixture of neural, hormonal and intrinsic interactions at...
AbstractThis paper explores the influence of burst properties of the sympathetic nervous system on a...
Hypertension is associated with sympathetic hyperactivity. To represent this neural-myocyte coupling...
AbstractHypertension is associated with sympathetic hyperactivity. To represent this neural-myocyte ...
Hypertension is associated with sympathetic hyperactivity. To represent this neural-myocyte coupling...
The work presented in this thesis examines the role of cardiac sympathetic signalling in the develop...
Arterial stiffness is a predictor of cardiovascular disease and all-cause mortality. Arteries stiffe...
Arterial wall dynamics arise from the synergy of passive mechano-elastic properties of the vascular ...
Evidence suggests different sections of the arteriolar network supplying muscle can respond independ...
This thesis work presents a multi-scale mathematical modeling framework to investigate issues regard...
Empirical thesis.Bibliography: pages 157-168.Literature review : sympathetic tone and arterial stiff...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT AUTHOR'S REQUEST.] The ability for sympathetic n...
The purpose of this dissertation was to assess synaptic integration in neurons from the rat superior...
The current study evaluated the influence of resting muscle sympathetic nerve activity (MSNA) burst ...
The work presented in this thesis examined the cellular and molecular phenotypes associated with sym...
The control of blood pressure is a complex mixture of neural, hormonal and intrinsic interactions at...
AbstractThis paper explores the influence of burst properties of the sympathetic nervous system on a...
Hypertension is associated with sympathetic hyperactivity. To represent this neural-myocyte coupling...
AbstractHypertension is associated with sympathetic hyperactivity. To represent this neural-myocyte ...
Hypertension is associated with sympathetic hyperactivity. To represent this neural-myocyte coupling...
The work presented in this thesis examines the role of cardiac sympathetic signalling in the develop...
Arterial stiffness is a predictor of cardiovascular disease and all-cause mortality. Arteries stiffe...
Arterial wall dynamics arise from the synergy of passive mechano-elastic properties of the vascular ...
Evidence suggests different sections of the arteriolar network supplying muscle can respond independ...
This thesis work presents a multi-scale mathematical modeling framework to investigate issues regard...
Empirical thesis.Bibliography: pages 157-168.Literature review : sympathetic tone and arterial stiff...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT AUTHOR'S REQUEST.] The ability for sympathetic n...
The purpose of this dissertation was to assess synaptic integration in neurons from the rat superior...
The current study evaluated the influence of resting muscle sympathetic nerve activity (MSNA) burst ...
The work presented in this thesis examined the cellular and molecular phenotypes associated with sym...
The control of blood pressure is a complex mixture of neural, hormonal and intrinsic interactions at...