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Field stimulation of the carotid baroreceptor complex does not compromise baroreceptor function in spontaneously hypertensive rats

机译:在自发性高血压大鼠中,颈动脉压力感受器复合物的野外刺激不会损害压力感受器的功能

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Field stimulation of the carotid baroreceptors has been successfully used to induce a long-term reduction in blood pressure. However, baroreceptor stimulation may interfere with or compromise the beneficial short-term blood pressure regulation function of the baroreceptors. This study aims to quantify the baroreceptor function before and during acute, unilateral field stimulation of the carotid baroreceptors. Spontaneously Hypertensive Rats (n=7) were anaesthetised and instrumented to measure heart rate and mean arterial pressure (MAP), aortic pulse wave velocity (a surrogate measure of arterial stiffness), abdominal aortic flow and renal artery flow. A custom made field stimulation device was fitted to the left common carotid artery. Baroreceptor function was measured by quantifying heart rate response to MAP change induced by bolus injection of phenylephrine. Field stimulation of the baroreceptors reduced heart rate by 20 bpm (p=0.003) with MAP reduction of 18 mmHg (p=0.008). Maximal barorecep-tor gain without stimulation was −1.20±0.41 bpm/mmHg and during stimulation −1.41±0.52 bpm/mmHg (p=0.59). The MAP at which maximal gain occurred also did not change (152±11, 160±9 mmHg respectively, p=0.22). This study indicates that unilateral field stimulation of the carotid baroreceptor complex, while causing a sustained reduction of arterial pressure, does not alter acute baroreceptor function peak gain.
机译:颈动脉压力感受器的野外刺激已成功用于诱导血压长期降低。但是,压力感受器刺激可能会干扰或损害压力感受器的有益的短期血压调节功能。这项研究旨在量化在急性,单侧场刺激颈动脉压力感受器之前和期间的压力感受器功能。对自发性高血压大鼠(n = 7)进行麻醉并进行仪器测量,以测量心率和平均动脉压(MAP),主动脉脉搏波速度(替代动脉僵硬度的度量),腹主动脉血流和肾动脉血流。定制的场刺激装置安装在左颈总动脉上。压力感受器功能通过量化对推注苯肾上腺素引起的MAP变化的心率响应进行测量。压力感受器的野外刺激使心率降低了20 bpm(p = 0.003),而MAP降低了18 mmHg(p = 0.008)。无刺激时的最大barreceptor增益为-1.20±0.41 bpm / mmHg,在刺激过程中为-1.41±0.52 bpm / mmHg(p = 0.59)。出现最大增益的MAP也没有变化(分别为152±11、160±9 mmHg,p = 0.22)。这项研究表明,单侧场刺激颈动脉压力感受器复合物,虽然会导致动脉压持续降低,但不会改变急性压力感受器功能的峰值增益。

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