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Design and implementation of a system for measurement and control of blood pressure with charge balanced current pulses to stimulate the carotid sinus nerve

机译:使用电荷平衡电流脉冲测量和控制血压系统的设计和实现,刺激颈动脉窦神经

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It is well known that arterial baroreceptor reflex function is impaired in human spontaneous hypertension and in experimental hypertension. Therefore, a system consists of nerve stimulator and a real time blood pressure recorder has been designed and characterized for investigating the effect of carotid sinus nerve stimulating in drug-resistant hypertension studies. Blood pressure signals were successfully analyzed in system and systolic/diastolic/mean arterial pressure were displayed on LCD. The stimulator could deliver precise trains of asymmetric biphasic current pulses using a Howland Current Source, with regulated electrode bias-voltage for safe neural stimulation, to the electrodes. we considered all patterns of electrical pulses as fix parameters and only changes in frequency have been discussed in this work (amplitude of positive phase IOUT+ = +1mA, amplitude of negative phase IOUT− = −250µA, duration of positive phase T = 200mS). We applied the system to seven normal anesthetized Wistar rats. The designed system successfully measured and decreased MAP in all rats. The present study laid a foundation for using a charge balanced current source to stimulate CSN and decrease blood pressure.
机译:众所周知,人类自发性高血压和实验性高血压损害动脉丧风管反射功能。因此,系统由神经刺激器组成,并且已经设计了实时血压记录器,并表征了研究颈动脉窦神经刺激在耐药性高血压研究中的作用。在系统中成功分析了血压信号,并在LCD上显示收缩/舒张/平均动脉压。刺激器可以使用霍兰电流源具有霍华隆的电流源的不对称双相电流脉冲的精确列车,该电极偏压用于安全神经刺激,对电极。我们认为所有模式的电脉冲都是固定参数,并且在这项工作中只讨论了频率的变化(正期I OUT + = 1mA的幅度,负阶段I OUT- < / INF> =-250μA,正相T = 200ms的持续时间)。我们将该系统应用于七个正常麻醉的Wistar大鼠。设计的系统在所有大鼠中成功测量和降低了地图。本研究为使用电荷平衡电流源刺激CSN并降低血压来奠定了基础。

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