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首页> 外文期刊>American Journal of Physiology >Nonlinear identification of the total baroreflex arc
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Nonlinear identification of the total baroreflex arc

机译:非线性识别总偏射弧

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The total baroreflex arc [the open-loop system relating carotid sinus pressure (CSP) to arterial pressure (AP)] is known to exhibit nonlinear behaviors. However, few studies have quantitatively characterized its nonlinear dynamics. The aim of this study was to develop a nonlinear model of the sympathetically mediated total arc without assuming any model form. Normal rats were studied under anesthesia. The vagal and aortic depressor nerves were sectioned, the carotid sinus regions were isolated and attached to a servo-controlled piston pump, and the AP and sympathetic nerve activity (SNA) were measured. CSP was perturbed using a Gaussian white noise signal. A second-order Vol-terra model was developed by applying nonparametric identification to the measurements. The second-order kernel was mainly diagonal, but the diagonal differed in shape from the first-order kernel. Hence, a reduced second-order model was similarly developed comprising a linear dynamic system in parallel with a squaring system in cascade with a slower linear dynamic system. This "Uryson" model predicted AP changes 12% better (P < 0.01) than a linear model in response to new Gaussian white noise CSP. The model also predicted nonlinear behaviors, including thresholding and mean responses to CSP changes about the mean. Models of the neural arc (the system relating CSP to SNA) and peripheral arc (the system relating SNA to AP) were likewise developed and tested. However, these models of subsystems of the total arc showed approximately linear behaviors. In conclusion, the validated nonlinear model of the total arc revealed that the system takes on an Uryson structure.
机译:已知已知总roloreflex弧形[将颈动脉窦压(CSP)与动脉压(AP)相关的开环系统]表现出非线性行为。然而,很少有研究具有其非线性动力学的表征。本研究的目的是在不假设任何模型形式的情况下开发相同介导的总电弧的非线性模型。在麻醉下研究了正常的大鼠。缩小和主动脉压抑的神经被切断,分离颈动脉窦区域并连接到伺服控制的活塞泵上,并测量AP和交感神经活动(SNA)。 CSP使用高斯白噪声信号扰乱。通过将非参数识别应用于测量来开发二阶Vol-Terra模型。二阶内核主要是对角线,但对角线的形状与一阶内核不同。因此,类似地开发了减少的二阶模型,该模型包括与具有较慢线性动态系统的级联中的平方系统并联的线性动态系统。该“uRyson”模型预测AP响应于新的高斯白噪声CSP而比线性模型更好地改变12%(P <0.01)。该模型还预测了非线性行为,包括对CSP变化的阈值和均值对平均值的变化。形状的神经弧(CSP与SNA相关的系统)和外围电弧(将SNA与AP相关的系统)进行测试。然而,这些总弧的子系统模型显示了大约线性行为。总之,总弧的验证的非线性模型显示该系统采用Uryson结构。

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