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首页> 外文期刊>Neuromodulation: journal of the International Neuromodulation Society >A Respiratory Marker Derived From Left Vagus Nerve Signals Recorded With Implantable Cuff Electrodes
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A Respiratory Marker Derived From Left Vagus Nerve Signals Recorded With Implantable Cuff Electrodes

机译:源自侧迷走神经信号的呼吸标记,记录为可植入袖带电极

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Objective Left vagus nerve (LVN) stimulation (LVNS) has been tested for lowering the blood pressure (BP) in patients with resistant hypertension (RH). Whereas, closed‐loop LVNS (CL‐LVNS) driven by a BP marker may be superior to open‐loop LVNS, there are situations (e.g., exercising) when hypertension is normal. Therefore, an ideal anti‐RH CL‐LVNS system requires a variable to avoid stimulation in such conditions, for example, a respiratory marker ideally extracted from the LVN. As the LVN conducts respiratory signals, this study aimed to investigate if such signals can be recorded using implantable means and if a marker to monitor respiration could be derived from such recordings. Materials and Methods The experiments were performed in 14 anesthetized pigs. Five pigs were subjected to changes of the respiratory frequency and nine to changes of the respiratory volume. The LVN electroneurogram (VENG) was recorded using two cuff electrodes and the respiratory cycles (RC) using a pressure transducer. To separate the afferent and efferent VENGs, vagotomy was performed between the cuffs in the first group of pigs. The VENG was squared to derive respiration‐related neural profiles (RnPs) and their correlation with the RCs was investigated in regard to timing and magnitude parameters derived from the two waveforms. Results The RnPs were morphologically similar with the RCs and the average RnPs represented accurate copies of the average RCs. Consequently, the lung inflation/deflation RC and RnP components had the same duration, the respiratory frequency changes affected in the same way both waveforms and the RnP amplitude increased linearly with the lung inflation in all tested pigs ( R 2 values between 0.85 and 0.99). Conclusions The RnPs comprise information regarding the timing and magnitude of the respiratory parameters. As those LVN profiles were derived using implantable means, this study indicates that the RnPs could serve as respiratory markers in implantable systems.
机译:目的左迷走神经(LVN)刺激(LVN)已经测试用于降低抗性高血压患者(RH)的血压(BP)。然而,由BP标记驱动的闭环LVN(CL-LVN)可以优于开环LVN,当高血压正常时存在情况(例如,锻炼)。因此,理想的抗RH CL-LVNS系统需要可变以避免在这种条件下刺激,例如,理想地从LVN中提取的呼吸标记。随着LVN进行呼吸信号,该研究旨在研究这些信号是否可以使用可植入装置记录,并且如果可以从这些录音中衍生出呼吸的标记。材料和方法在14只麻醉猪中进行实验。对呼吸频率的变化和九只猪进行呼吸体积的变化。使用压力传感器使用两个袖带电极和呼吸循环(RC)记录LVN电气图(Veng)。为了分离传入和传递的vengs,在第一粒猪的袖口之间进行了迷走术。 VENG被平方地衍生出呼吸相关的神经谱(RNP),关于从两个波形导出的时序和幅度参数研究其与RCS的相关性。结果RNP与RCS相似,平均RNPS表示平均RCS的准确副本。因此,肺充气/放气RC和RNP组分具有相同的持续时间,呼吸频率变化与相同的方式影响,波形和RNP振幅随着所有测试猪的所有受测试猪的肺膨胀而导致线性增加(0.85和0.99之间的R 2值) 。结论RNP包括关于呼吸参数的时序和幅度的信息。由于使用可植入装置来得出的LVN型材,该研究表明RNP可以作为可植入系统中的呼吸标记。

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