Suppr超能文献

通过选择性迷走神经刺激实现血压控制且副作用最小。

Blood pressure control with selective vagal nerve stimulation and minimal side effects.

作者信息

Plachta Dennis T T, Gierthmuehlen Mortimer, Cota Oscar, Espinosa Nayeli, Boeser Fabian, Herrera Taliana C, Stieglitz Thomas, Zentner Joseph

机构信息

Department of Microsystems Engineering (IMTEK), Laboratory for Biomedical Microtechnology, University of Freiburg, Georges-Koehler-Allee 102, D-79110 Freiburg, Germany.

出版信息

J Neural Eng. 2014 Jun;11(3):036011. doi: 10.1088/1741-2560/11/3/036011. Epub 2014 May 8.

Abstract

OBJECTIVE

Hypertension is the largest threat to patient health and a burden to health care systems. Despite various options, 30% of patients do not respond sufficiently to medical treatment. Mechanoreceptors in the aortic arch relay blood pressure (BP) levels through vagal nerve (VN) fibers to the brainstem and trigger the baroreflex, lowering the BP. Selective electrical stimulation of these nerve fibers reduced BP in rats. However, there is no technique described to localize and stimulate these fibers inside the VN without inadvertent stimulation of non-baroreceptive fibers causing side effects like bradycardia and bradypnea.

APPROACH

We present a novel method for selective VN stimulation to reduce BP without the aforementioned side effects. Baroreceptor compound activity of rat VN (n = 5) was localized using a multichannel cuff electrode, true tripolar recording and a coherent averaging algorithm triggered by BP or electrocardiogram.

MAIN RESULTS

Tripolar stimulation over electrodes near the barofibers reduced the BP without triggering significant bradycardia and bradypnea. The BP drop was adjusted to 60% of the initial value by varying the stimulation pulse width and duration, and lasted up to five times longer than the stimulation.

SIGNIFICANCE

The presented method is robust to impedance changes, independent of the electrode's relative position, does not compromise the nerve and can run on implantable, ultra-low power signal processors.

摘要

目的

高血压是对患者健康的最大威胁,也是医疗保健系统的负担。尽管有多种治疗选择,但仍有30%的患者对药物治疗反应欠佳。主动脉弓中的机械感受器通过迷走神经(VN)纤维将血压(BP)水平传递至脑干并触发压力反射,从而降低血压。对这些神经纤维进行选择性电刺激可降低大鼠的血压。然而,目前尚无技术能够在VN内定位并刺激这些纤维,同时避免意外刺激非压力感受性纤维而引发诸如心动过缓和呼吸过缓等副作用。

方法

我们提出了一种用于选择性VN刺激以降低血压且无上述副作用的新方法。使用多通道袖带电极、真三极记录以及由血压或心电图触发的相干平均算法对大鼠VN(n = 5)的压力感受器复合活动进行定位。

主要结果

对压力纤维附近电极进行三极刺激可降低血压,且不会引发明显的心动过缓和呼吸过缓。通过改变刺激脉冲宽度和持续时间,可将血压下降幅度调整至初始值的60%,并且持续时间比刺激长五倍。

意义

所提出的方法对阻抗变化具有鲁棒性,与电极的相对位置无关,不会损伤神经,并且可以在可植入的超低功耗信号处理器上运行。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验