迷走神经电阻滞对心率的模糊逻辑控制。

Shane A Bender, David B Green, Robert J Daniels, Kevin L Kilgore, Niloy Bhadra, Tina L Vrabec
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引用次数: 1

摘要

虽然迷走神经刺激(VNS)可以通过增强副交感神经活动来降低心率,但完全可控的干预还需要一种下调副交感神经活动的方法。在神经上施加直流电阻断可以阻断其动作电位的传导。这种神经阻滞可以通过阻断传入反射来下调副交感神经活动。通过将电极与神经分离,可以避免使用传统铂电极在电极-神经界面发生的反应的破坏性影响。使用一种生物相容的离子传导介质,电极和损伤反应可以被隔离在远离神经的血管中。这种类型的电极被称为分离界面神经电极(SINE)。模糊逻辑控制(FLC)是一种非常适用于生理系统的控制方法。由FLC控制的SINE被用来阻断受刺激的迷走神经并调节心率。FLC能够将心率维持在预定的设定值,同时在移除阻塞时仍能实现即时恢复。
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Fuzzy Logic Control of Heartrate by Electrical Block of Vagus Nerve.

Although vagus nerve stimulation (VNS) can be used to reduce heartrate by enhancing parasympathetic activity, a fully controllable intervention would also require a method for downregulating parasympathetic activity. A direct current (DC) block can be applied to a nerve to block its action potential conduction. This nerve block can be used to downregulate parasympathetic activity by blocking afferent reflexes. The damaging effects of reactions that occur at the electrode-nerve interface using conventional platinum electrodes can be avoided by separating the electrode from the nerve. Using a biocompatible, ionically conducting medium, the electrode and the damaging reactions can be isolated in a vessel away from the nerve. This type of electrode has been called the Separated Interface Nerve Electrode (SINE). Fuzzy logic control (FLC) is a controller approach that is well suited to physiological systems. The SINE, controlled by an FLC, was utilized to block a stimulated vagus nerve and regulate heart rate. The FLC was able to maintain the heartrate at a pre-determined setpoint while still achieving instant recovery when the block was removed.

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