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[一种具有径向不对称排列电场的双极电极。区域麻醉和疼痛治疗中神经定位的新原理]

[A bipolar electrode with a radial asymmetrically aligned electric field. A new principle of nerve localization in regional anesthesia and pain therapy].

作者信息

Kübler N, Theiss D, Gaertner T

机构信息

Klinik für Anaesthesiologie, Johannes-Gutenberg-Universität Mainz.

出版信息

Reg Anaesth. 1988 Jul;11(3):78-82.

PMID:3413306
Abstract

Electrostimulation is a common method of nerve localization. To improve the nerve-stimulating needle, we developed a new bipolar nerve-stimulating electrode with a more convenient extension of its electric field. Figure 1a shows the new nerve-stimulating needle; in Fig. 1b a longitudinal section is depicted. A hollow cannula (1) is surrounded by an isolator (5) that separates the internal electrode (1) from the external electrode (6). The surface of the latter is also covered by an isolator (8). Two cables, (2) and (7), connect the electrodes to a nerve stimulator. Syringes and tubes can be connected to the needle by using the attached part (4). Figs. 2a and b show top- and side views of the needle's sharp end. Except for small parts of the internal (1) and external electrode (2), both electrodes are covered by isolation (3). This arrangement leads to the radially asymmetric extension of the electric field. Studies with animal nerve-muscle preparations showed that the density of the electric field is higher, and thus electrostimulation can be carried out with up to 75% lower impulse amplitude as compared with insulated monopolar electrodes. The main advantage of the new arrangement of electrodes, however, is the dependency between revolution of the nerve-stimulating needle on its axis and the evoked muscle response. Muscle potentials measured by electromyography and respective degrees of needle torsion are shown in Fig. 3 (black circles: bipolar radially asymmetric electrode, white circles: insulated monopolar electrode).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

电刺激是一种常见的神经定位方法。为改进神经刺激针,我们开发了一种新型双极神经刺激电极,其电场扩展更为便捷。图1a展示了新型神经刺激针;图1b为其纵截面图。空心套管(1)被隔离器(5)环绕,该隔离器将内部电极(1)与外部电极(6)隔开。外部电极表面也覆盖有隔离器(8)。两根电缆(2)和(7)将电极与神经刺激器相连。注射器和导管可通过连接部件(4)与针相连。图2a和b展示了针尖端的俯视图和侧视图。除内部电极(1)和外部电极(2)的小部分外,两个电极均被绝缘体(3)覆盖。这种布局导致电场呈径向不对称扩展。对动物神经 - 肌肉标本的研究表明,电场密度更高,因此与绝缘单极电极相比,进行电刺激时脉冲幅度可降低多达75%。然而,新电极布局的主要优势在于神经刺激针绕其轴的旋转与诱发的肌肉反应之间的相关性。图3展示了通过肌电图测量的肌肉电位以及相应的针扭转程度(黑色圆圈:双极径向不对称电极,白色圆圈:绝缘单极电极)。(摘要截选至250字)

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