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牙科器械对神经刺激器的影响。

The impact of dental devices on neurostimulators.

作者信息

Roberts Steven, Vender John R, Causey Mark S, Roberts Jefferson R, Loushine Robert J, Morris Walter J, Looney Stephen W

机构信息

Department of Endodontics, School of Dentistry, Medical College of Georgia, Augusta, GA 30912-1129, USA.

出版信息

J Endod. 2009 Mar;35(3):422-5. doi: 10.1016/j.joen.2008.12.005.

Abstract

Spinal cord stimulation has been a therapeutic option for chronic pain for over 40 years. The neurostimulator (NS) is a device consisting of three primary components: an electrode array configured either as a paddle or wire; an implantable pulse generator (IPG) consisting of a minicomputer, a transceiver/antenna, an electrical generator, and a battery; and insulated wiring connecting the electrode to the IPG. The electrode array can be implanted into the epidural space overlying the dorsal spinal cord or along a peripheral nerve. The device generates pulsed electrical signals that stimulate the underlying dorsal columns of the spinal cord resulting in the perception of paresthesia by the patient. When overlapped with painful areas, the paresthesia can help decrease the patient's level of pain. The increased applications and indications for this technology enhance the likelihood that the NS patient will be seen in the dental practice. Therefore, the purpose of this study was to investigate whether electromagnetic interference of the NS occurred during the operation of the apex locator, the electric pulp tester (EPT), or the electrocautery unit. An NS was implanted into the epidural space of a human cadaver. The dental devices were used intraorally, and the implant's circuitry was tested after each trial. Two apex locators, two EPTs, and one electrocautery unit were tested. Seventy trials were used by each dental device on each tissue. Using the exact binomial method of determining confidence intervals, the probability of damage to the NS by any of the devices was negligible.

摘要

脊髓刺激作为慢性疼痛的一种治疗选择已有40多年。神经刺激器(NS)是一种由三个主要部件组成的装置:配置为板状或线状的电极阵列;由微型计算机、收发器/天线、发电机和电池组成的植入式脉冲发生器(IPG);以及连接电极与IPG的绝缘导线。电极阵列可植入脊髓背侧上方的硬膜外间隙或沿周围神经植入。该装置产生脉冲电信号,刺激脊髓下方的背柱,导致患者产生感觉异常。当与疼痛区域重叠时,感觉异常有助于降低患者的疼痛程度。这项技术应用和适应症的增加,提高了在牙科诊所遇到NS患者的可能性。因此,本研究的目的是调查在根尖定位仪、牙髓电活力测试仪(EPT)或电灼装置操作过程中,NS是否会发生电磁干扰。将一个NS植入人体尸体的硬膜外间隙。牙科设备在口腔内使用,每次试验后测试植入物的电路。测试了两个根尖定位仪、两个EPT和一个电灼装置。每个牙科设备在每个组织上进行了70次试验。使用确定置信区间的精确二项式方法,任何设备对NS造成损坏的概率都可以忽略不计。

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