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A NEW PARADIGM FOR NEUROLOGICAL LEAD CYCLIC TESTING

机译:神经铅循环测试的新范式

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The feasibility of electrical stimulation of the nervous system to treat chronic pain was proven with implantation of the first device for this purpose by Norm Shealy, MD in 1967. Since then, neurological stimulation has become a standard therapy for pain management.Neurological stimulation devices deliver a signal from the stimulator to the desired site by use of a neurological lead. Lead conductors are constructed of fatigue resistant alloys, and include multiple circuits to provide stimulation along a portion of the lead ranging from less than 1 inch to more than 2 inches in length.Neurological lead development has relied heavily on the cardiovascular lead experience. Common materials and fabrication methods are evident. In both cases, excellent fatigue performance is needed. Many of the testing methods applied to neurological leads have been adapted from cardiovascular lead tests, such as those specified in BS EN 455021. However, evidence suggests there are significant differences in the mechanical environments in which these two types of leads must perform. The purpose of this study was to more clearly delineate the differences in these environments, and to more appropriately align cyclic testing methods applied to neurological leads with the actual use conditions associated with the clinical environment.
机译:通过Norm Shealy植入第一个装置的神经系统对治疗慢性疼痛的电气刺激治疗慢性疼痛的可行性,从1967年常规。从那时起,神经刺激已成为疼痛管理的标准治疗。 神经系统刺激装置通过使用神经铅从刺激器递送到所需部位的信号。铅导体由抗疲劳抗性合金构成,并且包括多个电路,以沿着沿着小于1英寸至大于2英寸的引线的一部分提供刺激。 神经系统铅开发依赖于心血管铅经验。常见的材料和制造方法是显而易见的。在这两种情况下,需要出色的疲劳性能。许多应用于神经系统引线的测试方法已经从心血管铅测试调整,例如BS EN 455021中规定的那些。然而,证据表明,这两种引线必须执行的机械环境存在显着差异。本研究的目的是更清楚地描绘这些环境中的差异,并且更适当地对准应用于神经系统引线的循环测试方法,其实际使用条件与临床环境相关。

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