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用于脊髓内微刺激的柔性基底电极阵列。

A flexible base electrode array for intraspinal microstimulation.

出版信息

IEEE Trans Biomed Eng. 2013 Oct;60(10):2904-13. doi: 10.1109/TBME.2013.2265877. Epub 2013 Jun 5.

Abstract

In this paper, we report the development of a flexible base array of penetrating electrodes which can be used to interface with the spinal cord. A customizable and feasible fabrication protocol is described. The flexible base arrays were fabricated and implanted into surrogate cords which were elongated by 12%. The resulting strains were optically measured across the cord and compared to those associated with two types of electrodes arrays (one without a base and one with a rigid base connecting the electrodes). The deformation behavior of cords implanted with the flexible base arrays resembled the behavior of cords implanted with individual microwires that were not connected through a base. The results of the strain test were used to validate a 2-D finite element model. The validated model was used to assess the stresses induced by the electrodes of the three types of arrays on the cord, and to examine how various design parameters (thickness, base modulus, etc.,) impact the mechanical behavior of the electrode array. Rigid base arrays induced higher stresses on the cord than the flexible base arrays which in turn imposed higher stresses than the individual microwire implants. The developed flexible base array showed improvement over the rigid base array; however, its stiffness needs to be further reduced to emulate the mechanical behavior of individual microwire arrays without a base.

摘要

在本文中,我们报告了一种可穿透电极的柔性基底阵列的开发,该阵列可用于与脊髓接口。描述了一种可定制和可行的制造协议。制造了柔性基底阵列并将其植入延长了 12%的替代脊髓中。通过光学测量整个脊髓的应变,并将其与两种类型的电极阵列(一种没有基底,另一种有刚性基底将电极连接起来)相关联的应变进行比较。植入带有柔性基底阵列的脊髓的变形行为类似于未通过基底连接的单个微丝植入的脊髓的行为。应变测试的结果用于验证二维有限元模型。使用经过验证的模型评估三种类型的阵列的电极在脊髓上引起的应力,并研究各种设计参数(厚度,基底模量等)如何影响电极阵列的机械行为。刚性基底阵列在脊髓上引起的应力高于柔性基底阵列,而柔性基底阵列又高于单个微丝植入物。所开发的柔性基底阵列在刚性基底阵列的基础上有所改进;然而,需要进一步降低其刚度,以模拟没有基底的单个微丝阵列的机械行为。

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