Frederick Rebecca A, Margolis Ryan, Hoyt Kenneth, Cogan Stuart F
Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:3432-3435. doi: 10.1109/EMBC44109.2020.9176598.
Many advances have been made with imaging of implanted neural devices; however, the ability to image whole nerve samples remains limited. Further, few imaging modalities are well suited for visualizing both whole devices in vivo and individual microelectrodes within a nerve. In this study, we used micro-computed tomography (micro-CT) to evaluate Wireless Floating Microelectrode Arrays (WMFAs) implanted in rat sciatic nerve at the level of whole devices and individual electrodes. WFMAs were also used to track selective recruitment of plantar flexion and dorsiflexion of the rear paw, which was achieved by each implanted device (n=6) during chronic implantation. Evoked limb motion was correlated to end-of-study assessments using micro-CT to visualize electrode locations within the fascicular structure of the sciatic nerve. Results of this study show that micro-CT imaging can provide valuable assessments of microelectrode arrays implanted in peripheral nerves for both whole devices visualized in vivo and individual electrodes visualized in whole nerve tissue samples.Clinical relevance- This work informs the use of micro-computed tomography as a tool for correlating neural device performance with physical attributes of the implant location.
植入式神经装置的成像技术已经取得了许多进展;然而,对整个神经样本进行成像的能力仍然有限。此外,很少有成像方式适合在体内可视化整个装置以及神经内的单个微电极。在本研究中,我们使用微型计算机断层扫描(micro-CT)在整个装置和单个电极层面评估植入大鼠坐骨神经的无线漂浮微电极阵列(WMFA)。在长期植入期间,还使用WMFA追踪每一个植入装置(n = 6)实现的后爪跖屈和背屈的选择性募集。使用micro-CT在研究结束时评估坐骨神经束状结构内的电极位置,将诱发的肢体运动与之相关联。本研究结果表明,micro-CT成像能够为植入外周神经的微电极阵列提供有价值的评估,既可以在体内可视化整个装置,也可以在整个神经组织样本中可视化单个电极。临床相关性——这项工作为将微型计算机断层扫描用作一种将神经装置性能与植入位置的物理属性相关联的工具提供了依据。