首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Neural Prostheses: Electrophysiological and Histological Evaluation of Central Nervous System Alterations Due to Long-Term Implants of Sieve Electrodes to Peripheral Nerves in Cats
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Neural Prostheses: Electrophysiological and Histological Evaluation of Central Nervous System Alterations Due to Long-Term Implants of Sieve Electrodes to Peripheral Nerves in Cats

机译:神经假体:长期将筛电极植入猫周围神经的中枢神经系统改变的电生理和组织学评估

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We have investigated the alterations that the long-term implant of sieve electrodes to the peripheral nerves could evoke in the central nervous system by studying the neural activity at various levels of the somatosensory system [the implanted nerves, the dorsal column nuclei (DCN), and the primary somatosensory cortex (SI)] up to 30 months after implantation of the electrode in the distal median nerve in adult cats. This long survival period, which could correspond to 15 years within a human lifespan, enabled us to confirm the biocompatibility of the electrode. We also performed histological and molecular studies on sections of the spinal cord, DCN, and SI and electrophysiological recordings on of DCN and SI. Although in the “implanted” regions (ipsilateral nerve, ipsilateral DCN, and contralateral SI) there was apparently a good recovery of a number of molecular markers, mostly related to local metabolism and neurotransmission in central relay structures, the expression of calcium-binding proteins in the cortex, which identifies inhibitory interneurons, remained clearly abnormal, although they were never as altered as in case of irreversible, chronic denervations. Also, prominent anatomical disorganization was detected in the normal spatial arrangement of neural clusters within the DCN. With respect to the electrical activity the “implanted side” showed minor changes in response latency, intensity, and somatotopy, compared to control recordings. These findings show that central sensory-processing structures achieve fair, but not complete, levels of structural and functional reorganization following chronic intraneural implants of sieve electrodes.
机译:通过研究体感系统各个层面的神经活动,我们研究了长期向周围神经植入筛电极可能在中枢神经系统中引起的变化(植入神经,背柱核(DCN),和成年猫的远端正中神经植入电极后长达30个月的初级体感皮层(SI)。这种较长的生存期(可能相当于人类寿命中的15年)使我们能够确定电极的生物相容性。我们还对脊髓,DCN和SI的切片进行了组织学和分子学研究,并对DCN和SI进行了电生理记录。尽管在“植入的”区域(同侧神经,同侧DCN和对侧SI)中,许多分子标志物的恢复良好,这主要与中央中继结构中的局部代谢和神经传递,钙结合蛋白的表达有关尽管它们从未像不可逆的慢性神经支配一样发生过改变,但皮层中能识别抑制性神经元的异常仍然明显异常。同样,在DCN内神经簇的正常空间排列中检测到明显的解剖混乱。关于电活动,与对照记录相比,“植入侧”显示出反应潜伏期,强度和体型的微小变化。这些发现表明,在慢性神经内筛电极植入后,中央感觉处理结构达到了公平但不完整的结构和功能重组水平。

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