Sahyouni Ronald, Chang David T, Moshtaghi Omid, Mahmoodi Amin, Djalilian Hamid R, Lin Harrison W
Department of Biomedical Engineering, University of California Irvine U.S.A.
Department of Otolaryngology-Head & Neck Surgery, University of California Irvine U.S.A.
Laryngoscope Investig Otolaryngol. 2017 Feb 6;2(2):80-93. doi: 10.1002/lio2.66. eCollection 2017 Apr.
Permanent injury to the cranial nerves can often result in a substantial reduction in quality of life. Novel and innovative interventions can help restore form and function in nerve paralysis, with bioelectric interfaces among the more promising of these approaches. The foreign body response is an important consideration for any bioelectric device as it influences the function and effectiveness of the implant. The purpose of this review is to describe tissue and functional effects of chronic neural implantation among the different categories of neural implants and highlight advances in peripheral and cranial nerve stimulation. : PubMed, IEEE, and Web of Science literature search. : A review of the current literature was conducted to examine functional and histologic effects of bioelectric interfaces for neural implants.
Bioelectric devices can be characterized as intraneural, epineural, perineural, intranuclear, or cortical depending on their placement relative to nerves and neuronal cell bodies. Such devices include nerve-specific stimulators, neuroprosthetics, brainstem implants, and deep brain stimulators. Regardless of electrode location and interface type, acute and chronic histological, macroscopic and functional changes can occur as a result of both passive and active tissue responses to the bioelectric implant.
A variety of chronically implantable electrodes have been developed to treat disorders of the peripheral and cranial nerves, to varying degrees of efficacy. Consideration and mitigation of detrimental effects at the neural interface with further optimization of functional nerve stimulation will facilitate the development of these technologies and translation to the clinic.
颅神经的永久性损伤常常会导致生活质量大幅下降。新颖且创新的干预措施有助于恢复神经麻痹的形态和功能,生物电接口是这些方法中较有前景的一种。对于任何生物电设备而言,异物反应都是一个重要的考量因素,因为它会影响植入物的功能和有效性。本综述的目的是描述不同类别的神经植入物中慢性神经植入的组织和功能效应,并突出外周和颅神经刺激方面的进展。检索来源:PubMed、IEEE和科学网文献数据库。检索方法:对当前文献进行综述,以研究神经植入物生物电接口的功能和组织学效应。
根据生物电设备相对于神经和神经元细胞体的位置,可将其分为神经内、神经外膜、神经周、神经核内或皮质类。此类设备包括神经特异性刺激器、神经假体、脑干植入物和深部脑刺激器。无论电极位置和接口类型如何,生物电植入物的被动和主动组织反应都会导致急性和慢性组织学、宏观和功能变化。
已开发出多种可长期植入的电极来治疗外周和颅神经疾病,疗效各不相同。通过进一步优化功能性神经刺激来考虑并减轻神经界面的有害影响,将有助于这些技术的发展并转化应用于临床。
3级。