Kook Geon, Lee Sung Woo, Lee Hee Chul, Cho Il-Joo, Lee Hyunjoo Jenny
School of Electrical Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.
Department of Advanced Materials Engineering, Korea Polytechnic University, Siheung 15073, Korea.
Micromachines (Basel). 2016 Oct 2;7(10):179. doi: 10.3390/mi7100179.
Developed over approximately half a century, neural probe technology is now a mature technology in terms of its fabrication technology and serves as a practical alternative to the traditional microwires for extracellular recording. Through extensive exploration of fabrication methods, structural shapes, materials, and stimulation functionalities, neural probes are now denser, more functional and reliable. Thus, applications of neural probes are not limited to extracellular recording, brain-machine interface, and deep brain stimulation, but also include a wide range of new applications such as brain mapping, restoration of neuronal functions, and investigation of brain disorders. However, the biggest limitation of the current neural probe technology is chronic reliability; neural probes that record with high fidelity in acute settings often fail to function reliably in chronic settings. While chronic viability is imperative for both clinical uses and animal experiments, achieving one is a major technological challenge due to the chronic foreign body response to the implant. Thus, this review aims to outline the factors that potentially affect chronic recording in chronological order of implantation, summarize the methods proposed to minimize each factor, and provide a performance comparison of the neural probes developed for chronic applications.
神经探针技术历经约半个世纪的发展,就其制造技术而言,如今已成为一项成熟技术,可作为传统微丝用于细胞外记录的实用替代方案。通过对制造方法、结构形状、材料和刺激功能的广泛探索,神经探针现在密度更高、功能更强且更可靠。因此,神经探针的应用不仅限于细胞外记录、脑机接口和深部脑刺激,还包括广泛的新应用,如脑图谱绘制、神经元功能恢复以及脑部疾病研究。然而,当前神经探针技术的最大局限在于长期可靠性;在急性环境中能进行高保真记录的神经探针,在长期环境中往往无法可靠地发挥作用。虽然长期生存能力对于临床应用和动物实验都至关重要,但由于植入物会引发长期异物反应,实现这一点是一项重大技术挑战。因此,本综述旨在按植入时间顺序概述可能影响长期记录的因素,总结为尽量减少每个因素而提出的方法,并对为长期应用开发的神经探针进行性能比较。