微刺激
神经假体
神经工程
神经假体
无线
生物医学工程
刺激(心理学)
计算机科学
脊髓
脑植入物
神经科学
刺激
工程类
电信
人工智能
生物
心理学
心理治疗师
作者
Mesut Şahin,Victor Pikov
标识
DOI:10.1615/critrevbiomedeng.v39.i1.50
摘要
One of the roadblocks in the field of neural prosthetics is the lack of microelectronic devices for neural stimulation that can last a lifetime in the central nervous system. Wireless multi-electrode arrays are being developed to improve the longevity of implants by eliminating the wire interconnects as well as the chronic tissue reactions due to the tethering forces generated by these wires. An area of research that has not been sufficiently investigated is a simple single-channel passive microstimulator that can collect the stimulus energy that is transmitted wirelessly through the tissue and immediately convert it into the stimulus pulse. For example, many neural prosthetic approaches to intraspinal microstimulation require only a few channels of stimulation. Wired spinal cord implants are not practical for human subjects because of the extensive flexions and rotations that the spinal cord experiences. Thus, intraspinal microstimulation may be a pioneering application that can benefit from submillimeter-size floating stimulators. Possible means of energizing such a floating microstimulator, such as optical, acoustic, and electromagnetic waves, are discussed.
科研通智能强力驱动
Strongly Powered by AbleSci AI