Kiourti Asimina, Lee Cedric W L, Chae Junseok, Volakis John L
IEEE Trans Biomed Eng. 2016 Jan;63(1):131-7. doi: 10.1109/TBME.2015.2458583. Epub 2015 Jul 20.
We propose a novel wireless fully passive neural recording device for unobtrusive neuropotential monitoring. Previous work demonstrated the feasibility of monitoring emulated brain signals in a wireless fully passive manner. In this paper, we propose a novel realistic recorder that is significantly smaller and much more sensitive.
The proposed recorder utilizes a highly efficient microwave backscattering method and operates without any formal power supply or regulating elements. Also, no intracranial wires or cables are required. In-vitro testing is performed inside a four-layer head phantom (skin, bone, gray matter, and white matter).
Compared to our former implementation, the neural recorder proposed in this study has the following improved features: 1) 59% smaller footprint, 2) up to 20-dB improvement in neuropotential detection sensitivity, and 3) encapsulation in biocompatible polymer.
For the first time, temporal emulated neuropotentials as low as 63 μVpp can be detected in a wireless fully passive manner. Remarkably, the high-sensitivity achieved in this study implies reading of most neural signals generated by the human brain.
The proposed recorder brings forward transformational possibilities in wireless fully passive neural detection for a very wide range of applications (e.g., epilepsy, Alzheimer's, mental disorders, etc.).
我们提出了一种新型的无线全被动神经记录装置,用于进行无创神经电位监测。先前的研究已经证明了以无线全被动方式监测模拟脑信号的可行性。在本文中,我们提出了一种新型的实用记录器,其尺寸显著更小且灵敏度更高。
所提出的记录器采用了一种高效的微波反向散射方法,无需任何形式的电源或调节元件即可运行。此外,无需颅内电线或电缆。在一个四层头部模型(皮肤、骨骼、灰质和白质)内进行体外测试。
与我们之前的设计相比,本研究中提出的神经记录器具有以下改进特性:1)占地面积减小59%,2)神经电位检测灵敏度提高多达20分贝,3)封装在生物相容性聚合物中。
首次能够以无线全被动方式检测低至63μVpp的瞬态模拟神经电位。值得注意的是,本研究中实现的高灵敏度意味着能够读取人脑中产生的大多数神经信号。
所提出的记录器为无线全被动神经检测在非常广泛的应用(如癫痫、阿尔茨海默病、精神障碍等)中带来了变革性的可能性。