Deakin University School of Engineering Waurn Ponds Victoria 3216 Australia.
Mayo Clinic Department of Psychiatry and Psychology MN Rochester 55905 USA.
IEEE J Transl Eng Health Med. 2013 Jun 4;2:1500109. doi: 10.1109/JTEHM.2013.2264093. eCollection 2013.
Deep brain stimulation has emerged as an effective medical procedure that has therapeutic efficacy in a number of neuropsychiatric disorders. Preclinical research involving laboratory animals is being conducted to study the principles, mechanisms, and therapeutic effects of deep brain stimulation. A bottleneck is, however, the lack of deep brain stimulation devices that enable long term brain stimulation in freely moving laboratory animals. Most of the existing devices employ complex circuitry, and are thus bulky. These devices are usually connected to the electrode that is implanted into the animal brain using long fixed wires. In long term behavioral trials, however, laboratory animals often need to continuously receive brain stimulation for days without interruption, which is difficult with existing technology. This paper presents a low power and lightweight portable microdeep brain stimulation device for laboratory animals. Three different configurations of the device are presented as follows: 1) single piece head mountable; 2) single piece back mountable; and 3) two piece back mountable. The device can be easily carried by the animal during the course of a clinical trial, and that it can produce non-stop stimulation current pulses of desired characteristics for over 12 days on a single battery. It employs passive charge balancing to minimize undesirable effects on the target tissue. The results of bench, in-vitro, and in-vivo tests to evaluate the performance of the device are presented.
脑深部刺激已成为一种有效的医疗程序,在许多神经精神疾病中具有治疗效果。正在进行涉及实验室动物的临床前研究,以研究脑深部刺激的原理、机制和治疗效果。然而,存在一个瓶颈,即缺乏能够在自由活动的实验室动物中进行长期脑刺激的深部脑刺激设备。现有的大多数设备都采用复杂的电路,因此体积庞大。这些设备通常通过长的固定电线连接到植入动物大脑的电极。然而,在长期行为试验中,实验室动物通常需要连续多天不间断地接受脑刺激,这在现有技术下很难实现。本文提出了一种用于实验室动物的低功耗、轻量级便携式微脑深部刺激装置。该设备有三种不同的配置:1)单个头部可安装;2)单个背部可安装;3)两个背部可安装。该设备可以在临床试验过程中很容易地被动物携带,并且可以在单个电池上连续 12 天以上产生所需特性的不间断刺激电流脉冲。它采用被动电荷平衡来最小化对目标组织的不良影响。介绍了用于评估设备性能的台架、体外和体内测试的结果。