Dennis Robert G, Dow Douglas E, Faulkner John A
Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI 48109-2125, USA.
Med Eng Phys. 2003 Apr;25(3):239-53. doi: 10.1016/s1350-4533(02)00193-5.
The purposes of the present study were (1) to develop an implantable device capable of being pre-programmed to generate a protocol of chronic contractions in denervated hind-limb muscles of rats, and (2) to verify the design by implanting the stimulators for five weeks in rats to identify a protocol of stimulation that maintains muscle mass and maximum force in stimulated-denervated extensor digitorum longus (EDL) muscles. This implantable stimulator system did not hinder animal movement or hygiene, and enabled the animals to be housed in regular animal facilities, since neither external equipment nor an externally generated magnetic field was required. The pre-programmable microcontroller allows detailed basic research into the cellular and tissue response to different stimulation protocols. The micropower design of the battery powered device enabled chronic stimulation of denervated EDL muscles for the five weeks of this initial study. Stimulation protocols of 9-11 V pulse amplitude, 0.4 ms bipolar pulse width, 100 Hz, 20 pulses per contraction, and 100 or 300 contractions generated per day maintained muscle mass and maximum force in denervated EDL muscles of rats at values near control values for innervated muscles.
(1)开发一种可植入装置,该装置能够预先编程,以在大鼠失神经支配的后肢肌肉中产生慢性收缩协议;(2)通过在大鼠体内植入刺激器五周来验证该设计,以确定一种刺激协议,该协议能维持受刺激的失神经支配的趾长伸肌(EDL)的肌肉质量和最大力量。这种可植入刺激器系统不妨碍动物活动或卫生,并且由于既不需要外部设备也不需要外部产生的磁场,所以能使动物饲养在常规动物设施中。预可编程微控制器允许对细胞和组织对不同刺激协议的反应进行详细的基础研究。电池供电设备的微功耗设计使得在这项初步研究的五周时间里能够对失神经支配的EDL肌肉进行慢性刺激。9 - 11V脉冲幅度、0.4ms双极脉冲宽度、100Hz、每次收缩20个脉冲以及每天产生100或300次收缩的刺激协议,能使大鼠失神经支配的EDL肌肉的肌肉质量和最大力量维持在接近受神经支配肌肉对照值的水平。