Boyer S, Sawan M, Abdel-Gawad M, Robin S, Elhilali M M
Department of Electrical and Computer Engineering, Ecole Polytechnique de Montréal, QC, Canada.
IEEE Trans Rehabil Eng. 2000 Dec;8(4):464-70. doi: 10.1109/86.895949.
Among the treatments to enhance the bladder voiding, the sacral roots neurostimulation is one of the most promising techniques. The electrostimulation of sacral nerves provokes a simultaneous contraction of the detrusor muscle as well as the external urethral sphincter (EUS). A new simplified-architecture implantable stimulator with its wireless controller have been designed to investigate high-frequency inhibition stimulation strategies. This innovative technique based on high-frequency inhibition reduces sphincter activity during stimulation. Low-frequency current pulses also applied to the sacral roots induces contraction of the detrusor muscle resulting in low pressure voiding. Chronic experiments were carried out on ten male mongrel paraplegic dogs. One cuff electrode was implanted along with each stimulator for eight months. The animals were stimulated twice a day using the prototypes of our implantable selective stimulator while voided and residual urine volume were measured during the procedure. These experiments revealed that the proposed stimulation strategy enhances bladder voiding by more than 50% in comparison with low-frequency only stimulation. The residual urine volume was reduced to an average of 9% and low pressure micturition was achieved as shown by weekly cystourethrogram.
在增强膀胱排尿的治疗方法中,骶神经根神经刺激是最有前景的技术之一。骶神经的电刺激会引发逼尿肌以及尿道外括约肌(EUS)同时收缩。一种带有无线控制器的新型简化架构植入式刺激器已被设计出来,用于研究高频抑制刺激策略。这种基于高频抑制的创新技术在刺激过程中会降低括约肌活动。施加到骶神经根的低频电流脉冲也会诱发逼尿肌收缩,从而实现低压排尿。对十只雄性杂种截瘫犬进行了慢性实验。每个刺激器都植入了一个袖带电极,持续八个月。每天使用我们的植入式选择性刺激器原型对动物进行两次刺激,同时在操作过程中测量排尿量和残余尿量。这些实验表明,与仅进行低频刺激相比,所提出的刺激策略可使膀胱排尿增强超过50%。残余尿量平均减少到9%,并且通过每周的膀胱尿道造影显示实现了低压排尿。