Department of Biomedical Engineering, School of Electrical Engineering, Iran Neural Technology Research Center, Iran University of Science and Technology (IUST), Tehran, Iran.
Sci Rep. 2021 Feb 9;11(1):3424. doi: 10.1038/s41598-021-82933-7.
Individuals with spinal cord injury or neurological disorders have problems in voiding function due to the dyssynergic contraction of the urethral sphincter. Here, we introduce a closed-loop control of intraspinal microstimulation (ISMS) for efficient bladder voiding. The strategy is based on asynchronous two-electrode ISMS with combined pulse-amplitude and pulse-frequency modulation without requiring rhizotomy, neurotomy, or high-frequency blocking. Intermittent stimulation is alternately applied to the two electrodes that are implanted in the S2 lateral ventral horn and S1 dorsal gray commissure, to excite the bladder motoneurons and to inhibit the urethral sphincter motoneurons. Asynchronous stimulation would lead to reduce the net electric field and to maximize the selective stimulation. The proposed closed-loop system attains a highly voiding efficiency of 77.2-100%, with an average of 91.28 ± 8.4%. This work represents a promising approach to the development of a natural and robust motor neuroprosthesis device for restoring bladder functions.
脊髓损伤或神经障碍的个体由于尿道括约肌的协同收缩而出现排尿功能障碍。在这里,我们介绍了一种基于异步双电极脊髓内微刺激(ISMS)的高效膀胱排空的闭环控制策略。该策略基于无需脊切断术、神经切断术或高频阻断的组合脉冲幅度和脉冲频率调制的异步双电极 ISMS。间歇性刺激交替施加到植入 S2 侧腹角和 S1 背侧灰质连合的两个电极上,以兴奋膀胱运动神经元并抑制尿道括约肌运动神经元。异步刺激会导致净电场减小,并最大限度地提高选择性刺激。所提出的闭环系统达到了 77.2-100%的高度排空效率,平均为 91.28±8.4%。这项工作代表了开发用于恢复膀胱功能的自然和强大运动神经假体装置的一种有前途的方法。