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可变模式的阴部神经刺激可改善反射性膀胱激活。

Variable patterned pudendal nerve stimuli improves reflex bladder activation.

作者信息

Bruns Tim M, Bhadra Narendra, Gustafson Kenneth J

机构信息

Biomedical Engineering Department, Case Western Reserve University, and Louis Stokes Cleveland Department of Veterans Affairs Medical Center, Cleveland, OH 44106, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2008 Apr;16(2):140-8. doi: 10.1109/TNSRE.2007.914460.

Abstract

We evaluated variable patterns of pudendal nerve (PN) stimuli for reflex bladder excitation. Reflex activation of the bladder has been demonstrated previously with 20-33 Hz continuous stimulation of PN afferents. Neuronal circuits accessed by afferent mediated pathways may respond better to physiological patterned stimuli than continuous stimulation. Unilateral PN nerve cuffs were placed in neurologically intact male cats. PN stimulation (0.5-100 Hz) was performed under isovolumetric conditions at bladder volumes up to the occurrence of distension evoked reflex contractions. Stimulus evoked reflex bladder contractions were elicited in eight cats. Across all experiments, bursting of 2-10 pulses at 100-200 Hz repeated at continuous stimulation frequencies evoked significantly larger bladder responses than continuous (single pulse) stimulation (52.0+/-44.5%). Bladder excitation was also effective at 1 Hz continuous stimuli, which is lower than typically reported. Variable patterned pulse bursting resulted in greater evoked reflex bladder pressures and increased the potential stimulation parameter space for effective bladder excitation. Improved bladder excitation should increase the efficacy of neuroprostheses for bladder control.

摘要

我们评估了用于反射性膀胱兴奋的阴部神经(PN)刺激的可变模式。先前已证明,通过对PN传入神经进行20 - 33Hz的连续刺激可实现膀胱的反射性激活。与连续刺激相比,传入介导通路所涉及的神经回路可能对生理性模式刺激反应更佳。在神经功能完好的雄性猫身上放置单侧PN神经袖套。在膀胱容积达到诱发膨胀反射性收缩之前的等容条件下,进行PN刺激(0.5 - 100Hz)。在八只猫身上诱发了刺激引起的反射性膀胱收缩。在所有实验中,在连续刺激频率下重复出现的100 - 200Hz的2 - 10个脉冲的爆发所引起的膀胱反应明显大于连续(单脉冲)刺激(52.0±44.5%)。在1Hz的连续刺激下膀胱兴奋也有效,这一频率低于通常报道的频率。可变模式的脉冲爆发导致诱发的反射性膀胱压力更大,并增加了有效膀胱兴奋的潜在刺激参数空间。改善膀胱兴奋应能提高膀胱控制神经假体的功效。

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