Suppr超能文献

听觉神经的电刺激:II. 刺激波形对单纤维反应特性的影响。

Electrical stimulation of the auditory nerve: II. Effect of stimulus waveshape on single fibre response properties.

作者信息

Shepherd R K, Javel E

机构信息

Department of Otolaryngology, University of Melbourne, Parkville, Vic., Australia.

出版信息

Hear Res. 1999 Apr;130(1-2):171-88. doi: 10.1016/s0378-5955(99)00011-8.

Abstract

To investigate the generation of action potentials by electrical stimulation we studied the response of auditory nerve fibres (ANFs) to a variety of stimulus waveforms. Current pulses were presented to longitudinal bipolar scala tympani electrodes implanted in normal and deafened cochleae. Capacitively coupled monophasic current pulses evoked single ANF responses that were more sensitive to one phase (the 'excitatory' phase) than the other. Anodic pulses produced a significantly shorter mean latency compared with cathodic pulses, indicating that their site for spike initiation is located more centrally along the ANF. The fine temporal structure of ANF responses to biphasic pulses appeared similar to that evoked by monophasic pulses. An excitatory monophasic pulse evoked a significantly lower threshold than a biphasic current pulse having the same polarity and duration leading phase, i.e. the addition of a second phase leads to an increase in threshold. Increasing the temporal separation of the two phases of a biphasic pulse resulted in a moderate reduction in threshold which approached that of an excitatory monophasic pulse for interphase gaps > 100 micros. Greater threshold reductions were observed with narrower current pulses. There was a systematic reduction in threshold with increasing pulse width for biphasic current pulses, reflecting the general charge-dependent properties of ANFs for narrow pulse widths. Chopped biphasic current pulses, which uniformly delivered multiple packets of charge (2 x 30 micros, 3 x 20 micros or 6 x 10 micros) with the same polarity over a 120 micros period, followed by a similar series in the reverse polarity, demonstrated the ability of the neural membrane to integrate sub-threshold packets of charge to achieve depolarisation. Moreover, thresholds for these current pulses were approximately 1.5 dB lower than 60 micros/phase biphasic current pulses with no interphase gap. Finally, stimulation using charge-balanced triphasic and asymmetric current pulses produced systematic changes in threshold and latency consistent with the charge-dependent properties of ANFs. These findings provide insight into the mechanisms underlying the generation of action potentials using electrical stimuli. Moreover, a number of these novel stimuli may have potential clinical application.

摘要

为了研究电刺激引发动作电位的情况,我们研究了听神经纤维(ANFs)对各种刺激波形的反应。将电流脉冲施加于植入正常和致聋耳蜗的纵向双极鼓阶电极上。电容耦合单相位电流脉冲诱发的单个ANF反应对一个相位(“兴奋”相位)比另一个相位更敏感。与阴极脉冲相比,阳极脉冲产生的平均潜伏期明显更短,这表明其引发动作电位的部位沿ANF更靠近中心。ANF对双相脉冲反应的精细时间结构似乎与单相位脉冲诱发的相似。一个兴奋性单相位脉冲诱发的阈值明显低于具有相同极性和持续时间的领先相位的双相电流脉冲,即添加第二个相位会导致阈值增加。增加双相脉冲两个相位的时间间隔会导致阈值适度降低,对于相间间隙>100微秒的情况,接近兴奋性单相位脉冲的阈值。电流脉冲越窄,阈值降低越大。对于双相电流脉冲,随着脉冲宽度增加,阈值有系统性降低,这反映了ANF对窄脉冲宽度的一般电荷依赖性特性。斩波双相电流脉冲在120微秒的时间段内以相同极性均匀地传递多个电荷包(2×30微秒、3×20微秒或6×10微秒),随后以相反极性进行类似系列,证明了神经膜整合亚阈值电荷包以实现去极化的能力。此外,这些电流脉冲的阈值比无相间间隙的60微秒/相位双相电流脉冲低约1.5分贝。最后,使用电荷平衡的三相和不对称电流脉冲进行刺激会导致阈值和潜伏期发生系统性变化,这与ANF的电荷依赖性特性一致。这些发现为使用电刺激产生动作电位的潜在机制提供了见解。此外,这些新型刺激中的一些可能具有潜在的临床应用价值。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验