Maciejasz Paweł, Badia Jordi, Boretius Tim, Andreu David, Stieglitz Thomas, Jensen Winnie, Navarro Xavier, Guiraud David
DEMAR Team, LIRMM, INRIA, University of Montpellier 2, Montpellier, France,
Med Biol Eng Comput. 2015 Apr;53(4):371-9. doi: 10.1007/s11517-015-1244-4. Epub 2015 Feb 6.
The number of devices for electrical stimulation of nerve fibres implanted worldwide for medical applications is constantly increasing. Stimulation charge is one of the most important parameters of stimulation. High stimulation charge may cause tissue and electrode damage and also compromise the battery life of the electrical stimulators. Therefore, the objective of minimizing stimulation charge is an important issue. Delaying the second phase of biphasic stimulation waveform may decrease the charge required for fibre activation, but its impact on stimulation selectivity is not known. This information is particularly relevant when transverse intrafascicular multichannel electrode (TIME) is used, since it has been designed to provide for high selectivity. In this in vivo study, the rat sciatic nerve was electrically stimulated using monopolar and bipolar configurations with TIME. The results demonstrated that the inclusion of a 100-μs delay between the cathodic and the anodic phase of the stimulus allows to reduce charge requirements by around 30 %, while only slightly affecting stimulation selectivity. This study shows that adding a delay to the typical stimulation waveform significantly ([Formula: see text]) reduces the charge required for nerve fibres activation. Therefore, waveforms with the delayed discharge phase are more suitable for electrical stimulation of nerve fibres.
全球范围内用于医疗应用的神经纤维电刺激设备数量在不断增加。刺激电荷量是刺激的最重要参数之一。高刺激电荷量可能会导致组织和电极损伤,还会缩短电刺激器的电池寿命。因此,将刺激电荷量降至最低是一个重要问题。延迟双相刺激波形的第二阶段可能会降低纤维激活所需的电荷量,但其对刺激选择性的影响尚不清楚。当使用横向束内多通道电极(TIME)时,这一信息尤为重要,因为该电极旨在实现高选择性。在这项体内研究中,使用单极和双极配置的TIME对大鼠坐骨神经进行电刺激。结果表明,在刺激的阴极和阳极阶段之间加入100微秒的延迟,可使电荷量需求降低约30%,同时对刺激选择性的影响很小。这项研究表明,在典型刺激波形中增加延迟可显著([公式:见正文])降低神经纤维激活所需的电荷量。因此,具有延迟放电阶段的波形更适合用于神经纤维的电刺激。