Urdaneta Morgan E, Kunigk Nicolas G, Delgado Francisco, Otto Kevin J
Annu Int Conf IEEE Eng Med Biol Soc. 2019 Jul;2019:1809-1812. doi: 10.1109/EMBC.2019.8856579.
Intracortical microstimulation has proven to be effective in a variety of sensory applications, such as returning touch percepts to paralyzed patients. The parameters of microstimulation play an important role in the perception quality of the stimulus. Eliciting naturalistic percepts is essential for the adaptability and functionality of this technology. Compared to the typical biphasic symmetric waveforms, asymmetric waveforms enhance activation selectivity by preferentially activating cell bodies. Behavioral studies have shown that asymmetric waveforms can elicit behavioral responses, but these require higher charges than typical symmetric waveforms. Here, we investigated the effects of phase duration and waveform asymmetry for somatosensory cortex intracortical microstimulation of freely-behaving rats. Detection thresholds were obtained using a conditioned avoidance behavioral paradigm. Our results indicate that phase duration has significant effects on threshold regardless of symmetry, polarity, and phase order of the waveform. Specifically, shorter phase durations tend to elicit lower behavioral thresholds. Analogous to studies in the auditory cortex, asymmetric waveforms in which the short pulse was cathodic were more effective than those with short-anodic pulses. With short phase durations, these short-cathodic waveforms are capable of evoking behavioral responses at low charges (<; 5 nC/Phase). Altogether, these results suggest the possibility of cell body selective microstimulation at safe thresholds, as well as the potential translatability of neuromodulation parameters across distinct sensory cortical areas.
皮层内微刺激已被证明在多种感觉应用中有效,比如让瘫痪患者恢复触觉感知。微刺激的参数对刺激的感知质量起着重要作用。引发自然主义的感知对于这项技术的适应性和功能性至关重要。与典型的双相对称波形相比,非对称波形通过优先激活细胞体来增强激活选择性。行为学研究表明,非对称波形能够引发行为反应,但这些反应比典型对称波形需要更高的电荷量。在此,我们研究了自由行为大鼠体感皮层内微刺激的相位持续时间和波形不对称性的影响。使用条件性回避行为范式获得检测阈值。我们的结果表明,无论波形的对称性、极性和相位顺序如何,相位持续时间对阈值都有显著影响。具体而言,较短的相位持续时间往往会引发较低的行为阈值。与听觉皮层的研究类似,短脉冲为阴极的非对称波形比短脉冲为阳极的波形更有效。在短相位持续时间下,这些短阴极波形能够在低电荷量(<5 nC/相位)时引发行为反应。总之,这些结果表明在安全阈值下进行细胞体选择性微刺激的可能性,以及神经调节参数在不同感觉皮层区域之间潜在的可转化性。