Ng Kevin K W, So Alwin, Fang Jun Yi, Birznieks Ingvars, Vickery Richard M
Center for Social and Affective Neuroscience, Department of Biomedical and Clinical Sciences, Linköping University, Linköping, Sweden.
School of Biomedical Sciences, UNSW Sydney, Sydney, NSW, Australia.
Front Neurosci. 2024 Jun 4;18:1125597. doi: 10.3389/fnins.2024.1125597. eCollection 2024.
In neural prostheses, intensity modulation of a single channel (i.e., through a single stimulating electrode) has been achieved by increasing the magnitude or width of each stimulation pulse, which risks eliciting pain or paraesthesia; and by changing the stimulation rate, which leads to concurrent changes in perceived frequency. In this study, we sought to render a perception of tactile intensity and frequency independently, by means of temporal pulse train patterns of fixed magnitude, delivered non-invasively. Our psychophysical study exploits a previously discovered frequency coding mechanism, where the perceived frequency of stimulus pulses grouped into periodic bursts depends on the duration of the inter-burst interval, rather than the mean pulse rate or periodicity. When electrical stimulus pulses were organised into bursts, perceived intensity was influenced by the number of pulses within a burst, while perceived frequency was determined by the time between the end of one burst envelope and the start of the next. The perceived amplitude was modulated by 1.6× while perceived frequency was varied independently by 2× within the tested range (20-40 Hz). Thus, the sensation of intensity might be controlled independently from frequency through a single stimulation channel without having to vary the injected electrical current. This can form the basis for improving strategies in delivering more complex and natural sensations for prosthetic hand users.
在神经假体中,通过增加每个刺激脉冲的幅度或宽度来实现单通道(即通过单个刺激电极)的强度调制,这有引发疼痛或感觉异常的风险;以及通过改变刺激速率,这会导致感知频率同时发生变化。在本研究中,我们试图通过固定幅度的时间脉冲序列模式,以非侵入性方式独立呈现触觉强度和频率的感知。我们的心理物理学研究利用了先前发现的频率编码机制,其中分组为周期性脉冲串的刺激脉冲的感知频率取决于脉冲串间隔的持续时间,而不是平均脉冲率或周期性。当电刺激脉冲被组织成脉冲串时,感知强度受脉冲串内脉冲数量的影响,而感知频率由一个脉冲串包络的结束与下一个脉冲串的开始之间的时间决定。在测试范围内(20 - 40 Hz),感知幅度被调制了1.6倍,而感知频率独立变化了2倍。因此,强度感觉可以通过单个刺激通道独立于频率进行控制,而无需改变注入的电流。这可为改善为假肢使用者提供更复杂和自然感觉的策略奠定基础。