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经 Utah 斜形电极阵列的神经内刺激诱发的人类截肢者的多种皮肤和本体感觉手感觉的可分辨性。

Discriminability of multiple cutaneous and proprioceptive hand percepts evoked by intraneural stimulation with Utah slanted electrode arrays in human amputees.

机构信息

Avanos Medical, Alpharetta, GA, 30004, USA.

Division of Physical Medicine and Rehabilitation, University of Utah, Salt Lake City, UT, 84112, USA.

出版信息

J Neuroeng Rehabil. 2021 Jan 21;18(1):12. doi: 10.1186/s12984-021-00808-4.

Abstract

BACKGROUND

Electrical stimulation of residual afferent nerve fibers can evoke sensations from a missing limb after amputation, and bionic arms endowed with artificial sensory feedback have been shown to confer functional and psychological benefits. Here we explore the extent to which artificial sensations can be discriminated based on location, quality, and intensity.

METHODS

We implanted Utah Slanted Electrode Arrays (USEAs) in the arm nerves of three transradial amputees and delivered electrical stimulation via different electrodes and frequencies to produce sensations on the missing hand with various locations, qualities, and intensities. Participants performed blind discrimination trials to discriminate among these artificial sensations.

RESULTS

Participants successfully discriminated cutaneous and proprioceptive sensations ranging in location, quality and intensity. Performance was significantly greater than chance for all discrimination tasks, including discrimination among up to ten different cutaneous location-intensity combinations (15/30 successes, p < 0.0001) and seven different proprioceptive location-intensity combinations (21/40 successes, p < 0.0001). Variations in the site of stimulation within the nerve, via electrode selection, enabled discrimination among up to five locations and qualities (35/35 successes, p < 0.0001). Variations in the stimulation frequency enabled discrimination among four different intensities at the same location (13/20 successes, p < 0.0005). One participant also discriminated among individual stimulation of two different USEA electrodes, simultaneous stimulation on both electrodes, and interleaved stimulation on both electrodes (20/24 successes, p < 0.0001).

CONCLUSION

Electrode location, stimulation frequency, and stimulation pattern can be modulated to evoke functionally discriminable sensations with a range of locations, qualities, and intensities. This rich source of artificial sensory feedback may enhance functional performance and embodiment of bionic arms endowed with a sense of touch.

摘要

背景

刺激残留在的传入神经纤维可以在截肢后唤起缺失肢体的感觉,并且具有人工感觉反馈的仿生手臂已被证明具有功能和心理上的益处。在这里,我们探讨了基于位置、质量和强度来区分人工感觉的程度。

方法

我们将犹他倾斜电极阵列(USEA)植入三名桡骨截肢者的手臂神经中,并通过不同的电极和频率进行电刺激,以在缺失的手上产生具有各种位置、质量和强度的感觉。参与者进行盲区分试验,以区分这些人工感觉。

结果

参与者成功区分了位于不同位置、具有不同质量和强度的皮肤感觉和本体感觉。所有的区分任务的表现都显著高于随机水平,包括对多达十种不同的皮肤位置-强度组合(15/30 次成功,p<0.0001)和七种不同的本体感觉位置-强度组合(21/40 次成功,p<0.0001)的区分。通过电极选择,在神经内刺激部位的变化可以区分多达五个位置和质量(35/35 次成功,p<0.0001)。刺激频率的变化可以在同一位置区分四个不同的强度(13/20 次成功,p<0.0005)。一名参与者还区分了两个不同 USEA 电极的单独刺激、两个电极的同时刺激以及两个电极的交错刺激(20/24 次成功,p<0.0001)。

结论

电极位置、刺激频率和刺激模式可以调节,以产生具有各种位置、质量和强度的功能可区分的感觉。这种丰富的人工感觉反馈源可能会增强具有触觉的仿生手臂的功能性能和体现感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f40/7819250/f1c6dba7b7f1/12984_2021_808_Fig1_HTML.jpg

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