IEEE Trans Biomed Eng. 2019 Oct;66(10):2761-2767. doi: 10.1109/TBME.2019.2895575. Epub 2019 Jan 28.
Haptic perception is critical for prosthetic users to control their prosthetic hand intuitively. In this study, we seek to evaluate the haptic perception evoked from concurrent stimulation trains through multiple channels using transcutaneous nerve stimulation.
A 2 × 8 electrode grid was used to deliver current to the median and ulnar nerves in the upper arm. Different electrodes were first selected to activate the sensory axons, which can elicit sensations at different locations of the hand. Charge-balanced bipolar stimulation was then delivered to two sets of electrodes concurrently with a phase delay (dual stimulation) to determine whether the evoked sensation can be constructed from sensations of single stimulation delivered separately at different locations (single stimulation) along the electrode grid. The temporal delay between the two stimulation trains was altered to evaluate potential interference. The short-term stability of the haptic sensation within a testing session was also evaluated.
The evoked sensation during dual stimulation was largely a direct summation of the sensation from single stimulations. The delay between the two stimulation locations had minimal effect on the evoked sensations, which was also stable over repeated testing within a session.
Our results indicated that the haptic sensations at different regions of the hand can be constructed by combining the response from multiple stimulation trains directly. The interference between stimulations were minimal.
The outcomes will allow us to construct specific haptic sensation patterns when the prosthesis interacts with different objects, which may help improve user embodiment of the prosthesis.
触觉感知对于假肢使用者直观地控制假肢至关重要。本研究旨在通过经皮神经电刺激评估通过多个通道同时刺激产生的触觉感知。
使用 2×8 电极网格向上臂的正中神经和尺神经传递电流。首先选择不同的电极来激活感觉轴突,这些轴突可以在手的不同部位引起感觉。然后,使用平衡双极刺激同时向两组电极发送刺激,同时施加相位延迟(双刺激),以确定从沿电极网格在不同位置分别单独发送的单刺激产生的感觉是否可以构建出诱发的感觉(单刺激)。改变两个刺激串之间的时间延迟以评估潜在的干扰。还评估了测试过程中触觉感觉的短期稳定性。
双刺激期间诱发的感觉在很大程度上是单刺激感觉的直接总和。两个刺激位置之间的延迟对诱发的感觉影响很小,并且在一个测试会话内的重复测试中也很稳定。
我们的结果表明,通过直接组合来自多个刺激串的响应,可以构建手部不同区域的触觉感觉。刺激之间的干扰最小。
这些结果将允许我们在假体与不同物体相互作用时构建特定的触觉感觉模式,这可能有助于提高使用者对假体的体现。