From Unstable Contacts to Stable Control: A Deep Learning Paradigm for HD-sEMG in Neurorobotics

09/20/2023
by   Eion Tyacke, et al.
0

In the past decade, there has been significant advancement in designing wearable neural interfaces for controlling neurorobotic systems, particularly bionic limbs. These interfaces function by decoding signals captured non-invasively from the skin's surface. Portable high-density surface electromyography (HD-sEMG) modules combined with deep learning decoding have attracted interest by achieving excellent gesture prediction and myoelectric control of prosthetic systems and neurorobots. However, factors like pixel-shape electrode size and unstable skin contact make HD-sEMG susceptible to pixel electrode drops. The sparse electrode-skin disconnections rooted in issues such as low adhesion, sweating, hair blockage, and skin stretch challenge the reliability and scalability of these modules as the perception unit for neurorobotic systems. This paper proposes a novel deep-learning model providing resiliency for HD-sEMG modules, which can be used in the wearable interfaces of neurorobots. The proposed 3D Dilated Efficient CapsNet model trains on an augmented input space to computationally `force' the network to learn channel dropout variations and thus learn robustness to channel dropout. The proposed framework maintained high performance under a sensor dropout reliability study conducted. Results show conventional models' performance significantly degrades with dropout and is recovered using the proposed architecture and the training paradigm.

READ FULL TEXT
research
11/09/2019

XceptionTime: A Novel Deep Architecture based on Depthwise Separable Convolutions for Hand Gesture Classification

Capitalizing on the need for addressing the existing challenges associat...
research
08/24/2021

An Effective Pixel-Wise Approach for Skin Colour Segmentation Using Pixel Neighbourhood Technique

This paper presents a novel technique for skin colour segmentation that ...
research
09/09/2019

Estimating Fingertip Forces, Torques, and Local Curvatures from Fingernail Images

The study of dexterous manipulation has provided important insights in h...
research
02/02/2021

Single Model Deep Learning on Imbalanced Small Datasets for Skin Lesion Classification

Deep convolutional neural network (DCNN) models have been widely explore...
research
04/15/2021

Skin-Health Monitoring system using a Wireless Body Area Network

A new class of sensing paradigm known as lab-onskin where stretchable an...
research
01/28/2023

Rateless Autoencoder Codes: Trading off Decoding Delay and Reliability

Most of today's communication systems are designed to target reliable me...
research
12/16/2018

Non-invasive measuring method of skin temperature based on skin sensitivity index and deep learning

In human-centered intelligent building, real-time measurements of human ...

Please sign up or login with your details

Forgot password? Click here to reset