Affiliation:
1. Cardiff University
2. University of Kent
3. Glasgow Caledonian University
4. University of Warwick
Abstract
Abstract
Objective
With an increasingly ageing population and osteoarthritis prevalence, the quantification of nociceptive signals responsible for painful movements and individual responses could lead to better treatment and monitoring solutions. Changes in electrodermal activity (EDA) can be detected via changes in skin conductance (SC) and measured using finger electrodes on a wearable sensor, providing objective information for increased physiological stress response.
Results
To provide EDA response preliminary data, this was recorded with healthy volunteers on an array of activities while receiving a noxious stimulus. This provides a defined scenario that can be utilised as protocol feasibility testing. Raw signal extraction, processing and statistical analysis was performed using mean SC values on all participant data. Extra exploratory analysis on a case study was incorporated using various decomposition tools. The application of the stimuli resulted in a 35% average increase in mean SC with considerable gender differences in SC and self-reported pain scores. Though EDA parameters are a promising tool for nociceptive response indicators, limitations including motion artifact sensitivities and lack of previous movement-based EDA published data result in restricted analysis understanding. Refined processing pipelines with signal decomposition tools will be necessary to incorporate into a protocol that quantifies nociceptive response clinically meaningfully.
Publisher
Research Square Platform LLC
Reference6 articles.
1. Decomposition of skin conductance data by means of nonnegative deconvolution;Benedek M;Psychophysiology,2010
2. Pain and Stress Detection Using Wearable Sensors and Devices-A Review;Chen J;Sens (Basel),2021
3. Fall of skin impedance and bone and joint pain;Fujita T;J Bone abd Mineral Metabolism,2001
4. Hamilton R, Holt C, Hamilton D, Jones R, Shillabeer D, Kuiper H, Sparkes J, Mason V, D. (2021). Measuring nociception in knee OA using physiological and movement responses: a proof-of-concept study. British Orthopaedic Research Society Annual Meeting, DOI: 10.1302/1358-992X.2021.16.064.
5. Comparison of skin conductance measurements and subjective pain scores in children with minor injuries;Strehle EM;Acta Paediatr,2013