Related Experiment Video
Updated: Jan 20, 2026

Using Fiberless, Wearable fNIRS to Monitor Brain Activity in Real-world Cognitive Tasks
Published on: December 2, 2015
Wearable-Based Monitoring of Autonomic and Gastrointestinal Function in Disorders of Gut-Brain Interaction: A
Fleur Veldman1, Michelle Bosman1, Ali Rezaie2
1Department of Gastroenterology-Hepatology, NUTRIM Research Institute of Nutrition and Translational Research in Metabolism, Maastricht University Medical Center, Maastricht, the Netherlands.
Background:
Autonomic nervous system (ANS) activity is implicated in the pathogenesis of disorders of gut-brain interaction (DGBI). Technological advances enable more accurate investigation of ANS function.
Aim:
This study aimed to evaluate the clinical utility of wearable devices in monitoring autonomic and gastrointestinal (GI) function in DGBI.
Methods:
A systematic search identified studies in adults with DGBI using wearables to assess heart rate variability (HRV), sleep, skin conductance, or gastric myoelectric activity as clinical readouts for ANS and GI function. The review provides an overview of available devices, while the meta-analysis evaluates consistency in detecting differences between DGBI and healthy controls (HCs). Associations between autonomic function and GI symptom severity were explored. Methodological quality was assessed using the Cochrane risk of bias tool and ROBINS-I. Meta-analyses used random-effects models with standardized mean differences (SMDs).
Results:
Thirty-six studies (3 RCTs, 33 observational) involving 3986 DGBI patients were included (HRV: n = 16, sleep: n = 7, gastric myoelectric activity: n = 14, skin conductance: n = 0). Meta-analyses showed lower Root Mean Square of Successive Differences (SMD = -0.503, SE 0.189, 95% CI [-0.873, -0.132]) and percentage of successive RR intervals differing by > 50 ms (SMD = -0.430, SE 0.176, 95% CI [-0.775, -0.085]), reflecting HRV alterations in DGBI versus HCs. No consistent differences were found for other metrics, except normal gastric slow waves (SMD = -0.722, SE 0.216, 95% CI [-1.146, -0.298]). Heterogeneous ANS-symptom associations precluded definitive conclusions.
Conclusions:
Wearables show potential for detecting altered ANS and GI function in DGBI, particularly via HRV. Result variability highlights need for further research to confirm accuracy and clinical utility.
More Related Videos
Related Concept Videos
10:07Using Fiberless, Wearable fNIRS to Monitor Brain Activity in Real-world Cognitive Tasks
06:34A Single-Channel and Non-Invasive Wearable Brain-Computer Interface for Industry and Healthcare
Disorders of the Autonomic Nervous System
Raynaud's disease, also known as Raynaud's...
10:17Laboratory Protocol for Genetic Gut Content Analyses of Aquatic Macroinvertebrates Using Group-specific rDNA Primers
Gastrointestinal Motility Disorders
08:15Gastrointestinal Motility Monitor (GIMM)

