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Updated: Apr 25, 2026

Autonomic Function Following Concussion in Youth Athletes: An Exploration of Heart Rate Variability Using 24-hour Recording Methodology
Published on: September 21, 2018
Heart rate variability interventions for concussion and rehabilitation
Robert L Conder1, Alanna A Conder2
1Department of Sports Neuropsychology, Carolina Neuropsychological Service Raleigh, NC, USA.
Insights
Heart rate variability (HRV) is crucial for health, linking the body and brain. Low HRV indicates problems, while optimal HRV enhances cognitive function and emotional regulation, aiding recovery from concussion.
Area of Science:
- Cardiovascular Physiology
- Neuroscience
- Sports Medicine
Background:
- Heart rate variability (HRV) is a key indicator of cardiovascular health and autonomic nervous system (ANS) function.
- Reduced HRV is linked to poor health outcomes, while optimal HRV is associated with enhanced cognitive and emotional regulation.
- Concussions disrupt brain connectivity, cardiac function, and ANS balance, contributing to post-concussive syndrome (PCS).
Purpose of the Study:
- To review the pathological impact of reduced HRV on athletic performance.
- To examine the cardiovascular and cerebrovascular aspects of concussion and PCS.
- To explore HRV biofeedback (HRV BFB) as a treatment for concussion and a tool for cognitive enhancement.
Main Methods:
- Literature review of HRV, concussion pathophysiology, and HRV BFB interventions.
- Analysis of existing research and case studies on HRV BFB for concussion rehabilitation.
- Exploration of HRV BFB's role in enhancing neurocognitive performance.
Main Results:
- Reduced HRV negatively affects athletic performance and is implicated in PCS.
- HRV BFB training shows promise as an intervention for concussion and PCS.
- HRV BFB may improve cognitive functions like focus and emotional regulation relevant to peak performance and recovery.
Conclusions:
- HRV is a critical biomarker for cardiovascular and neurological health.
- HRV BFB presents a viable, underutilized therapeutic strategy for concussion and PCS.
- HRV BFB holds potential for enhancing cognitive performance and aiding rehabilitation in athletes and military personnel.
Abstract:
The study of heart rate variability (HRV) has emerged as an essential component of cardiovascular health, as well as a physiological mechanism by which one can increase the interactive communication between the cardiac and the neurocognitive systems (i.e., the body and the brain). It is well-established that lack of HRV implies cardiopathology, morbidity, reduced quality-of-life, and precipitous mortality. On the positive, optimal HRV has been associated with good cardiovascular health, autonomic nervous system (ANS) control, emotional regulation, and enhanced neurocognitive processing. In addition to health benefits, optimal HRV has been shown to improve neurocognitive performance by enhancing focus, visual acuity and readiness, and by promoting emotional regulation needed for peak performance. In concussed athletes and soldiers, concussions not only alter brain connectivity, but also alter cardiac functioning and impair cardiovascular performance upon exertion. Altered sympathetic and parasympathetic balance in the ANS has been postulated as a critical factor in refractory post concussive syndrome (PCS). This article will review both the pathological aspects of reduced HRV on athletic performance, as well as the cardiovascular and cerebrovascular components of concussion and PCS. Additionally, this article will review interventions with HRV biofeedback (HRV BFB) training as a promising and underutilized treatment for sports and military-related concussion. Finally, this article will review research and promising case studies pertaining to use of HRV BFB for enhancement of cognition and performance, with applicability to concussion rehabilitation.
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