This randomized, participant-blinded, sham-controlled crossover study aims to investigate the acute effects of different frequency applications of transcutaneous auricular vagus nerve stimulation (taVNS) on autonomic physiological responses in healthy adults. Participants will receive sham (0 Hz), 10 Hz, 25 Hz, 50 Hz, and 100 Hz taVNS in separate sessions with washout periods between visits. Heart rate variability, blood pressure, pulse rate, respiratory rate, and subjective discomfort will be assessed before and after each intervention session.
The vagus nerve is a major regulator of the parasympathetic branch of the autonomic nervous system. Transcutaneous auricular vagus nerve stimulation (taVNS) is a non-invasive neuromodulation technique applied to auricular regions innervated by the auricular branch of the vagus nerve. Although taVNS has been reported to modulate autonomic function, the acute physiological effects of different stimulation frequencies remain insufficiently characterized. This study is designed as a randomized, participant-blinded, sham-controlled crossover trial in healthy adults aged 18 to 40 years. Each participant will undergo five intervention conditions in randomized order: sham (0 Hz), 10 Hz, 25 Hz, 50 Hz, and 100 Hz taVNS. Sessions will be separated by 48 to 72 hours to minimize carryover effects. Each stimulation session will last 10 minutes. Primary autonomic outcomes will be derived from heart rate variability parameters obtained using a Polar H10 chest strap and analyzed with Kubios HRV software. Secondary physiological outcomes will include systolic and diastolic blood pressure, pulse rate, respiratory rate, and subjective discomfort measured using a visual analog scale. The study aims to identify frequency-specific autonomic response profiles and to evaluate whether respiratory rate influences heart rate variability changes associated with taVNS.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
SINGLE
Enrollment
36
Sham stimulation is delivered under conditions similar to active taVNS without meaningful vagal stimulation.
Active transcutaneous auricular vagus nerve stimulation applied for 10 minutes at 10 Hz.
Active transcutaneous auricular vagus nerve stimulation applied for 10 minutes at 25 Hz.
Active transcutaneous auricular vagus nerve stimulation applied for 10 minutes at 50 Hz.
Active transcutaneous auricular vagus nerve stimulation applied for 10 minutes at 100 Hz.
Artvin Coruh University, Artvin Vocational School, Disabled Care and Rehabilitation Laboratory
Artvin, Turkey (Türkiye)
Change in Root Mean Square of Successive Differences (RMSSD)
Change in the root mean square of successive differences (RMSSD) from pre-intervention to post-intervention under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
Change in High-Frequency Heart Rate Variability (HF-HRV)
Change in high-frequency heart rate variability (HF-HRV) from pre-intervention to post-intervention under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
Change in Standard Deviation of Normal-to-Normal RR Intervals (SDNN)
Change in the standard deviation of normal-to-normal RR intervals (SDNN) from pre-intervention to post-intervention under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
Change in Low-Frequency (LF) Power
Change in low-frequency (LF) power of heart rate variability from pre-intervention to post-intervention under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
Change in LF/HF Ratio
Change in the ratio of low-frequency to high-frequency heart rate variability (LF/HF ratio) from pre-intervention to post-intervention under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
Change in Systolic Blood Pressure
Change in systolic blood pressure from pre-intervention to post-intervention under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
Change in Diastolic Blood Pressure
Change in diastolic blood pressure from pre-intervention to post-intervention under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
Change in Pulse Rate
Change in pulse rate from pre-intervention to post-intervention under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
Change in Respiratory Rate
Change in respiratory rate from pre-intervention to post-intervention under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
Change in Subjective Discomfort Assessed by Visual Analog Scale (VAS)
Subjective discomfort will be assessed using a Visual Analog Scale (VAS) ranging from 0 to 10, where 0 indicates no discomfort and 10 indicates the worst possible discomfort. Higher scores indicate greater discomfort. Change in VAS score from pre-intervention to post-intervention will be evaluated under each stimulation condition.
Time frame: Immediately before and immediately after each 10-minute intervention session
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