Key result
tVNS is associated with increased R-R variability in ~75% of tinnitus patients, driving parasympathetic predominance.
Why the study?
Autonomic nervous system imbalance often occurs in patients with tinnitus-triggered stress, and the acute effects of transcutaneous vagal nerve stimulation on this imbalance were not well characterized.
Does transcutaneous vagal nerve stimulation improve autonomic nervous system imbalance in patients with tinnitus?
Observational (n=97)
Does transcutaneous vagal nerve stimulation improve autonomic nervous system imbalance in patients with tinnitus?
Transcutaneous vagal nerve stimulation acutely improves sympathovagal imbalance in patients with tinnitus without causing adverse cardiac effects.
Supports cautious tVNS exploration in tinnitus with ANS imbalance; leaves open efficacy confirmation in prospective trials.
CONCLUSION: Transcutaneous vagal nerve stimulation (tVNS) might offer a targeted, patient-friendly, and low-cost therapeutic tool for tinnitus patients with sympathovagal imbalance. OBJECTIVES: Conventionally, VNS has been performed to treat severe epilepsy and depression with an electrode implanted to the cervical trunk of vagus nerve. This study investigated the acute effects of tVNS on autonomic nervous system (ANS) imbalance, which often occurs in patients with tinnitus-triggered stress. METHODS: This study retrospectively analysed records of 97 patients who had undergone ANS function testing by heart rate variability (HRV) measurement immediately before and after a 15-60 min tVNS stimulation. RESULTS: The pre-treatment HRV recording showed sympathetic preponderance/reduced parasympathetic activity in about three quarters (73%) of patients. Active tVNS significantly increased variability of R-R intervals in 75% of patients and HRV age was decreased in 70% of patients. Either the variability of R-R intervals was increased or the HRV age decreased in 90% of the patients. These results indicate that tVNS can induce a shift in ANS function from sympathetic preponderance towards parasympathetic predominance. tVNS caused no major morbidity, and heart rate monitoring during the tVNS treatment showed no cardiac or circulatory effects (e.g. bradycardia) in any of the patients.
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Ylikoski et al. (2017) conducted an observational in Tinnitus (n=97). Transcutaneous vagal nerve stimulation (tVNS) vs. Pre-treatment baseline was evaluated on Variability of R-R intervals and HRV age. Transcutaneous vagal nerve stimulation increased R-R interval variability in 75% of tinnitus patients and decreased HRV age in 70%, shifting autonomic function towards parasympathetic predominance.
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