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T. Sathyaprabha

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Aug 2026

Cardiovascular autonomic dysfunction in Morvan syndrome: A comparative study of heart rate variability and cardiovascular autonomic reflex tests.

BACKGROUND AND OBJECTIVE Morvan syndrome is a rare neurological disorder characterized by peripheral nerve hyperexcitability, autonomic instability, and encephalopathy. Autonomic dysfunction in these patients may have important cardiovascular implications. We characterized cardiovascular autonomic function in Morvan syndrome and compared it with that of healthy controls. METHODS In this comparative cross-sectional study, 19 patients with Morvan syndrome and 24 healthy controls broadly comparable in age at the group level were evaluated. Heart rate variability (HRV) was assessed using non-invasive electrocardiography, including time-domain and frequency-domain measures. Autonomic function was evaluated using Ewing's battery, including heart-rate response to deep breathing, Valsalva maneuver, orthostatic testing, and isometric handgrip. RESULTS Morvan syndrome patients showed significant autonomic impairment compared with healthy controls. HRV parameters, including standard deviation of NN intervals (SDNN), root mean square of successive differences (RMSSD), total power, low-frequency power, and high-frequency power, were significantly reduced in patients. Ewing's battery also demonstrated marked abnormalities, including reduced deep-breathing difference, lower Valsalva ratio, impaired orthostatic blood pressure response, and diminished isometric handgrip response. Effect sizes ranged from moderate to large (0.504-0.934), indicating substantial clinical relevance. Disease duration showed significant negative correlations with several HRV indices, including RMSSD (r=-0.68, P=0.001), suggesting progressive autonomic impairment. CONCLUSION Morvan syndrome patients demonstrated significant cardiovascular autonomic dysfunction compared with healthy controls, reflected by impaired HRV and abnormal autonomic reflex testing. These findings support the value of routine HRV and Ewing's battery assessment in Morvan syndrome for early detection of cardiovascular autonomic involvement and improved clinical monitoring.

Chandregowda Nandan, Ganagarajan Inbaraj, K. Arjun et al. · 0 citations
Review Open access Jul 2026

Neurophysiological assessment of stroke recovery after repetitive transcranial magnetic stimulation

Stroke is a major cerebrovascular disorder that commonly causes motor and cognitive impairments, significantly affecting the quality of life of stroke survivors. Upper-limb dysfunction is one of the most frequent complications after stroke, affecting nearly 77% of patients and limiting their ability to perform daily activities independently. In recent years, repetitive transcranial magnetic stimulation (rTMS), a non-invasive brain stimulation technique, has gained increasing attention as a potential therapeutic approach for improving upper-limb motor recovery after stroke. This narrative review aims to discuss the neurophysiological basis of rTMS-induced motor recovery and examine the role of neurophysiological biomarkers in evaluating treatment outcomes. Relevant literature was identified through searches of electronic databases, including PubMed, Scopus, and Google Scholar, focusing on studies related to rTMS, cortical excitability, electroencephalography (EEG), heart rate variability (HRV), and post-stroke motor recovery. Current evidence suggests that rTMS may promote recovery by modulating cortical excitability, restoring interhemispheric balance, and influencing functional connectivity and autonomic regulation. Neurophysiological measures such as TMS-derived cortical excitability parameters, EEG activity, and HRV indices may help understand the mechanisms underlying recovery and the therapeutic effects of rTMS. However, studies integrating these neurophysiological measures remain limited. This review highlights the importance of combining neurophysiological assessments with rTMS to better understand post-stroke recovery mechanisms and support the development of more targeted rehabilitation strategies.

Devisree Dhanachezhiyan, S. Ramakrishnan, Deepak Menon et al. · 0 citations