Objectives: To observe the effect of motion-style scalp acupuncture (MSSA) on H-reflex in rats with post-stroke spasticity (PSS), so as to explore the electrophysiological mechanisms of MSSA against spasticity.
Methods: A total of 36 male SD rats were randomly divided into sham operation, model and MSSA groups, with 12 rats in each group. The stroke model was established by occlusion of the middle cerebral artery. After modeling, rats in the MSSA group were treated by scalp acupuncture (manipulated every 15 min, 200 r/min) at ipsilesional "parietal and temporal anterior oblique line" (MS6) for a total of 30 min, the treadmill training (10 m/min) was applied during the needling retention, once daily for consecutive 7 days. The neurological deficits, muscle tone and motor function were assessed by Zea Longa score, modified modified Ashworth scale (MMAS) score and screen test score before and after treatment, respectively. The H-reflex of spastic muscle was recorded by electrophysiological recordings and the frequency dependent depression (FDD) of H-reflex was also recorded. The cerebral infarction volume was evaluated by TTC staining.
Results: Compared with the sham operation group, the Zea longa score, MMAS score, cerebral infarction volume, motion threshold, Hmax/Mmax ratio and FDD of H-reflex were significantly increased (<0.01), while the screen test score was significantly decreased (<0.01) in the model group. Intriguingly, compared with the model group, the above results were all reversed (<0.01) in the MSSA group.
Conclusions: MSSA could exert satisfactory anti-spastic effects in rats with PSS, the underlying mechanism may be related to the improvement of nerve function injury, the reduction of spastic muscle movement threshold, Hmax/Mmax ratio and H-reflex FDD.
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http://dx.doi.org/10.13702/j.1000-0607.20220920 | DOI Listing |
Cogn Neurodyn
December 2024
Department of Neurology, Tangshan Gongren Hospital, Tangshan, 063000 China.
Electroencephalography (EEG) provides high temporal resolution neural data for brain-computer interfacing via noninvasive electrophysiological recording. Estimating the internal brain activity by means of source imaging techniques can further improve the spatial resolution of EEG and enhance the reliability of neural decoding and brain-computer interaction. In this work, we propose a novel EEG data-driven source imaging scheme for precise and efficient estimation of macroscale spatiotemporal brain dynamics across thalamus and cortical regions with deep learning methods.
View Article and Find Full Text PDFFront Neurol
December 2024
Department of Acupuncture, Longhua Hospital Affiliated to Shanghai University of Traditional Chinese Medicine, Shanghai, China.
Background: Parkinson disease (PD) is a progressive neurological disorder that may be managed with therapies like scalp electroacupuncture (SEA). The combination of SEA and medication could potentially offer a new approach for managing PD symptoms. The systematic review and meta-analysis aimed to assess the combined impact of SEA and medication on PD through a comprehensive analysis of randomized clinical trials, focusing on outcomes like effective rate and various scores (total Unified Parkinson Disease Rating Scale (UPDRS), UPDRS III, and Webster).
View Article and Find Full Text PDFObjective: This systematic review and meta-analysis aimed to evaluate the efficacy of combination scalp acupuncture in treating post-stroke cognitive impairment.
Methods: A comprehensive search was conducted across eight databases: PubMed, Web of Science, Cochrane Database, Embase, CBM, CNKI, WanFang, and VIP, targeting randomized controlled trials (RCTs) published from the inception of these databases until October 24, 2024. The inclusion criteria focused on RCTs that compared scalp acupuncture with conventional treatments as therapeutic interventions for patients suffering from post-stroke cognitive impairment (PSCI).
Biol Psychol
November 2024
School of Psychology and Sport Science, Anglia Ruskin University, East Road, Cambridge CB1 1PT, UK. Electronic address:
The Autonomous Sensory Meridian Response (ASMR) is a sensory-emotional phenomenon characterized by tingling sensations, typically felt across the scalp and neck. Scepticism around this phenomenon is still widespread, keeping the question of whether it is genuine and not mere result of conditioning, still open. Therefore, the aim of the current study is to partially answer this question, by investigating the physiological correlates of the sensory feelings reported during ASMR.
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