• Title/Summary/Keyword: Electrical sensory stimulation

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Effect of Electrical Stimulation Level on Quantitative Sensory Test Induced Erythema by UV Radiation (전기자극수준이 자외선에 의한 홍반의 정량적 감각검사에 미치는 효과)

  • Kim, Su-Hyon;Kim, Hyun-Jin
    • Journal of the Korean Academy of Clinical Electrophysiology
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    • v.10 no.2
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    • pp.1-6
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    • 2012
  • Purpose : This study is to investigate the modulatory effects to the ultraviolet induced erythema of pain processing system. Methods : Thirty six healthy volunteers were divided into none treatment group (n=6), indomethacine group (n=6), subsensory level electrical stimulation group (n=6), sensory level electrical stimulation group (n=6), motor level electrical stimulation group (n=6), noxious level electrical stimulation group (n=6). Subjects were induced erythema for three times minimal erythema dose (MED) at upper arm of dermatome C6 level. Each experimental group had mechanical pain threshold (MPT), electrical pain threshold (EPT), thermal pain threshold (TPT). Results : This study revealed that we observed that pain thresholds were significantly correlated with each other in pain processing system. The effect of electrical stimulation levels evaluates were shown to be significant differences pain control effect in electrical stimulation group (sensory, motor level electrical stimulation groups) more than indomethacine group, subsensory level and control group. Conclusion : In this study, it was found that the effect of ultraviolet induced erythema of pain control by modulatory electrical stimulation.

Effect of Non-perceptual Sensory Stimulation Intensity Using Transcutaneous Electrical Nerve Stimulation on Cerebral Blood Flow (경피신경전기자극기를 이용한 비지각적 감각자극 강도가 뇌혈류에 미치는 영향)

  • Ju-Yeon Jung;Chang-Ki Kang
    • Science of Emotion and Sensibility
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    • v.27 no.2
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    • pp.81-90
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    • 2024
  • In this study, we aimed to determine the effect on cerebral blood vessels of various stimulus intensities using transcutaneous electrical nerve stimulation (TENS). In particular, we wanted to monitor changes in blood flow and structural changes in the blood vessels in the common carotid artery (CCA) through low-intensity electrical stimulation that can cause non-perceptual sensory stimulation. Twenty-four healthy adults in their 20s participated in this study. Three stimulus intensities (below the sensory threshold, at the sensory threshold, and above the sensory threshold) were applied in random order. Changes in blood flow velocity according to the intensity of TENS stimulus were measured by placing the Doppler ultrasound transducer 1 cm below the CCA bifurcation, and the vascular structure was measured using B-mode imaging. C-mode Doppler and B-mode images were acquired before, during, and after the intervention for each stimulus, and changes in blood pressure were measured in each session. As a result, it was confirmed that peak systolic velocity (PSV) decreased significantly after the intervention in non-perceived sensory stimulation below the threshold, compared to other thresholds (p = .008). In particular, the PSV decreased by 3.04% on average compared to before stimulation (p = .011). However, there was no significant change in the CCA diameters before and after stimulation at all intensities. It was found that short-term, non-perceptual sensory stimulation was effective in reducing the blood flow rate without causing significant changes in either the blood vessel diameter or blood pressure. This change appears to be caused by a decrease in blood flow due to the effect of subtle vasodilation at non-perceptual sensory stimulation, and at stimulation intensity higher than that, the sympathetic nerves in the blood vessels are stimulated excessively and the blood vessels constrict. Therefore, this study can be rated as an important attempt to control blood flow through stimulation without such a psychological burden and sensory discomfort in the carotid area.

A Study on the Sensory Motor Coordination to Visual and Sound Stimulation (빛과 소리 자극에 대한 지각 운동의 협력에 관한 연구)

  • Kim, Nam-Gyun;Ko, Yong-Ho;Ifukube, T.
    • Journal of Biomedical Engineering Research
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    • v.15 no.1
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    • pp.77-82
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    • 1994
  • We investigated the characteristic of the sensory motor coordination by measuring the hand point ins and the gaze movement to the visual and sound stimulation. Our results showed that the gaze vol ocity to sound stimulation did not depend on stimulation direction, but lagged behind 0.2 sec toward the pheriperal direction to the visual stimulation. Our data showed that to both visual and sound stimulation, the error of hand pointing value increased with an increasement of eccentricity.

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Systematic Review on Effect of Peripheral Sensory Nerve Stimulation on Upper Extremity Function for Stroke Patients (뇌졸중 환자의 상지 기능 향상을 위한 말초감각신경자극의 효과에 관한 체계적 고찰)

  • Kim, Sun-Ho;Park, Ji-Hyuk
    • Therapeutic Science for Rehabilitation
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    • v.5 no.2
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    • pp.11-22
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    • 2016
  • Objective: This study is executed systematic review targeted at international journals intended to investigate on effect of peripheral sensory nerve stimulation on upper extremity function for stroke patients. Method: After literature search, researchers selected for 10 studies registered up to October 2015 based on PubMed database, using the following search terms: peripheral nerve stimulation, electrical stimulation, sensory stimulation, somatosensory stimulation, stroke, hemiplegia, hemiparesis and hand, arm, upper limb. Result: There were significant improves of upper extremity function and positive effect on the cortical activation in the use of peripheral sensory nerve stimulation. Conclusion: domestic studies in future requires a study of the method for measuring more accurately the effect of peripheral sensory nerve stimulation in RCT studies applying various intervention.

The Effect of Presynaptic Inhibition Using the Transcutaneous Electrical Stimulation for Global Synkinesis on the Post-Stroke Hemiplegic Patients (경피전기자극을 이용한 연접 전 억제가 만성 뇌졸중 환자의 global synkinesis에 미치는 영향)

  • Park, Young-Hyun;Kim, Su-Hyun;Choi, Hyun;Oh, Seok;Choi, Ji-Ho;Kim, Tae-Youl
    • Journal of the Korean Academy of Clinical Electrophysiology
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    • v.8 no.1
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    • pp.7-13
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    • 2010
  • Purpose : This study was performed as follows in order to investigate the effect of presynaptic inhibition mechanism using the transcutaneous electrical stimulation (TES) for global synkinesis (GS) on the post-stroke hemiplegic patients. Methods : The subjects consist of 38 post stroke hemiplegic patients; experiments were performed on thirty patients excluding eight. The experiment was performed on sham group, sensory level stimulation group, and motor level stimulation group for 20 minutes a day 5 times a week for 6 weeks total. We compared the differences in GS levels and walking ability. The measurements were carried out pre, immediated, post 10th, and 20th, for a total of four measurements. Results : The GS level using sEMG found significant differences between groups at the post 10th and post 20th in dorsiflexion, and post 20th in plantarflexion (p<0.05, p<0.01). The motor level group indicated more significant differences when the number of electrical stimulations increased. TUG and 10 m walking test indicated a significant difference at immediated, post 10th, and post 20th. The motor level group showed more significant decreasing tendency than the sensory level group. Conclusion: From these results, electrical stimulation using presynaptic inhibition mechanism of transcutaneous electrical stimulation (TES) had positive effects for walking ability on inhibition of muscle tone in lower extremity. The motor level stimulation group experienced a more significant effect than the sensory level stimulation group. Therefore, the transcutaneous electrical stimulation (TES) is considered to be effective on walking ability increasing through inhibition of muscle tone in lower extremity for rehabilitation of post stroke hemiplegic patients.

Evaluation of Postural Stability according to characteristics of Electrical Stimulation on the ankle muscles (족관절 근육에 인가한 전기 자극의 특성에 따른 자세안정성 평가)

  • Lee, S.Y.;Yu, M.;Kim, N.G.;Kim, D.W.
    • Journal of Biomedical Engineering Research
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    • v.30 no.6
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    • pp.521-528
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    • 2009
  • This study is about to evaluation of postural stability according to characteristics of electrical stimulation on the ankle muscles. We measured body sway(center of pressure, COP) when various parameters of electrical stimulation was applied to ankle muscles in stable and unstable posture. Subjects consisted of 10 young adults, and electrical stimulation was delivered on right and left of tibialis anterior and Achilles tendon. The body sway was measured during electrical stimulation of three duty cycle and frequencies in stable posture and three amplitudes of sensory threshold in unstable posture. Consequently, the COP Shift is higher during electrical stimulation of 1/30(duty ratio) and 100Hz(frequency) in stable posture. In unstable posture, 100% amplitude of sensory threshold induced postural stability. These findings are important for the rehabilitation system of postural stability and the use of electrical stimulation as somatosensory information.

The Effects of Integrated Provision Action Observation and Synchronized Electrical Sensory Stimulation for Sit-to-stand in Stroke Patients Function (일어서기 동작에 대한 동작관찰과 동기화된 전기적 감각자극의 통합적 제공이 뇌졸중 환자의 기능에 미치는 효과)

  • Moon, Young;Choi, Jong-duk
    • Physical Therapy Korea
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    • v.27 no.3
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    • pp.191-198
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    • 2020
  • Background: Stroke patients experience multiple dysfunctions that include motor and sensory impairments. Therefore, new intervention methods require a gradational approach depending on functional levels of a stroke patient's activity and should include cognition treatment to allow for a patient's active participation in rehabilitation. Objects: This study investigates the effect of integrated revision of electrical sensory stimulation, which stimulates somatosensory and action observation training, which is synchronized cognition intervention method on stroke patients' functions. Methods: Twenty-one stroke patients were randomized into two groups. The two groups underwent twenty minutes of intervention five times a week for three weeks. This study used an electromyogram to evaluate symmetric muscle activation of lower extremities and muscle onset time when performing sit to stand before and after intervention. A weight-bearing ratio was used to evaluate the weight-bearing of the affected side in a sit to standing. To evaluate sit to stand performance ability, this study performed five timed sit to stand tests. Results: The two groups both showed statistically significant improvement in muscle onset time of lower extremity, static balance ability in a standing position, and sit to stand performance after the intervention (p < 0.05). In addition, the action observation and synchronized electrical sensory stimulation group showed significant improvement in symmetric muscle activation of lower extremities and weight-bearing ratio of the affected side (p < 0.05). Conclusion: action observation and synchronized electrical sensory stimulation (AOT with ESS) can have positive effects on a stroke patient's sit to stand performance, and the intervention method that provides integrated AOT with ESS can be used as new nervous system intervention program.

Effects on Electrophysiologic Responses to the Transcutaneous Electrical Nerve Stimulation and Ultra Sound (경피신경전기자극과 초음파가 전기생리학적 반응에 미치는 영향)

  • Baek Su-Jeong;Lee Mi-Ae;Kim Jin-Sang;Choi Jin-ho
    • The Journal of Korean Physical Therapy
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    • v.12 no.1
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    • pp.49-56
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    • 2000
  • The purpose of this study was to investigate the influnce of afferent stimuli, transcutaneous electrical nerve stimulation and ultra sound, on the electrdiagnostic study of normal subjects. Electrodiagnostic study was performed before and after the application of afferent stimulation of the right popliteal fossa on 18 healthy female volunteers. After the transcutaneous electrical nerve stimulation, there is no significantly change of latencies and amplitudes of SEP, H-reflex, peroneal nerve F-wave, and sensory nerve conduction. After the ultra sound, there is no significantly change of latencies and amplitudes of SEP, H-reflex, peroneal nerve F-wave, and sensory nerve conduction. Tibial nope F-wave and motor nerve shows prolonged latency after TENS and US (p<0.01). Ultrasound may have a similar mechanism of action compared to transcutaneous electrical nerve stimulation by having localized inhibitory effects of the peripheral nerve. However, further investigation is needed to assess their mechanism of action and the precise relevance of stimulation modality.

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Effect of Weight Shift Training with Electrical Sensory Stimulation Feedback on Standing Balance in Stroke patients

  • Kim, Da-young;Cha, Yong-jun
    • Journal of the Korean Society of Physical Medicine
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    • v.10 no.3
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    • pp.39-45
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    • 2015
  • PURPOSE: The purpose of this study was to investigate the effect of weight shift training with electrical sensory simulation feedback on quiet standing balance in hemiplegic stroke patients. METHODS: 30 stroke patients were equally allocated at random to an experimental group or a control group. Patients in both two groups underwent comprehensive rehabilitation physical therapy for 30 minutes per day for 5 days per week for 4 weeks. Members of the experimental group received additional weight shift training with electrical sensory simulation feedback was conducted for 15 minutes after 30 minute sessions, whereas members of the control group underwent additional leftward/rightward weight shift training by themselves after 30 minutes per day for four weeks. COP (center of pressure) path lengths, COP velocities, and foot forces were measured before and immediately after the 4-week training period in both groups and results were compared. RESULTS: COP path lengths significantly decreased by 3% after training in the experimental group and this was significantly greater than that observed in the control group (p<0.05). In both groups, foot forces of affected sides showed significant increases after intervention, whereas foot forces of unaffected sides showed significant decreases (p<0.05). No significant difference was observed between the two groups with respect to these changes. CONCLUSION: Weight shift training using electrical sensory simulation feedback has a positive effect on quiet standing balance in hemiplegic stroke.

Laser Speckle Contrast Imaging for Measuring Cerebral Blood Flow Changes Caused by Electrical Sensory Stimulation

  • Cho, Ahra;Yeon, Chanmi;Kim, Donghyeon;Chung, Euiheon
    • Journal of the Optical Society of Korea
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    • v.20 no.1
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    • pp.88-93
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    • 2016
  • Recently laser speckle contrast (LSC) imaging has become a widely used optical method for in vivo assessment of blood flow in the animal brain. LSC imaging is useful for monitoring brain hemodynamics with relatively high spatio-temporal resolution. A speckle contrast imaging system has been implemented with electrical sensory stimulation apparatus. LSC imaging is combined with optical intrinsic signal imaging in order to measure changes in cerebral blood flow as well as neural activity in response to electrical sensory stimulation applied to the hindlimb region of the mouse brain. We found that blood flow and oxygen consumption are correlated and both sides of hindlimb activation regions are symmetrically located. This apparatus could be used to monitor spatial or temporal responses of cerebral blood flow in animal disease models such as ischemic stroke or cortical spreading depression.