• 제목/요약/키워드: current stimulation

검색결과 481건 처리시간 0.023초

E-TEXTILE을 이용한 고감성 전기 근육 자극(EMS)패드의 연구 (A Study on the High Sensitivity Electrical Muscle Stimulation (EMS) Pad Using E-TEXTILE)

  • 연은지;김주용
    • 감성과학
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    • 제24권3호
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    • pp.81-90
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    • 2021
  • 본 연구에서는 전기 근육 자극(electrical muscle stimulation, EMS)에 사용되는 기존의 하이드로겔 패드의 단점인 사용 편의성, 쾌적성 등을 보완할 수 있는 e-textile (electronic textile)을 이용한 전기 근육 자극(electrical muscle stimulation, EMS) 패드인 EMSCT (electrical muscle stimulation conductive textile)를 연구를 하고자 하였다. SWCNT (Single-Walled Carbon Nanotube)와 H2O의 농도 및 함침 공정 횟수를 변수로 하여, EMSCT는 5가지 직물(라디론, 네오프렌, 스판쿠션, 폴리100%, 베르가모)에 전도성을 부여하여 실험이 진행되었다. SWCNT (Single-Walled Carbon Nanotube)와 H2O을 이용한 패딩 공정을 거쳤으며, 교류 측정 결과 하이드로겔과 가장 유사한 교류를 나타내는 것은 SWCNT:H2O = 2:1의 베르가모 원단이라는 결과를 얻을 수 있었다. 또한, 편의성, 사용성, 심리적 만족성에 관한 사용성 평가를 통해 기존 하이드로겔 패드에 비해 EMSCT가 좋은 사용성을 가진다는 결과를 얻을 수 있다.

Perspective for Clinical Application and Research of Transcranial Direct Current Stimulation in Physical Therapy

  • Kim, Chung-Sun;Nam, Seok-Hyun
    • The Journal of Korean Physical Therapy
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    • 제22권6호
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    • pp.91-98
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    • 2010
  • Neurostimulation approaches have been developed and explored to modulate neuroplastic changes of cortical function in human brain. As one of the most primary noninvasive tools, transcranial direct current stimulation (tDCS) was extensively studied in the field of neuroscience. The alternation of cortical neurons depending on the polarity of the tDCS has been used for improving cognitive processing including working memory, learning, and language in normal individuals, as well as in patients with neurological or psychiatric diseases. In addition, tDCS has great advantages: it is a non-invasive, painless, safe, and cost-effective approach to enhance brain function in normal subjects and patients with neurological disorders. Numerous previous studies have confirmed the efficacy of tDCS. However, tDCS has not been considered for clinical applications and research in the field of physical therapy. Therefore, this review will focus on the general principles of tDCS and its related application parameters, and provide consideration of motor behavioral research and clinical applications in physical therapy.

Targetting Balance and Gait Rehabilitation with Multichannel Transcranial Direct Current Stimulation in a Sub-Acute Stroke Survivor-A Case Report

  • Gakhar, Kazal;Arumugam, Narkeesh;Midha, Divya
    • Physical Therapy Rehabilitation Science
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    • 제11권1호
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    • pp.8-15
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    • 2022
  • Objective: Post stroke motor recovery is facilitated by the brain reorganization or the neuroplastic changes. The therapeutic approach mentioned in the current case is one of the approaches for enhancing motor recovery by stimulating the damaged neural networks directing the motor behaviour of a person. The aim of the present study was to establish the changes in the balance and gait pattern of an individual through multi target stimulation of areas of cerebral cortex by utilising multichannel trans cranial direct current stimulation (M-tDCS) in a sub-acute stroke survivor. Design: A Case Report Methods: The present patient was the participant of the trial (CTRI/2021/02/031044).The patient was intervened with M-tDCS (anodes over left primary motor cortex that is C3 point and left dorsolateral prefrontal cortex i.e., F3 point and cathodes over supraorbital areas, Intensity - 1.2mA) for the duration of 20 minutes along with turbo med extern - an AFO to facilitate ankle dorsi flexion and conventional physiotherapy rehabilitation. The Fugl-Meyer assessment lower extremity (FMA-LE), Berg Balance Scale (BBS), Wisconsin Gait Scale (WGS) and the Stroke Specific Quality of Life (SSQOL) measures were used for outcome assessment. Baseline assessment was done on day 0 followed by assessment on 10 and 20 post intervention. Results: Improvement was seen in all the tools i.e. (FMA -LE), BBS, SSQOL and WGS over the time period of 20 days. Conclusions: M-tDCS resulted in improvement in gait parameters, balance and motor functions of lower extremity of the patient.

전기 감전 체험 교육을 위한 저주파 전류 자극기의 인체 자극 임계값 (Human Stimulation Threshold of Interferential Current Type Low Frequency Stimulator for Electric Shock Experience Education)

  • 전정채;김재현;유재근
    • 한국산학기술학회논문지
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    • 제13권10호
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    • pp.4768-4772
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    • 2012
  • 전기감전 사고를 예방하기 위해서는 주입식 교육 보다는 체험식 교육이 더욱 효과적이다. 그러나 전기감전 체험형 교육 시스템을 위해서는 감전을 체험할 수 있도록 인체에 대한 적절한 물리적 자극이 필요하다. 본 논문에서는 간섭전류형자극기(Interferential Current Type Low Frequency Stimulator)를 감전사고 체험교육에 이용하기 위하여 인체에 대한 자극의 임계값을 실험하였다. 그리고 아동과 성인으로 구분된 연령별 자극 값을 산출하였다. 본 연구의 결과는 전기 감전 체험형 교육 시스템에 적용 가능할 것이다.

신경병증성 토끼모델에서 고전압맥동전류의 창상치유 효과 (Effects of High Voltage Pulsed Current Stimulation on the Wound Healing in Neuropathic Rabbit Model)

  • 김종만;박장성;정형재
    • 한국전문물리치료학회지
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    • 제6권3호
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    • pp.1-10
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    • 1999
  • The purpose of this study was to determine whether high voltage pulsed current stimulation (HVPCS) would enhance wound healing in neuropathic rabbits. Ten rabbits were assigned to either an experimental or a control group. The wounded part around the peripheral neuropathy of the experimental rabbits was stimulated for two hours twice a day for six days under the following conditions: pulse frequency 80 pps, pulse duration $100{\mu}s$, and stimulation intensity 30~40 V. The results indicated that there was no difference in the wound closure between the experimental and control groups. The two groups showed similar aspects in collagen and reticulum, which were observed by colored Masson's trichome. While the rabbits in the control group had more or less thick fibers, the rabbits in the experimental group had thin and branched-shape fibers. The rabbits in the experimental group showed both strong responses in the shaping of elastic fibers and the increased aspects in fibroblast when compared with the control group.

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경두개 직류전류 자극이 대뇌피질의 뇌 활성도에 미치는 영향 (Cortical Activation in the Human Brain induced by Transcranial Direct Current Stimulation)

  • 권용현;김중선;장성호
    • The Journal of Korean Physical Therapy
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    • 제21권4호
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    • pp.73-79
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    • 2009
  • Purpose: Recently, neurostimulation studies involving manipulation of cortical excitability of the human brain have been increasingly attempted. We investigated whether transcranial direct current stimulation (tDCS) applied to the underlying cerebral cortex, directly induces cortical activation during fMRI scanning. Methods: We recently recruited five healthy subjects without a neurological or psychiatric history and who were right-handed, as verified by the modified Edinburg Handedness Inventory. fMRI was done while constant anodal tDCS was delivered to the underlying SM1 area?? immediately after the pre-stimulation for eighteen minutes. Results: Group analysis yielded an averaged map that showed that the SM1 area and the superior parietal cortex in the ipsilateral hemisphere were activated. The voxel size and peak intensity were, respectively, 82 and 5.22 in the SM1, and 85 and 5.77 in the superior parietal cortex. Conclusion: Cortical activation can be induced by constant anodal tDCS of the underlying motor cortex. This suggests that tDCS may be an effective therapeutic device for enhancing? physical motor function by modulating neural excitability of the motor cortex.

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The Ongoing Effect of Transcranial Direct Current Stimulation on both the Hemispheres: Single Case fMRI Study

  • Kwon, Jung-Won;Son, Sung-Min;Kim, Chung-Sun;Cho, In-Sul
    • The Journal of Korean Physical Therapy
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    • 제23권6호
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    • pp.49-53
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    • 2011
  • Purpose: The purpose of this study is to investigate whether dual-hemisphere transcranial direct current stimulation (tDCS) could induce more cortical activity, compared to single-hemisphere, using functional MRI (fMRI). Methods: One right-handed healthy subject was recruited. Three phases of dual-hemisphere tDCS (i.e. anodal tDCS over the left-dominant primary sensoriomotor cortex (SM1) and cathodal tDCS over the right-non dominant SM(1) were consecutively delivered on to a subject, during fMRI scanning. The voxel count and the intensity index in the averaged cortical map were analyzed among the three tDCS phases. Results: Our result showed that cortical activation was observed on all the three phases of the dual-hemisphere tDCS. Voxel count and intensity index were as following; 912 and 4.07 in the first phase, 1102 and 3.90 in the second phase, 1031 and 3.80 in the third phase. Conclusion: This study demonstrated that application of the dual-hemisphere tDCS could induce cortical activity and maintain to recruit cortical neurons. Our findings suggested that application of dual-hemisphere tDCS could produce efficiency of the ongoing tDCS effect to facilitate cortical excitability.

Photoresponsive Characteristics of N-channel Pseudomorphic HEMT and MESFET Under Optical Stimulation for Possible Applications to Millimeter-Wave Photonics

  • 김동명;김희종;이정일;이유종
    • E2M - 전기 전자와 첨단 소재
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    • 제12권8호
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    • pp.39-45
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    • 1999
  • Comparative photoresponsive current-volt-age characteristics of n-channel PHEMT and MESFET on GaAs substrate. with (W/L)=200${\mu}{\textrm}{m}$/1${\mu}{\textrm}{m}$ of gates, are reported as a function of electro-optical stimulation (P\ulcorner, λ=830nm) for the first time as far as we know. Significantly different photoresponses are observed in MESFET and PHEMT, mainly due to different optoelectronic mechanisms in the formation and current conduction of channel carriers. Under high optical power, high photoresponsity with a strong non-linearity with P\ulcorner, predominantly due to a parallel conduction via a heavily doped Al\ulcornerGa\ulcornerAs donor layer, was observed in PHEMT while the optically induced drain current has been very small but monotonically increasing with optical stimulation in GaAs MESFET. We also investigated differences in optically stimulated gate leakage currents and photonic gate responses on gate voltage and drain voltage as a function of P\ulcorner. Based on the drain and gate responses to electro-optical stimulation. PHEMTs are expected to be a better candidate for high performance photonically responsive microwave device compared with MESFETs.

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The development of a high efficient transcranial magnetic stimulation adopted real time-charging-discharging circuit

  • Kim, Whi-Young;Park, Sung-Joon
    • 전기전자학회논문지
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    • 제14권2호
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    • pp.9-15
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    • 2010
  • In this study, we have been proposed the new type of a transcranial magnetic stimulation adopted a variable voltage capacitor with Cockcroft-Walton circuit and constant-frequency current resonant half-bridge inverter. This a transcranial magnetic stimulation has some merits compared with the conventional one. First, it doesn't require the high voltage transformer. And second, it has less switching losses, compact size and capability in adjusting the transcranial magnetic stimulation output energy precisely. In this paper, we have performed the output characteristics of a transcranial magnetic stimulation system which is well known as magnetic stimulation. The tested results are described as a function of pulse repetition rate and switching numbers of the half-bridge inverter.

체내 이식 기기용 표준 CMOS 고전압 신경 자극 집적 회로 (A High-Voltage Compliant Neural Stimulation IC for Implant Devices Using Standard CMOS Process)

  • 알피안 압디;차혁규
    • 전자공학회논문지
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    • 제52권5호
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    • pp.58-65
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    • 2015
  • 본 논문에서는 신경 관련 인공 전자기기를 위한 신경 자극 집적회로를 $0.18-{\mu}m$ 표준 CMOS 반도체 공정을 이용하여 설계하였다. 제안 된 신경 자극 회로는 12.8-V 전원을 사용하면서 $10-k{\Omega}$의 부하에 최대 1 mA의 전류까지 전달이 가능하다. 표준 CMOS 공정 기술로 구현을 위해서 저전압 트랜지스터만을 이용하여 설계를 하였고, 고전압에서의 안정적인 동작을 위하여 트랜지스터 스태킹 기술을 적용하였다. 또한, 신경 자극 동작 후 전하 잔여량이 남아 있지 않도록 active charge balancing회로를 포함하였다. 제안 된 단일 채널 자극 집적회로의 경우 디지털-아날로그 변환기, 전류 출력 드라이버, 레벨 시프터, 디지털 제어 부분, 그리고 active charge balancing 회로까지 모두 포함하여 전체 칩 레이아웃 면적은 $0.13mm^2$을 차지하며, 다중 채널 방식의 신경 자극 기능의 체내 이식용 인공 전자기기 시스템에 적용을 하는데 적합하다.