• 제목/요약/키워드: Cortical stimulation

검색결과 112건 처리시간 0.029초

fMRI를 이용한 조해혈(照海穴)(KI6) 자침(刺針)이 대뇌피질(大腦皮質) 운동영역(運動領域)의 활성변화(活性變化)에 관(關)한 연구(硏究) (The New Finding on BOLD Response of Motor Acupoint KI6(照海) by fMRI)

  • 윤종화;황민섭;배건태;이수홍;이승덕;장준혁;김경호;장용민;변우목;김갑성
    • Journal of Acupuncture Research
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    • 제18권5호
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    • pp.60-69
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    • 2001
  • Objective : Recent studies Suggested that there is a strong correlation between acupuncture stimulation and its related cortical activation. Anther study showed that either positive or negative BOLD effects could be observed depending on anatomical structure in acupuncture. Material and Methods : 1) Subjects and paradigms : Two separate stimulation paradigms were performed on five healthy (aged 22-23 yrs) in this study. First, the paradigm of acupuncture stimulation was that the acupuncture needle was inserted in acupoints KI6(照海), which is located in lateral side of the foot and then continuously twisted(補瀉를 除外한 捻轉法) for 70 seconds for 10 cycles of activation. During rest period (70 seconds), the needle was completed removed from acupoint. Total 60 cycles were performed and 10 images were obtained per cycle. Second, non-acupoint was randomly selected and the same paradigm was performed as acupoint stimulation. The stimulation protocol comprised 10 cycles of alternating activation and rest (10 images per cycle). Total 60 cycles were performed and each cycle take about 1.5 sec for motor task. Subjects take an at least 15 minutes break before starting anther paradigm. Conclusion : In this study, I investigated a new acupoint KI6(照海) which was known as motor - related acupoint and obtained an evidence that the stimulation of KI6(照海) resulted in negative BOLD response to stimulation.

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흰쥐의 족삼리 및 태충 전침자극에 따른 뇌대사활성의 변화 (Alterations of Cerebral Metabolic Activation Following Electro-Acupuncture Stimulation on ST36 and LR3 Acu-Points in Rats)

  • 손영주;정혁상;구자승;원란;김용석;박영배;손낙원
    • Journal of Acupuncture Research
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    • 제19권1호
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    • pp.159-174
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    • 2002
  • Objective : The meridian theory in oriental medicine explains that each acu-point has a characteristic functional effect. It will be supposed that an acupuncture stimulation on different acu-point evokes different activation on different areas in the central nervous system(CNS) according to the meridian theory. On this supposition, our group tried the semi-quantitative [14C]2-deoxyglucose([14C]2-DG) autoradiography on the acupuncture stimulation to the hindlimb acu-points of Sprague-Dawley rats. Methods : A venous catheter for the intravenous administration of isotope was equipped in the right external jugular vein on 3 days prior to the [14C]2-DG study. On the day of the study, two acupuncture needles were inserted into the ST36(Zusanli) or LR3(Taichong) on the left hindlimb. Electro-acupuncture stimulation (2 Hz, 5 ms, 1~3 mA, 15 minutes) started just before the i.v. injection of [14C]2-DG ($25{\mu}Ci/rat$). The brain and the spinal cord were removed and processed for the [14C] 2-DG autoradiography. Results : The EA stimulation on ST36 reveals over 120% metaboilc activation in Arcuate nucleus, Anterior pretectal nucleus, Dorsal cochlear nucleus, Interposed cerebellar nucleus, and Nucleus of Darkschewitsch. The EA stimulation on LR3 reveals over 120% metaboilc activation in Lateral habenula nucleus, Medial vestibular nucleus, Ventromedial thalamic nucleus, Anteroventral thalamic nucleus, Anterior cingulate cortex, Dentate gyrus, Antero cortical amygdaloid nucleus, Anterior pretectal nucleus, and Dorsal tegmental nucleus compared with the non EA stimulation control group. Conclusion : These results demonstrate that the different acu-points evoke the different activations in brain areas. And with this functional brain mapping study, a new scientific elucidation for the basis of the acupuncture-meridian theory in oriental medicine through differences of activated area in CNS according to the each acupuncture point.

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후각자극에 의한 대뇌겉질의 전기생리학적 반응에 대한 연구: 알파 활동도 (A Study on the Electrophysiological Response of the Cerebral Cortex by Olfactory Stimulation: Alpha Activity)

  • 강지혁
    • 대한임상검사과학회지
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    • 제51권4호
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    • pp.462-467
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    • 2019
  • 최근 수십 년 동안 향기 및 악취 흡입에 의한 후각자극이 인간에게 심리적, 생리적 영향을 미친다는 다양한 연구가 보고되고 있다. 본 연구는 후각자극에 의한 사람 대뇌겉질 신경세포의 전기생리학적 반응성을 조사하고자 하였다. 건강한 남성 12명을 대상으로 아카시아와 부탄올에 의한 후각자극이 알파파의 활동도에 미치는 영향을 정량적으로 분석하였다. 아카시아 향취를 흡입하는 경우는 후각자극이 없는 안정상태의 뇌파에 비해 알파파의 활동도가 유의하게 증가(66.7%)하였고, 부탄올 악취에서는 알파파 활동도의 유의한 감소(33.3%~41.7%)가 관찰되었다. 본 연구는 후각자극에 의하여 대뇌겉질 신경세포의 활동도에 변화가 있을 수 있다는 것을 시사한다. 이러한 결과는 후각인지가 신경계의 기능에 자극효과를 나타낼 수 있다는 것을 의미한다. 즉 본 연구에서 후각자극이 뇌파활동과 기분상태에 영향을 미친다는 결론을 도출할 수 있었다. 이러한 관점에서 향후 중추신경계에 대한 전기생리학적 효과의 영향을 이해하고, 설명하기 위한 추가연구가 필요할 것으로 사료된다.

반복 경두개자기자극술의 우울증 치료효과 및 최신동향에 대한 고찰 (Clinical Efficacy of Repetitive Transcranial Magnetic Stimulation for Treatment of Depression and Latest Trends in TMS Techniques)

  • 김신태;김혜원;김세주;강지인
    • 생물정신의학
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    • 제24권3호
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    • pp.95-109
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    • 2017
  • 본 종설에서는 우울증에서의 rTMS 임상연구를 임상특성과 TMS 적용방법을 고려하여 체계적으로 고찰하였으며 새로운 TMS 치료기법에 대해 살펴보았다. rTMS는 항우울제에 반응이 적은 단극성 우울증 환자의 치료에 병용 혹은 단독요법으로 사용될 수 있는 안전하고 비침습적인 뇌조절술이다. rTMS는 고빈도 좌측 DLPFC, 저빈도 우측 DLPFC, 그리고 양측성 DLPFC 적용방법이 비슷한 수준으로 허위자극에 비해 유의하게 항우울효과를 가지고 있다. 그러나 치료저항성 단극성 우울증에 대한 항우울효과 크기는 작았다. 또한 정신병적 증상이 동반된 우울증의 치료와 양극성 장애의 우울삽화에 대해서는 치료효과가 불분명하다. 기존 rTMS의 항우울효과 크기는 작은 정도로 그 효과를 증진시키기 위해 고용량의 자극, 보다 깊이 자극할 수 있는 코일을 이용한 rTMS 치료, 표적영역에 보다 정확하게 코일을 위치시키는 신경항법 등을 이용한 TMS 적용 등의 새로운 시도들이 진행되고 있다. 또한 세타돌발자극과 자기경련치료와 같은 새로운 치료기법을 이용한 시도가 우울증 치료의 새로운 장을 열고 있다. 비록 현재까지 rTMS의 항우울효과가 만족할 만한 수준은 아니지만 임상양상을 세분화한 치료적용과 개선된 치료기법의 적용 등을 통해 더 많은 후속 연구가 이루어질 필요가 있다. 또한 여러 형태의 TMS 기법에 대해 잘 설계된 허위자극에 대한 통제연구뿐만 아니라 서로의 비교연구를 통해 우울증 치료에서의 근거수준을 높일 수 있을 것으로 기대한다.

능동 및 수동 운동과 기능적 전기자극에 의한 대뇌 피질의 활성화 (The Cortical Activation by Functional Electrical Stimulation, Active and Passive Movement)

  • 권용현;장성호;한봉수;최진호;이미영;장종성
    • 한국전문물리치료학회지
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    • 제12권2호
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    • pp.73-80
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    • 2005
  • We investigated the activation of the cerebral cortex during active movement, passive movement, and functional electrical stimulation (FES), which was provided on wrist extensor muscles. A functional magnetic resonance imaging study was performed on 5 healthy volunteers. Tasks were the extension of right wrist by active movement, passive movement, and FES at the rate of .5 Hz. The regions of interest were measured in primary motor cortex (M1), primary somatosensory cortex (SI), secondary somatosensory cortex (SII), and supplementary motor area (SMA). We found that the contralateral SI and SII were significantly activated by all of three tasks. The additional activation was shown in the areas of ipsilateral S1 (n=2), and contralateral (n=1) or ipsilateral (n=2) SII, and bilateral SMA (n=3) by FES. Ipsilateral M1 (n=1), and contralateral (n=1) or ipsilateral SII (n=1), and contralateral SMA (n=1) were activated by active movement. Also, Contralateral SMA (n=3) was activated by passive movement. The number of activated pixels on SM1 by FES ($12{\pm}4$ pixels) was smaller than that by active movement ($18{\pm}4$ pixels) and nearly the same as that by passive movement ($13{\pm}4$ pixels). Findings reveal that active movement, passive movement, and FES had a direct effect on cerebral cortex. It suggests that above modalities may have the potential to facilitate brain plasticity, if applied with the refined-specific therapeutic intervention for brain-injured patients.

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경두개직류전류자극이 시열반응과제에 대한 운동 수행 능력에 미치는 영향 (The Effects of Transcranial Direct Current Stimulation in Motor Performance of Serial Reaction Time Task)

  • 김중선;남석현;조인술
    • The Journal of Korean Physical Therapy
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    • 제22권5호
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    • pp.103-108
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    • 2010
  • Purpose: The aim of this study is to investigate whether motor cortex excitability by transcranial direct current stimulation (tDCS) over primary motor cortex (M1) affects motor performance of serial reaction task. Methods: Cathodal, anodal and sham tDCS (1 mA) are applied over right M1 of 24 subjects for 30 minutes including 11minutes for task period time. We applied two electrodes at the same position to both an experimental group and a sham-controlled group, and we made 2 groups recognize to be applicated of stimulation. Flexion, extension of wrist and thumb flexion are carried out following colors of arrows on the monitor. Serial reaction time task was applied to confirm the difference of the reaction time between 2 groups. Results: Reaction time is decreased in both tDCS-group and Sham-controlled tDCS group, and the degree of reduction is much greater in the post-test than pre-test. Reduction of reaction time between groupsis statistically significant. Conclusion: We consider that anodal tDCS increased the cortical excitability of the underlying motor cortex and it can be helpful to modulate motor performance. It seems that tDCS is an effective modality to modulate brain function, and it will be great help to mediate strategy for the brain injury patients.

미각자극에 따른 감각 및 감성적 미각정보 처리과정의 기능적 매핑 비교 (Comparisons of functional brain mappings in sensory and affective aspects following taste stimulation)

  • 이경희
    • 감성과학
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    • 제15권4호
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    • pp.585-592
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    • 2012
  • 음식물 섭취는 영양상태의 유지와 생존을 위해 필요하며, 미각은 가장 기본적인 감각 중의 하나이다. 맛을 느끼는 미각세포는 다섯 가지 기본 맛(단맛, 쓴맛, 짠맛, 신맛, 감칠맛)에 대해 반응한다. 그러나 뇌에서 맛감각의 처리과정과 미각피질의 조직화된 원리에 대한 이해는 여전히 부족한 실정이다. 최근 기능적 자기공명영상(fMRI), 뇌자도(MEG), 광영상(optical imaging)을 이용하여 미각 자극에 대한 뇌의 반응들을 영상화하는 연구들이 진행되고 있다. 뇌 활성 변화를 관찰할 수 있는 이들 뇌 영상 기법들은 서로 직접적인 비교 데이터를 제공하지는 못하지만, 이러한 기법들은 상호 보완적이다. 따라서 이러한 기법들을 이용한 데이터들의 상호비교는 미각 자극에 대해 반응하는 뇌의 시간-공간적인 활성 패턴 변화를 이해하는데 많은 도움을 준다. 본 연구는 감각 및 감성적 측면에서의 미각 자극에 따른 뇌의 정보처리에 있어서 미각영역의 활성화에 관한 영상매핑에 대해 최근까지 밝혀진 결과들과 연구동향을 소개하고자 한다. 미각 자극에 따른 뇌의 영상 변화를 관찰하여 구조해부학적 지도를 만드는 것은 매우 복잡한 미각의 신경회로망을 이해하는데 도움이 될 것으로 사료된다.

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Changes in Sensory Function After Transcranial Direct Current Stimulation on Primary Motor Cortex Area

  • Min, Dong-Ki
    • 한국전문물리치료학회지
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    • 제21권4호
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    • pp.1-8
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    • 2014
  • Transcranial direct current stimulation (tDCS) is a neuromodulatory technique that delivers low-intensity direct current to cortical areas, thereby facilitating or inhibiting spontaneous neuronal activity. This study was designed to investigate changes in various sensory functions after tDCS. We conducted a single-center, single-blinded, randomized trial to determine the effect of a single session of tDCS with the current perception threshold (CPT) in 50 healthy volunteers. Nerve conduction studies were performed in relation to the median sensory and motor nerves on the dominant hand to discriminate peripheral nerve lesions. The subjects received anodal tDCS with 1 mA for 15 minutes under two different conditions, with 25 subjects in each groups: the conditions were as follows tDCS on the primary motor cortex (M1) and sham tDCS on M1. We recorded the parameters of the CPT a with Neurometer$^{(R)}$ at frequencies of 2000, 250, and 5 Hz in the dominant index finger to assess the tactile sense, fast pain and slow pain, respectively. In the test to measure CPT values of the M1 in the tDCS group, the values of the distal part of the distal interphalangeal joint of the second finger statistically increased in all of 2000 Hz (p=.000), 250 Hz (p=.002), and 5 Hz (p=.008). However, the values of the sham tDCS group decreased in all of 2000 Hz (p=.285), 250 Hz (p=.552), and 5 Hz (p=.062), and were not statistically significant. These results show that M1 anodal tDCS can modulate sensory perception and pain thresholds in healthy adult volunteers. The study suggests that tDCS may be a useful strategy for treating central neurogenic pain in rehabilitation medicine.

The Effects of Melatonin on Cisplatin-Induced Renal Cortical Cell Injury in Rabbits

  • Kim, Chung-Hui;Han, Jin;Kim, Na-Ri;Park, Ju-Hee;Yang, Young-Churl;Kim, Eui-Yong
    • The Korean Journal of Physiology and Pharmacology
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    • 제5권3호
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    • pp.223-230
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    • 2001
  • Melatonin, a pineal gland hormone, is believed to act as an antioxidant via the stimulation of radical detoxifying enzymes and scavenging of free radicals. In this study, effects of in vitro and in vivo treatments of melatonin on the cisplatin-induced lipid peroxidation, LDH release and plasma creatinine were determined in rabbit renal cortical cells. The level of malondialdehyde (MDA) was assayed as an index of lipid peroxidation and the level of LDH release as an indicator of cellular damage. In in vitro studies, cisplatin increased the levels of MDA and LDH release in a concentration-and time-dependent manner. Melatonin inhibited the cisplatin-induced lipid peroxidation and LDH release in a concentration-dependent manner. The minimal effective concentration of melatonin that significantly reduced the $300\;{\mu}M$ cisplatin-induced lipid peroxidation and LDH release was 1 mM. In in vivo studies, the levels of lipid peroxidation and LDH release in renal cortical cells increased significantly 24 or 48 hours after a single injection of cisplatin (6 mg/kg). When the cisplatin-injected rabbits were pretreated with 10 mg/kg of melatonin, a significant reduction in both lipid peroxidation and LDH release was observed. The plasma creatinine level increased from $0.87{\pm}0.07$ mg/dl in control to $6.33{\pm}0.54$ mg/dl in cisplatin-injected rabbits (P<0.05). Melatonin partially prevented the increase in serum creatinine level $(1.98{\pm}0.11\;mg/dl)$ by cisplatin (P<0.05). In the proximal tubules from cisplatin-treated group, tubular cells had microvilli of variable heights. Necrotic debris was seen in tubular lumens. In most of cells, the mitochondria and lysosomes were increased in frequency. The endocytic vacuoles were not prominent and distribution of the brush border was irregular and shortened. These cisplatin-induced morphological changes were moderate in the melatonin-pretreated group. These results suggest that the toxicity of cisplatin is associated with the generation of reactive oxygen free radicals and that melatonin is a powerful antioxidant, which prevents some of the adverse effects of cisplatin.

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뇌파 영역에서 수면 발생 과정 (Sleep Onset Period from the EEG Point of View)

  • 이현권;박두흠
    • 수면정신생리
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    • 제16권1호
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    • pp.16-21
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    • 2009
  • In accordance with the development of EEG and polysomnography in the field of sleep research, the sleep onset period (SOP) between wakefulness and sleep has been considered an important part for understanding the physiology of sleep. SOP in the transition from wakefulness to sleep is a gradual process integrating various viewpoints such as behavior, EEG, physiology and subjective report. Particularly, based on understanding of EEG changes during sleep, SOP has been regarded as a pattern of topographical change in specific frequency and specific state in EEG. Studies on quantitative EEG (qEEG) and event-related potential (ERP) have suggested that SOP shows the changes of functional coordination at the specific cortical areas in qEEG and the changes of regular patterns in response to environmental stimulation in ERP. The development of sleep EEG and topographic mapping of EEG is expected to integrate various viewpoints of SOP and clarify the neurophysiologic mechanism of SOP further.

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