• Title/Summary/Keyword: 중추성 자극

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Difference of Sensory Changes by Central and Peripheral Stimulation for Improving Life Care in Chronic Low Back Patients (만성 허리통증환자의 라이프 케어 증진을 위한 중추성과 말초성 자극에 따른 감각변화의 차이)

  • Kim, Kyung-Yoon;Park, Chi-Bok
    • Journal of Korea Entertainment Industry Association
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    • v.14 no.8
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    • pp.221-230
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    • 2020
  • This study aimed to investigate the difference of sensory changes by central and peripheral stimulation for improving life care in chronic low back pain patients. Twelve chronic low back pain patients were randomly assigned to central stimulation (CS, n=6) and peripheral stimulation (PS, n=6). Quantitative sensory test (QST), pressure pain threshold (PPT) and Korean oswestry back pain disability index (KODI) were used to quantitatively measure and analyze. As a result, QST, PPT and KODI showed significant differences by period (p<.01) but did not showed any difference between the two groups (p>.05). Therefore, both stimulations had significant effects on increased sensory threshold and function improvement of the muscles that became sensitive due to pain. It is thought to be significant in improving life care for patients with chronic low back pain.

Effect of Knee Joint Stimulation on the Activity of Phrenic Nerve and Inspiratory Nuron in the Cat (슬관절 자극이 횡격신경 및 흡식중추신경에 미치는 영향)

  • Cho, Dong-Ill;Han, Hee-Chul;Nahm, Sook-Hyun
    • Tuberculosis and Respiratory Diseases
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    • v.40 no.6
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    • pp.683-693
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    • 1993
  • Background: During movement the major inputs to nervous system come from firstly the muscle and joint to maintain posture and motion and secondly the chemoreceptors and baroreceptors to adjust the cardiovascular and respiratory function. Their complex relationships are generally studied for many years but the direct relation between the joint and respiratory system is not studied thoroughly until now. So this experiment was performed to determine whether the natural movement of knee joint can cause the enhancement of respiratory function by observation of the changes of respiratory rate, phrenic nerve activity and inspiratory neuron activity during the stimulation of knee joint in cat anesthetized with $\alpha$-chloralose. Method: Twenty six male adult cats were used and the extracelluar recording using bipolar platinum electrode and carbon filament electrode was done to record the changes in the activities of phrenic nerve and inspiratory neuron movement of knee joint, injection of chemicals into the joint cavity and electrical stimulation of articular nerve were done. Results: The 60 Hz. could not but 120 Hz. flexion-extension movement of knee joint increased respiratory rate(R.R.), tidal neural activity(TNA) and minute neural activity(MNA). Intra-articular injection of lactate could not increase R.R. but significantly increase TNA and MNA which represented the enhanced respiratory function. Injection of potassium chloride showed similar effects with the case of lactate but the duration of effect was shorter. The electrical stimulation of medial articular nerve with IV strength which could activate only group I and II afferents showed increased TNA and MNA during stimulation but 20 V stimulation which could activate all the afferents increased all the respiratory parameters. The changes of inspiratory neuron activity by knee joint stimulation was similar to that of phrenic nerve. Conclusion: The respiratory center could be directly stimulated by the activation of group I and II articular afferents and it seemed that the magnitude of the respiratory center enhancement is proportional to the amount of sensory information from the knee joint. These facts might suggest that the respiratory function could be enhanced even by the normal movement of knee joint.

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Functional MRI ofThe Supplementary Motor Area in Hand Motor Task: Comparison Study with The Primary Motor Area (수지운동자극을 사용한 부운동중추의 기능적 MR연구: 일차운동중추와의 비교)

  • 이호규;김진서;최충곤;임태환
    • Investigative Magnetic Resonance Imaging
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    • v.1 no.1
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    • pp.103-107
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    • 1997
  • Purpose: To investigate the localization and functional lateralization of the supplementary motor area (SMA) in motor activation tests in comparison to that of the primary motor area. Materials and Methods: Seven healthy volunteers obtained echoplanar imaging blood oxygen level dependent technique. This study was carried on 1.5T Siemens Magnetom Vision system with the standard head coil. Parameters of EPI were followed as; TR/TE : 1.0/66.0msec, flip angle: $90^{\circ}$, field of view: $22cm{\times}22cm,{\;}matrix:{\;}128{\times}128$, slice number/slice thickness/gap: 1O/4mm/0.8mm with fat suppression technique. Motor task as finger opposition in each hand consisted of 3 sets of alternative rest and activation periods. Postprocessing were done on Stimulate 5.0 by using cross-correlation statistics. To compare the functional lateralization of the SMA in the right and left hand tests, each examination was evaluated for the percent change of signal intensity and the number of activated voxels both in the SMA and in the pri¬mary motor area. Hemispheric asymmetry was defined as difference of summation of the activted voxels between each hemisphere. Results: Percent change of signal intensity in the SMA (2.49 -3.06%) is lower than that of primary motor area(4.4 -7.23%). Percent change of signal intensity including activated voxels were observed almost equally in the right and left SMA. As for summation of activated voxels, primary motor area had significant difference between each hemisphere but not did the SMA. Conclusion: Preferred contralateral dominant hemisphere and hemispheric asymmetry were detected in the primary motor area but not in the SMA.

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Effect on Physiological Signals According to Different Arousals (각성의 유형이 생리신호에 미치는 영향)

  • 황민철;임좌상;김혜진;김세영;한문성
    • Proceedings of the Korean Society for Emotion and Sensibility Conference
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    • 2001.11a
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    • pp.59-63
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    • 2001
  • 인간의 각성은 감성의 한 차원을 차지하여 인간의 작업수행의 효율성에 미치는 영향을 끼치고 있다. 각성의 정확한 측정 및 분석은 인간의 작업에 생산성 극대화를 제시할 수 있다. 그러나 각성은 자극유형에 따라 모드(mode)가 다르게 나타난다. 본 연구는 이러한 각성의 유형에 따른 생리신호의 반응을 측정하여 각성별 정량화 방법을 제시하고자 한다. 20명의 대학생이 각기 다른 각성 자극인 신체적 각성 및 인지적 각성이 유발되었고, 그에 따른 생리신호 반응을 측정, 분석하였다. 결과적으로 각성의 유형은 중추신경계 및 자율신경계 별로 각각 다른 반응을 보였다.

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Functional Mapping of the Neural Basis for the Encoding and Retrieval of Human Episodic Memory Using ${H_2}^{15}O$ PET ({H_2}^{15}O$ PET을 이용한 정상인의 삽화기억 부호화 및 인출 중추 뇌기능지도화)

  • Lee, Jae-Sung;Nam, Hyun-Woo;Lee, Dong-Soo;Lee, Sang-Kun;Jang, Myoung-Jin;Ahn, Ji-Young;Park, Kwang-Suk;Chung, June-Key;Lee, Myung-Chul
    • The Korean Journal of Nuclear Medicine
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    • v.34 no.1
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    • pp.10-21
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    • 2000
  • Purpose: Episodic memory is described as an 'autobiographical' memory responsible for storing a record of the events in our lives. We performed functional brain activation study using ${H_2}^{15}O$ PET to reveal the neural basis of the encoding and the retrieval of episodic memory in human normal volunteers. Materials and Methods: Four repeated ${H_2}^{15}O$ PET scans with two reference and two activation tasks were performed on 6 normal volunteers to activate brain areas engaged in encoding and retrieval with verbal materials. Images from the same subject were spatially registered and normalized using linear and nonlinear transformation. Using the means and variances for every condition which were adjusted with analysis of covariance, t-statistic analysis were performed voxel-wise. Results: Encoding of episodic memory activated the opercular and triangular parts of left inferior frontal gyrus, right prefrontal cortex, medial frontal area, cingulate gyrus, posterior middle and inferior temporal gyri, and cerebellum, and both primary visual and visual association areas. Retrieval of episodic memory activated the triangular part of left inferior frontal gyrus and inferior temporal gyrus, right prefrontal cortex and medial temporal area, and both cerebellum and primary visual and visual association areas. The activations in the opercular part of left inferior frontal gyrus and the right prefrontal cortex meant the essential role of these areas in the encoding and retrieval of episodic memory. Conclusion: We could localize the neural basis of the encoding and retrieval of episodic memory using ${H_2}^{15}O$ PET, which was partly consistent with the hypothesis of hemispheric encoding/retrieval asymmetry.

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Difference of fMRI between the Tickling and Sensory Stimulation Using 3.0 Tesla MRI (3.0T 자기공명영상장치를 이용한 사람의 간지럼자극과 감각중추 자극의 활성화 차이)

  • Khang, Hyun-Soo;Lim, Ki-Seon;Han, Dong-Kyoon
    • The Journal of the Korea Contents Association
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    • v.10 no.2
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    • pp.286-294
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    • 2010
  • This study was performed to identify the cerebral network associated with sensation through the tickling stimulation, which is distinctive from the rest of other networks processing normal stimulation and to investigate the difference of laughing mechanism which is closely related to tickling using functional MRI(fMRI). A 16 healthy volunteers (mean age: 28.9) on a 3.0T MR scanner during two sensation conditions. Counterbalanced stimulus were presented across the participants, and the stimulation was used block design. Acquired data was analyzed by the statistical parametric mapping (SPM 99). Subject and group analysis was performed. Individual analysis showed the activation of somatic sensation area in both tasks and the tickling sensation test showed more activated area in the Wernicke's area(BA40) compared to the normal sensation. The group analysis result shows that under normal stimulations, both sides of somatosensory cortices(BA 1,2 and 3) were activated and under tickling stimulation, not only the cortices but also those huge activation on thalamus, cingulate gyrus and insular lobe were detected. When the tickling was stopped, significant activations were shown in right cingulate gyrus, left MFG area and left insular lobe. A cerebral area responsible for recognizing tickling sensation was examined and the primitive stimulation such as tickling is much closely related to laugh, which is an important factor for various social activities.

Regulatory Role of Adrenal Medulla and Renin-Angiotensin System in Sympathetic Neurotransmission in Spontaneously Hypertensive and Normotensive Rats (선천성 고혈압 흰쥐와 정상혈압 흰쥐의 교감신경성 신경전달에 미치는 부신수질 및 Renin-Angiotensin계의 역할)

  • Kim, In-Kyeom;Kim, Choong-Young
    • The Korean Journal of Pharmacology
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    • v.30 no.1
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    • pp.75-86
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    • 1994
  • To assess the role of adrenal medulla and renin-angiotensin system in the regulation of sympathetic neurotransmission, the pressor response to PNS was evaluated in pithed SHR and normotensive WKY or SDR with or without adrenal demedullation and/or enalapril pretreatment. Three weeks after adrenal demedullation, MAP and the heart rate of demedullated rats were similar to their corresponding sham-operated groups. The pressor response to PNS was frequency-dependent, and blocked by prazosin. In contrast to the normotensive rats, in SHR, the pressor response to PNS was attenuated in demedullated rats as compared with sham-operated rats. However, the attenuation of PNS-induced pressor responses in demedullated SHR was not observed in enalapril-treated SHR. The adrenal demedullation in SHR did not affect the plasma and aortic catecholamine contents in spite of the decreased catecholamine contents of adrenal gland, nor ACE activity in aortic strips. But, in WKY rats, the aortic catecholamines, especially epinephrine, contents as well as ACE activity were increased by adrenal demedullation. These results suggest that the facilitatory role of adrenal medulla in sympathetic neurotransmission depends upon the activation of renin-angiotensin system, and that the compensatory regulation of renin-angiotensin system takes place in normotensive rats but not in SHR.

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Effect of Electrical Stimulation of the Spinal Cord on Pressor Response in the Cat (고양이 척수의 전기적 자극에 의한 심맥관 반응)

  • Kim, Kee-Soon;Randall, Walter C.;Peiss, Clarence N.
    • The Korean Journal of Physiology
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    • v.4 no.2
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    • pp.83-89
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    • 1970
  • 전기적 자극법은 심맥관계기능의 신경성조절을 이해하기위해 널리 이용되는 방법이며, 일반적으로 중추신경에는 고빈도, 말초신경에서는 저빈도 자극에 의해 최대반응이 유발된다고 알려지고 있으며, 이는 흥분파의 민도가 말초로 내려오며 감소되기 때물이라 해석되고 있다. 또한편 신경계의 어떤 단위위에서건 자극민도가 어느 한계를 넘으면 유발된 반응은 유지되지를 못하고 감쇠소실되는 것으로 이는 주로 시납스간 흥분파전달능 부전에 기인될 것이라고 믿어지고있다. 그러나 고위주추계와 말초를 연결하고 있는 척수에 있어서는 아직 최적전기적 자극조건도 분명히 알려져 있지 않을 뿐 아니라 이 부위에서도 고빈도자극시에 반응이 어느 정도 감쇠하는지에 대한 보고가 없기에 이를 추구코자 저자는 고양이의 상부경수를 면수와 연결부에서 완전 절단하기 전후 여러가지 자극조건으로 자극하여 몇 가지 결론을 얻었기에 보고하는 바이다. 1) 연수와 연결부에서 완전절단을 하기 전에는 경수$(C_1{\sim}C_2)$의 백질, 회백질의 여러부위에서 심맥관반응이 유발되었으나 절단후에는 백질중의 만두부위(좌 $2{\sim}3\;mm$, 배면으로 부터 $0.3{\sim}1.0\;mm$$2.5{\sim}3.5\;mm$)에만 반응이 유발되었으며, 이 두 부위는 심맥관계기능을 지배조절하는 원심성 섬유의 통로라고 사료되었다. 2) 최대반응은 자극조건(빈도 자극파지속시간 강도) 100/sec-1 mesc-3V 및 20/sec-3 msec-3V에서. 최장지속반응은 20/sec-3msec에서 유발되었으므로, 후자가 척수부에 있어 심맥관계반응을 유발키 위한 최적자극조건으로 생각된다. 3) 자극면도 20/sec 이하에서 반응유지가 잘된다는 결과는 생리적 조건하에서 척수를 통과하는 흥분파의 빈도가 20/sec를 넘지 않을 것이란 것을 시사한다. 4) 반응지속정도는 최초의 최대반응의 반으로 감쇠되기까지 소요되는시간 즉 50% 반응감쇠시간으로 표시하였으며, 척수에서는 대뇌피질 및 간뇌에서보다 심맥관계반응의 50%반응감쇠시간이 현저히 긴 것을 알 수 있었다.

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Motor Evoked Potential Study with Magnetic Stimulation in Ischemic Stroke Patients (허혈성 뇌졸중 환자에서 Magnetic Stimulation에 의한 운동유발전위 반응)

  • Kim, Seong-Min;Suh, Sang-Dug;Lee, Jun;Hah, Jung-Sang
    • Journal of Yeungnam Medical Science
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    • v.11 no.2
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    • pp.248-261
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    • 1994
  • This study was undertaken to evaluate the clinical usefulness of magnetic motor evoked potential (MEP) in the diagnosis of stroke and predicting the motor improvement following stroke. The cortical, cervical and lumbar stimulations were performed in the case of 24 healthy controls and 24 ischemic stroke patients. The central motor conduction time (CMCT) was represented by the difference of latency to a target muscle between after transcranial stimulation and after cervical or lumbar stimulation. There was no case showing no response in controls. But in 11 out of 24 ischemic patients, we could not get cortical MEP. Mean CMCT of abductor pollicis brevis muscle was not significantly different in controls and stroke patients in whom MEPs were recorded. There were significant differences between mean CMCT of normal controls and that of stroke patients showing MEPs in AH Muscle. MEP Results from testing the stroke patients were correlated with site of lesion, degree of motor weakness and motor improvement after 1 to 2 months. These results suggest that magnetic MEP is easy and useful in electrophysiological test of central motor pathway and is useful indicator for representing the motor weakness and predicting the motor outcome in acute ischemic stroke patients.

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Disturbed Functional Asymmetry of Sensorimotor Cortex in Schizophrenia: A Study with Functional Magnetic Resonance Imaging (정신분열증에서 감각운동피질의 기능적 비대칭성의 장애: 기능적 자기공명영상을 이용한 연구)

  • Ahn, Kook-Jin;Chae, Jeong-Ho;Kim, Tae;Kim, Euy-Neyng;Lee, Jee-Mun;Choi, Kyu-Ho;Hahn, Seong-Tai
    • Investigative Magnetic Resonance Imaging
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    • v.4 no.1
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    • pp.52-57
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    • 2000
  • Purpose : The purpose of this study was to investigate the pattern of cerebral response to motor tasks in patients with schizophrenia compared with normal subjects using functional MRI. Materials and methods ; Nine right handed-schizophrenic patients and six right-handed normal subjects were included. We used right hand movement as task. Series of 120 consecutive echo-planar images per section were acquired during three cycles of task and rest activations. Lateralization index of cortical response was measured and compared between patients and normal subjects. Results ; Right hand motor task was associated with greater activation in left sensorimotor cortex than the right in normal subjects. Schizophrenia patients showed relatively decreased activation in left cortex and increased activation in right cortex compared with normal subjects. In one patient, reversed lateralization was noted. Conclusion : Normal hemispheric asymmetry of cortical response to motor task was found in different pattern in schizophrenia. Our result is consistent with functional disturbance of motor circuitry in this disorder. Functional MRI will play an important role in diagnosis and research of this disorder.

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