• 제목/요약/키워드: Electrophysiologic study

검색결과 64건 처리시간 0.022초

공복혈당수치와 운동유발전위의 상관관계에 대한 후향적 분석 : 중추운동신경과 말초운동신경의 비교 (A Retrospective Study on the Correlation between Fasting Blood Sugar and Motor Evoked Potentials : Comparison between Central and Peripheral Motor Nerve)

  • 나병조;박성욱;정우상;문상관;박정미;고창남;조기호;김영석;배형섭;홍진우
    • 대한한방내과학회지
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    • 제28권3호
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    • pp.434-441
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    • 2007
  • Objectives : Peripheral neurodegeneration occurs in diabetes mellitus (DM), both sensory and motor nerve. but we don't know exactly if DM affects central nerve pathway for all studies. Electrophysiologic study is one of the most important diagnostic tools for diabetic neuropathy. Electroneurography and electromyography are usually used. but evoked potentials (EP) is more sensitive to small nerve fiber damages and useful for central nerve evaluation in addition to peripheral nerves. Most diabetic neuropathy studies by EP have been performed with somatosensory evoked potentials (SSEP). In contrast, the objective of this study is to investigate if DM targets central motor neurons by assessing the relation between fasting blood sugar (FBS) and motor evoked potentials (MEP) latency. Methods : We inspected the medical records of 34 patients who had MEP tests during admitting days. The latency from cervical portion to abductor pollicis brevis was used as peripheral motor conduction time (PMCT). and the latency from vertex to cervical portion was used as central motor conduction time (CMCT). Then, they were correlated to FBS using correlation analysis. Results : There was a significant linear relation between FBS and PMCT (Pearson's correlation coefficient r=0.487, p<0.01), but a poor linear relation between FBS and CMCT (Pearson's correlation coefficient r=-0.l97. p>0.05). Conclusions : This study suggests that prolonged latencies of MEP in DM may be due to peripheral neuropathy rather than dysfunction of central motor pathway. therefore the clinical use of MEP to diabetic neuropathy has to be divided segmentally.

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Effects of Human Mesenchymal Stem Cell Transplantation Combined with Polymer on Functional Recovery Following Spinal Cord Hemisection in Rats

  • Choi, Ji Soo;Leem, Joong Woo;Lee, Kyung Hee;Kim, Sung-Soo;SuhKim, Haeyoung;Jung, Se Jung;Kim, Un Jeng;Lee, Bae Hwan
    • The Korean Journal of Physiology and Pharmacology
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    • 제16권6호
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    • pp.405-411
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    • 2012
  • The spontaneous axon regeneration of damaged neurons is limited after spinal cord injury (SCI). Recently, mesenchymal stem cell (MSC) transplantation was proposed as a potential approach for enhancing nerve regeneration that avoids the ethical issues associated with embryonic stem cell transplantation. As SCI is a complex pathological entity, the treatment of SCI requires a multipronged approach. The purpose of the present study was to investigate the functional recovery and therapeutic potential of human MSCs (hMSCs) and polymer in a spinal cord hemisection injury model. Rats were subjected to hemisection injuries and then divided into three groups. Two groups of rats underwent partial thoracic hemisection injury followed by implantation of either polymer only or polymer with hMSCs. Another hemisection-only group was used as a control. Behavioral, electrophysiological and immunohistochemical studies were performed on all rats. The functional recovery was significantly improved in the polymer with hMSC-transplanted group as compared with control at five weeks after transplantation. The results of electrophysiologic study demonstrated that the latency of somatosensory-evoked potentials (SSEPs) in the polymer with hMSC-transplanted group was significantly shorter than in the hemisection-only control group. In the results of immunohistochemical study, ${\beta}$-gal-positive cells were observed in the injured and adjacent sites after hMSC transplantation. Surviving hMSCs differentiated into various cell types such as neurons, astrocytes and oligodendrocytes. These data suggest that hMSC transplantation with polymer may play an important role in functional recovery and axonal regeneration after SCI, and may be a potential therapeutic strategy for SCI.

정상성인의 외측대퇴피부신경 체감각 유발전위 검사 (Lateral Femoral Cutaneous Nerve Somatosensory Evoked Potential Study in Normal Adults)

  • 문성식;박미영
    • Journal of Yeungnam Medical Science
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    • 제18권1호
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    • pp.67-74
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    • 2001
  • 정상 성인 남녀 36명(남:여=23:13)을 대상으로 LFCN의 SSEP검사를 시행한 결과로서 다음과 같은 결론을 얻을 수 있었다. 1. MP의 진단에 있어서는 $P_0$, $N_1$의 절대잠복기 뿐만 아니라 좌 우측 잠복기의 차이값($DP_0$, $DN_1$을 비교하여 보는 것이 더욱 중요하며 그 차이는 모두 2 msec 이하였다. 2. $P_0N_1$의 진폭만으로 비정상과 정상의 기준을 정할 수는 없으나 좌 우측 평균 진폭의 차이는 1.6배 이하였다. 3. $P_0(N_1)$, $DP_0(DN_1)$, 그리고 A(DA)에 있어 남녀군 간의 차이는 없었다.

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정상 성인의 정중지단신경에 대한 전기생리학적 연구 (An Electrophysiologic Study on the Median Digital Nerves in Healthy Adults)

  • 김종순;이현옥;안소윤;구봉오;남건우;류재관;류재문
    • The Journal of Korean Physical Therapy
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    • 제17권3호
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    • pp.329-338
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    • 2005
  • The determination of peripheral nerve conduction velocity is an important part to electrodiagnosis. Its value as neurophysiologic investigative procedure has been known for many years but normal value of digital nerve was not reported in Korea. To evaluate of digital nerve conduction velocity of median nerve for obtain clinically useful reference value and compare difference in each fingers. 71 normal volunteers(age, 19-65 years; 142 hands) examined who has no history of peripheral neuropathy, diabetic mellitus, chronic renal failure, endocrine disorders, anti-cancer medicine, anti-tubercle medicine, alcoholism, trauma, radiculopathy. Nicolet Viking II was use for detected conduction velocity and amplitude of digital nerves in median nerve. Data analysis was performed using SPSS. Descriptive analysis was used for obtain mean and standard deviation, ANOVA was used to compare each fingers and independent t-test was used to compare between Rt and Lt side also compare between different in genders. Conduction velocity of the right thumb was 49.77m/sec, index finger was 56.80m/sec, middle finger was 56.15m/sec and ring finger was 53.38m/sec. The left thumb was 50.48m/sec, index finger was 56.76m/sec, middle finger was 55.99m/sec and ring finger was 53.23m/sec. Amplitude of the right thumb was $64.30{\mu}V$, index finger was $73.95{\mu}V$, middle finger was $77.97{\mu}V$ and ring finger was $43.92{\mu}V$. The left thumb was $74.21{\mu}V$, index finger was $85.72{\mu}V$, middle finger was $88.06{\mu}V$ and ring finger was $47.28{\mu}V$. There were significantly difference between thumb, index, middle and ring fingers(p<.01) but there were no statistically difference between conduction velocity and amplitude of index and middle fingers(p>.01). The conduction velocity of index finger are faster than other fingers and amplitude of middle finger are greater than other fingers. The present results revealed that electodiagnosis can easily perform in index and middle finger for digital nerve of median nerve study.

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특발성 발작성 심방세동 환자에서 P파 간격분산의 의의 (P Wave Dispersion as a Predictor of Idiopathic Paroxysmal Atrial Fibrillation)

  • 홍그루;김웅;박종선;신동구;김영조;심봉섭
    • Journal of Yeungnam Medical Science
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    • 제18권2호
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    • pp.267-276
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    • 2001
  • 특발성 발작성 심방세동 환자에서 P파 간격 분산은 대조군에 비해 유의하게 증가해 있었으며, 동율동으로 전환 후 약물로 예방 치료를 받은 경우 12개월 후 추적 검사했을 때 최대 P파 간격과 P파 간격분산이 통계적으로 의미있게 감소한다는 것을 알 수 있었다. 이는 아마도 발작성 특발성 심방세동 환자에서 정상인보다 심방내의 전기적 불안정성과 불균질성의 증가에 기인한다고 보여지며, 약물 치료를 했을 때 이러한 전기적 불안정성이 감소한다는 것을 알 수 있었다. 따라서 P파 간격분산은 향후 발작성 심방세동 환자의 선별 검사로서, 또한 치료 후 재발을 예측할 수 았는 예후 인자로서 유용하게 사용될 수 있으리라는 예측을 해보며, 이를 규명하기 위해 추후 더 많은 표본들에 대한 전향적인 시도가 이루어져야 될 것으로 사료된다.

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척골 지단 신경의 전기생리학적 연구 (An Electrophysiologic Study on the Ulnar Digital Nerves)

  • 김종순;이현옥;안소윤;구봉오;남건우;김호봉;류재관;류재문
    • 대한정형도수물리치료학회지
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    • 제11권2호
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    • pp.13-18
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    • 2005
  • The ulnar nerve extends down the arm, across the elbow, and into the hand. It provides sensation to the little and ring fingers and activates many of the small muscles in the hand. The determination of peripheral nerve conduction velocity is an important part of ulnar nerve evaluation. The electrodiagnostic value as neurophysiologic investigative procedure has been known for many years but normal value of digital nerve was not reported in Korea. The purpose of this investigation was to measure the digital nerve conduction velocity of ulnar nerve for obtain clinically useful reference value and compare difference in each fingers and then compare with the other countries. 71 normal Korean volunteers (age, 19-65 years; 142 hands) examined who has no history of peripheral neuropathy, diabetic mellitus, chronic renal failure, endocrine disorders, anti-cancer medicine, anti-tubercle medicine, alcoholism, trauma, radiculopathy. Nicolet Viking II (EMG machine) was use for detected conduction velocity and amplitude of digital nerves in ulnar nerve. Data analysis was performed using SPSS. Descriptive analysis was used for obtain mean and standard deviation and independent t-test was used to compare with ring and little finger. Conduction velocity of the right ring finger was 57.44m/sec and little finger was 55.32msec. The left ring finger was 55.55msec and little finger was 54.11msec. Amplitude of the right ring finger was $30.28{\mu}V$ and little finger was $48.36{\mu}V$. The left ring finger was $30.67{\mu}V$ and little finger was $52.76{\mu}V$. There were significantly difference between ring and little in amplitude (p<.05) but there were no statistically difference between conduction velocity of ring and little finger (p>.05). The amplitude of little finger are greater than ring finger. The present results revealed that electodiagnosis can easily perform in little finger for digital nerve of ulnar nerve study.

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파킨슨환자의 자기공명영상과 미세전극기록을 이용한 담창구 파괴술 (Pallidotomy Guided by MRI and Microrecording for Parkinson's Disease)

  • 이경진;손형선;박성찬;조경근;박해관;최창락
    • Journal of Korean Neurosurgical Society
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    • 제30권1호
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    • pp.41-46
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    • 2001
  • Objective : The exact position of the lesion during the pallidotomy is critical to obtain the clinical improvement of parkinson's disease without damage to surrounding structure. Ventriculogrphy, CT(computed tomograpy) or MRI(magnetic resonance imaging) have been used to determine the initial coordinates of stereotactic target for pallidotomy. The goal of this study was to determine whether microelectrode recording significantly improves the neurophysiologic localization of the target obtained from MRI. Methods : Twenty patients were studied. They underwent a unilateral pallidotomy. Leksell frame was applied and T1 axial images parallel to the AC-PC(anterior commissure-posterior commissure) plane using a 1.5 Tesla MRI with 3mm slice thickness were obtained. Anteroposterior coordinate of target was chosen at 2mm in front of the midcommissural point and lateral coordinate between 19 and 22mm from the midline. The vertical coordinate was calculated on coronal slice using a fast spin echo inversion recovery sequence(FSEIR) related to the position of the choroidal fissure and ranged over 4-5mm below the AC-PC plane. Confirmation of the anatomical target was done on axial slices using the same FSEIR sequence . Microrecording was done at the pallidum contralateral to the symptomatic side using an electrode with a tip diameter of $1{{\mu}m}$ diameter tip and 1.1-1.4 mOhm impedance at 1000Hz. Electrophysiologic localization of the target was also confirmed intraoperatively by macrostimulation. Results : Microrecording techniques were reliable to define the transition from the base of the pallidum which was characterized by the disappearance of spike activity and by the change of the audible background activity. Signals from high amplitude neurons firing at 200-400Hz were recorded in the pallidal base. X, Y and Z coordinates of target obtained from the MRI were within 1mm from the X, Y, Z coordinates obtained with microrecording in 16 patients (80%), 15 patients(75%), 10 patients(50%) respectively. The difference of Y coordinate between on MRI and on microrecording was 4mm in only one patient. Conclusion : The MRI was accurate to localize the target within 1mm of the error from microrecording target in 70% of the patients. 4mm discrepancy was observed only once. We conclude that MRI alone can be used to determine the target for pallidotomy in most patients. However, microrecording technique can still be extremely valuable in patents with aberrant anatomy or unusual MRI coordinates. We also consider physiologic confirmation of the target using macrostimulation to be mandatory in all cases.

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흰쥐 Tail Flick Reflex의 신경생리학적 기전 (Electrophysiologic Mechanism of Tail Flick Reflex in Rats)

  • 서상아;김전
    • The Korean Journal of Physiology
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    • 제23권1호
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    • pp.139-149
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    • 1989
  • Although tail flick reflex (TFR) in rats has been used as a classic model of the nociceptive test to evaluate the action of analgesics, there have been few studies on the origin of the latent period of TFR. Present study was performed to elucidate the mechanism of increase in latency of TFR by morphine in anesthetized rats. Tail skin and dorsolateral tail nerve were stimulated electrically and EMG activities were recorded from abductor caudae dorsalis muscle participating in tail flick reflex. In the case of noxious radiant heat stimulation to tail, the tail flick tension was recorded before and after administration of morphine. Then changes in latency and conduction velocity of peripheral nerve were evaluated. The results obtained were as follows: 1) The latencies of TFR evoked by the electrical stimulation of tail skin and dorsolateral tail nerve were all within 40 ms and were elongated by several milliseconds from control after the administration of morphine. Peripheral conduction velocities of tail flick afferent nerve were within the range of 10-25 m/s. 2) The conduction velocity of peripheral nerve was significantly reduced after morphine administration, therefore the afferent time (utilization time+conduction time to spinal cord) was significantly increased. But the time for central delay and efferent time was not affected by morphine. 3) The conduction velocity under room temperature $(20-25^{\circ}C)$ was significantly reduced after morphine while that under vasodilation state $(40{\sim}42^{\circ}C)$ increased, 30 min and 45 min after morphine. The conduction velocity under vasodilation state without treatment of morphine increased continuously 4) The latency in tension response of TFR evoked by electrical stimulation was elongated by several milliseconds from control while the latency evoked by noxious radiant heat was elongated by several seconds compared with that of control. From the above results, it could be concluded that: 1) the increased latency of TFR evoked by electrical stimulation of the tail after morphine administration was due to the reducton in conduction velocity of peripheral nerve, which was the secondry effect of morphine on the peripheral vasomotion and 2) increased latency of TFR evoked by noxious radiant heat was also due to the same effect of morphine and the increase in cutaneous insulation to the noxious heat.

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유기인제 중독에서 콜린성 위기 회복후 급성 호흡부전을 보인 Intermediate Syndrome 2예 (Two Cases of Respiratory Failure After Recovery of Cholinergic Crisis in Organophosphate Poisoning: The Intermediate Syndrome)

  • 조대경;이성은;백재중;정연태;정근호
    • Tuberculosis and Respiratory Diseases
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    • 제47권2호
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    • pp.247-254
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    • 1999
  • 급성 유기인제 중독에서의 주사망 원인인 호흡부전은 급성 콜린성 위기시에 발생하지만 콜린성 위기에서 회복된 후 콜린양 증상의 동반없이 24-96시간에 근위부 사지근육, 경부굴근 및 운동뇌신경 분포근육의 무력증과 함께 호흡부전이 발생하기도 한다. 이를 IMS이라 하며 조기에 인지하고 적절히 치료하지 못했을 때 호흡근 마비로 사망 할 수 있어 모든 유기인제 중독환자를 최소 5일 이상 병원내에서 무호흡보조 치료에 대한 준비상태를 갖추고 근접관찰 하여야 한다. 저자들은 유기인제 중독에서 콜린성 위기 회복후 호흡부전을 유발한 IMS 2 례를 경험하였기에 문헌고찰과 함께 보고하는 바이다.

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정중운동신경과 척골운동신경의 전기생리학적 연구 (An Electrophysiologic Study on the Median Motor Nerve and Ulnar Motor Nerve)

  • 김종순;이현옥;안소윤;구봉오;남건우;김영직;김호봉;류재관;류재문
    • 대한정형도수물리치료학회지
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    • 제11권2호
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    • pp.62-70
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    • 2005
  • The determination of peripheral nerve conduction velocity is an important part to electrodiagnosis. Its value as neurophysiologic investigative procedure has been known for many years but normal value of median and ulnar motor nerve was poorly reported in Korea. To evaluate of median and ulnar motor nerve terminal latency, amplitude of CMAP(compound muscle action potential), conduction velocity and F-wave latency for obtain clinically useful reference value. 71 normal volunteers(age, 19-65 years; 142 hands) examined who has no history of peripheral neuropathy, diabetic mellitus, chronic renal failure, endocrine disorders, anti-cancer medicine, anti-tubercle medicine, alcoholism, trauma, radiculopathy. Nicolet Viking II was use for detected terminal latency, amplitude of CMAP, conduction velocity and F-wave latency of median and ulnar motor nerve. Data analysis was performed using SPSS. Descriptive analysis was used for obtain mean and standard deviation, independent t-test was used to compare between Rt and Lt side also compare between different in genders. The results are summarized as follows: 1. Median motor nerve terminal latency was right 3.00ms, left 2.99ms and there was no significantly differences between right and left side and genders. 2. Median motor nerve amplitude of CMAP was right 17.26mV, left 1750mV and there was no significantly differences between right and left side and genders. 3. Median motor nerve conduction velocity was right 57.89m/sec, left 58.03m/sec and there was no significantly differences between right and left side and genders. 4. Median motor nerve F-wave latency was right 25.74ms, left 25.59ms and there was significantly differences between genders. 5. Ulnar motor nerve terminal latency was right 2.38ms, left 2.45ms and there was significantly differences between right and left side. 6. Ulnar motor nerve amplitude of CMAP was right 15.99mV, left 16.02mV and there was no significantly differences between right and left side and genders. 7. Ulnar motor nerve conduction velocity was right 60.35m/sec, left 59.73m/sec and there was no significantly differences between right and left side and genders. 8. Ulnar motor nerve F-wave latency was right 25.53ms, left 25.57ms and there was significantly differences between genders.

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