• 제목/요약/키워드: Autonomic neural system

검색결과 21건 처리시간 0.021초

일회성 대나무 밟기가 노인의 혈압과 자율신경계에 미치는 영향 (Effects of One-time bamboo stepping on the Elderly's Blood Pressure and the Autonomic Neural System)

  • 전도연;윤희영;권은표;손희수;구봉오
    • 대한물리치료과학회지
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    • 제26권2호
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    • pp.32-37
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    • 2019
  • Background: The purpose of this study is to investigate the change of blood pressure and autonomic neural system through one-time bamboo stepping in hypertensive elderly people. Design: Randomized Controlled Trial. Methods: We recruited 26 elderly people aged 65 or older for study. They sat for 10 minutes in a chair, rested, and measured pre-exercise blood pressure and autonomic neural system. The blood pressure was measured three times and the mean value was used and the autonomic neural system was measured once. Bamboo stepping exercise was performed for 20 minutes. Blood pressure and autonomic neural system were measured 5 times immediately after exercise, and every 15 minutes at 60 minutes after bamboo stepping exercise. Results: There was a significant difference in the decrease of systolic blood pressure after one-time bamboo stepping exercise, the change of parasympathetic activity (HF), heart rate variability (HRV) and BPM measured immediately after exercise at 15 minutes after exercise, There was no significant difference in autonomic neural system change. Conclusion: One-time Bamboo stepping exercise is effective in decreasing systolic blood pressure of the hypertensive elderly.

기관지천식에서의 신경적 기전 (Neural Mechanism in Bronchial Asthma)

  • 최병휘
    • Tuberculosis and Respiratory Diseases
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    • 제41권2호
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    • pp.73-86
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    • 1994
  • In addition to classic cholinergic and adrenergic pathways, the existence of a third division of autonomic control in the human airways has been proved. It is called a nonadrenergic noncholinergic(NANC) nervous system, and difficult to study in the absence of specific blockers. Neuropeptides are certainly suggested to be transmitters of this NANC nervous system. It is very frustrating to understand the pathophysiologic role of these peptides in the absence of any specific antagonists. However, further studies of neuropeptides might eventually lead to novel forms of treatment for bronchial asthma. Another study of the interaction between different components of the autonomic nervous system, either in ganglionic neurotransmission or by presynaptic modulation of neurotransmitters at the end-organ will elute neural control in airway disease, particularly in asthma. Studies of how autonomic control may be disordered in airway disease should lead to improvements in clinical management. Epithelial damage due to airway inflammation in asthma may induce bronchial hyperresponsiveness. Axon reflex mechanism is one of possible mechanisms in bronchial hyperresponsiveness. Epithelial damage may expose sensory nerve terminals and C-fiber nrve endings are stimulated by inflammatory mediators. Bi-directional communication between the nerves and mast cells may have important roles in allergic process. The psychological factors and conditioning of allergic reactions is suggested that mast cell activation might be partly regulated by the central nervous system via the peripheral nerves. Studies in animal models, in huamn airways in vitro and in patients with airway disease will uncover the interaction between allergic disease processes and psychologic factors or neural mechainsms.

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가상현실환경에서 멀미 측정을 위한 생리신호 분석 (Practical BioSignal analysis for Nausea detection in VR environment)

  • Park, M.J.;Kim, H.T.;Park, K.S.
    • 한국감성과학회:학술대회논문집
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    • 한국감성과학회 2002년도 추계학술대회 논문집
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    • pp.267-268
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    • 2002
  • We developed nausea, caused by disorder of autonomic nervous system, detection system using bio-signal analysis and artificial neural network in virtual reality enironment. We used 16 bio-signals, 9 EEGs, EOG, ECG, SKT, PPG, GSR, RSP, EGC, which has own analysis methods. We estimated nausea level by artificial neural network.

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토끼 기관의 평활근 수축에 미치는 substance P 의 작용기전 (An Action Mechanism of Substance P on the Tracheal Smooth Muscle Contraction in Rabbits)

  • 명창률
    • Journal of Chest Surgery
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    • 제27권1호
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    • pp.9-14
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    • 1994
  • Substance P[SP] has been known to be a peptide which may be plays a role as a neurotransmitter in central nervous system as well as peripheral autonomic nervous system. It has been reported that SP was widely distributed in the nerve of the tracheal smooth muscle and induced the muscle contraction. However, definite action mechanism of SP in the tracheal smooth muscle was not clear, yet. Thus, present experiment was performed to elucidate an effect of substance P and an action mechanism on contraction of the smooth muscle in rabbits. In order to find a neural mechanism to the effect of SP on the tracheal smooth muscle contraction, atropine sulfate, tetrodotoxin, propranol and phentolamine were administered at 10 min before the addition of SP. Otherwise,to find effect of SP antagonists on the action of SP, [D-Pro2, D-Try7,9]SP, [D-Arg1, D-Pro2, D-Trp7,9, Leu11]SP and [D-Pro4, D-Trp7,9]SP were administered as a same fashion. These following results were obtained. 1] SP induced contraction of the tracheal smooth muscle under resting condition and the contraction was increased dose-dependently. 2] Cholinergic blocker[atropine], neural blocker[tetrodotoxin] and adrenergic blocker[propranol and phentolamine] didn`t have an effect on the contractile response. 3] Three SP antagonists inhibited the contractile response. 4] Isoproterenol relaxed the contraction induced by SP. The above results suggested that SP induced contraction of the tracheal smooth muscle directly act to the smooth muscle in rabbits. The autonomic nervous system did not seem to participate in the SP action.

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만성 폐쇄성 폐질환 환자의 자율신경 장애 (Dysfunction of Autonomic Nervous System in Patients with Chronic Obstructive Pulmonary Diseases)

  • 신경철;이관호;박혜정;신창진;이충기;정진홍;이현우
    • Tuberculosis and Respiratory Diseases
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    • 제46권3호
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    • pp.317-326
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    • 1999
  • 연구목적: 호흡기에 대한 자율신경 기능도 기도 및 혈관의 평활근, 접막하선의 점액분비. 기관지 순환 혈류조절, 비만 세포의 염증 반응에 관계되는 매개물의 분비등 매우 다양하게 나타나며 이들 자율신경 장애는 기도 폐쇄의 원인으로 작용한다. 천식은 자율신경계 이상이 원인으로 작용하고 특히 부교감신경 기능 항진이 중요한 원인으로 알려져 있다. 저자들은 심혈관계와 호흡기 자율신경 지배가 공통적으로 일어난다는 사실을 기초로 비관혈적이고 안정한 심혈관 지율신경 검사를 실시하여 만성 폐쇄성 폐질환 환자에서 자율신경 장애유무를 알아보았다. 방 법: 대상은 영남대학교 의과대학 부속병원에서 만성 폐쇄성 폐질환으로 진단 받은 환자 20명과 건강진단 센터에서 건강한 것으로 판정 받은 비슷한 나이의 20명을 대조군으로 하였다. 만성 폐쇄성 폐질환은 American Thoracic Society의 정의를 따랐으며 허혈성 심장질환, 부정맥, 당뇨병, 중심성 및 말초성 신경질환 등과 같은 자율신경계에 영향을 미칠 수 있는 질환이 동반된 경우는 제외하였다. 자율신경검사는 Ewing과 Clarke의 방법을 사용하였으며 모든 대상에서 동맥혈 가스분석과 폐기능 검사를 동시에 실시하였다. 결 과: 만성 폐쇄생 폐질환 환자는 건강한 사랑에 비하여 빈번하게 자율신경 장애가 동반되어 있었으며 만성 폐쇄성 폐질환 환자에서 교감신경 장애보다 부교감신경 장애가 더 뚜렷하였다. 만성 폐쇄성 폐질환은 질병 이환 기간이 길거나, 흡연량이 많거나, 폐기능 검사상 $FEV_1$ 및 FVC 감소 정도가 심할수록 그리고 저산소혈증이 심한 경우에 자율신경 장애가 심하였으나 연령, 만성폐쇄성 폐질환의 종류 및 동맥혈 이산화탄소 분압과는 차이가 없었다. 결 론: 만성 폐쇄성 폐질환은 부교감신경 장애가 동반되어 있으며, 부교간신경 장애는 만성 폐쇄성 폐질환의 정도가 심할수록 더 뚜렷하게 나타났다. 이러한 부교감신경 장애는 만성 폐쇄성 폐질환의 원인으로 작용하기보다는 질병의 진행으로 인한 자율신경계의 기능 저하로 생각된다.

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Cardiac Autonomic Control and Neural Arousal as Indexes of Fatigue in Professional Bus Drivers

  • Lecca, Luigi I.;Fadda, Paolo;Fancello, Gianfranco;Medda, Andrea;Meloni, Michele
    • Safety and Health at Work
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    • 제13권2호
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    • pp.148-154
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    • 2022
  • Background: Bus driving is a mentally demanding activity that requires prolonged attention to ensure safety. The aim of the study was to assess mental fatigue caused by driving a public bus and to find a profile of workers at higher risk. Methods: We evaluated changes of critical flicker fusion (CFF) (index of central arousal) and heart rate variability (HRV) (index of autonomic balance) in a 6-hour driving shift on a real route, in 31 professional bus drivers, and we tested the influence of personal factors such as sleep quality, BMI, and age. Paired t-test was used to test differences of CFF and HRV between both initial and final phase of driving, while multiple linear regression tested the influence of personal variables on the indexes of mental fatigue. Results: Results showed that CFF significantly decreased after 6 hours of bus driving (41.91 Hz, sd 3.31 vs. 41.15 Hz, sd 3.15; p = 0.041), and heart rate significantly decreased in the final phase of driving, with respect to the initial phase (85 vs. 78 bpm, p = 0.027). Increasing age (beta = -0.729, p = 0.022), risk of obstructive sleep apnea syndrome (beta = -0.530, p = 0.04), and diurnal sleepiness (beta = -0.406, p = 0.017) showed a significant effect on influencing mental fatigue. Conclusion: Elderly drivers at higher risk of sleep disorders are more prone to mental fatigue, when exposed to driving activity. Monitoring indexes of central arousal and autonomic balance, coupled with the use of structured questionnaires can represent a useful strategy to detect profile of workers at higher risk of mental fatigue in such duty.

스트레스와 면역기능 (Stress and Immune Function)

  • 고경봉
    • 정신신체의학
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    • 제4권1호
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    • pp.146-154
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    • 1996
  • 스트레스와 면역기능 간의 관계는 중추신경계, 신경내분비계 및 면역계 간의 의사소통 즉 상호작용에 의해 이루어지고 있다. 중추신경계와 면역계가 상호작용하는 주요 경로는 임파조직의 신경계 wiring system과 신경내분비계다. 면역계는 neuropeptide를 생성하고 이것은 면역반응을 조절한다. 정신사회적 인자와 면역기능 간의 중개자로는 뇌하수체에서 방출되는 peptide, hormone 및 자율신경계 물질이 있다. 시상하부는 내분비계, 신경계 및 면역계를 통합하는 역활을 한다. 특히 시상하부의 paraventricular nucleus가 이 일에 중추적인 역할을 담당한다. 한편 내분비계는 면역계에 의해서 휘이드백을 받는다. 뇌하수체가 면역계를 조절하는 주요 경로로는 시상하부-뇌하수체-부신-흉선축, 시상하부-뇌하수체-성선-흉선축, 송과선-시상하부-뇌하수체축 등이 시사되고 있다. 스트레스와 면역계 간에는 양 방향의 경로가 있는 것으로 가정된다. 즉 스트레스가 면역계에 영향을 미칠 뿐만 아니라 면역계가 정신사회적 기능에 영향을 미칠 수 있다. 따라서 스트레스와 면역기능 간의 관계를 규명하기 위해서는 면역계, 내분비계, 자율신경계 및 뇌활동을 동시에 측정, 비교하여 이들을 통합할 필요가 있다.

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동공 질환의 접근: 해부학적 경로를 통해서 (Approach to pupillary abnormalities via anatomical pathways)

  • 김성희
    • Journal of Yeungnam Medical Science
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    • 제34권1호
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    • pp.11-18
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    • 2017
  • The pupillary size and movement are controlled dynamically by the autonomic nervous system; the parasympathetic system constricts the iris, while the sympathetic system dilates the iris. Under normal conditions, these constrictions and dilations occur identically in both eyes. Asymmetry in the pupillomotor neural input or output leads to impaired pupillary movement on one side and an unequal pupil size between both eyes. Anisocoria is one of the most common signs in neuro-ophthalmology, and the neurological disorders that frequently cause anisocoria include serious diseases, such as vascular dissection, fistula, and aneurysm. A careful history and examination can identify and localize pupillary disorders and provide a guide for appropriate evaluations.

Intraoperative Neurophysiology Monitoring for Spinal Dysraphism

  • Kim, Keewon
    • Journal of Korean Neurosurgical Society
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    • 제64권2호
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    • pp.143-150
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    • 2021
  • Spinal dysraphism often causes neurological impairment from direct involvement of lesions or from cord tethering. The conus medullaris and lumbosacral roots are most vulnerable. Surgical intervention such as untethering surgery is indicated to minimize or prevent further neurological deficits. Because untethering surgery itself imposes risk of neural injury, intraoperative neurophysiological monitoring (IONM) is indicated to help surgeons to be guided during surgery and to improve functional outcome. Monitoring of electromyography (EMG), motor evoked potential, and bulbocavernosus reflex (BCR) is essential modalities in IONM for untethering. Sensory evoked potential can be also employed to further interpretation. In specific, free-running EMG and triggered EMG is of most utility to identify lumbosacral roots within the field of surgery and filum terminale or non-functioning cord can be also confirmed by absence of responses at higher intensity of stimulation. The sacral nervous system should be vigilantly monitored as pathophysiology of tethered cord syndrome affects the sacral function most and earliest. BCR monitoring can be readily applicable for sacral monitoring and has been shown to be useful for prediction of postoperative sacral dysfunction. Further research is guaranteed because current IONM methodology in spinal dysraphism is still deficient of quantitative and objective evaluation and fails to directly measure the sacral autonomic nervous system.

관상동맥질환 위험인자 유무 판단을 위한 심박변이도 매개변수 기반 심층 신경망의 성능 평가 (Performance Evaluation of Deep Neural Network (DNN) Based on HRV Parameters for Judgment of Risk Factors for Coronary Artery Disease)

  • 박성준;최승연;김영모
    • 대한의용생체공학회:의공학회지
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    • 제40권2호
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    • pp.62-67
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    • 2019
  • The purpose of this study was to evaluate the performance of deep neural network model in order to determine whether there is a risk factor for coronary artery disease based on the cardiac variation parameter. The study used unidentifiable 297 data to evaluate the performance of the model. Input data consists of heart rate parameters, which are SDNN (standard deviation of the N-N intervals), PSI (physical stress index), TP (total power), VLF (very low frequency), LF (low frequency), HF (high frequency), RMSSD (root mean square of successive difference) APEN (approximate entropy) and SRD (successive R-R interval difference), the age group and sex. Output data are divided into normal and patient groups, and the patient group consists of those diagnosed with diabetes, high blood pressure, and hyperlipidemia among the various risk factors that can cause coronary artery disease. Based on this, a binary classification model was applied using Deep Neural Network of deep learning techniques to classify normal and patient groups efficiently. To evaluate the effectiveness of the model used in this study, Kernel SVM (support vector machine), one of the classification models in machine learning, was compared and evaluated using same data. The results showed that the accuracy of the proposed deep neural network was train set 91.79% and test set 85.56% and the specificity was 87.04% and the sensitivity was 83.33% from the point of diagnosis. These results suggest that deep learning is more efficient when classifying these medical data because the train set accuracy in the deep neural network was 7.73% higher than the comparative model Kernel SVM.