• 제목/요약/키워드: stimulus velocity

검색결과 42건 처리시간 0.028초

Neurobehavioural Changes and Brain Oxidative Stress Induced by Acute Exposure to GSM900 Mobile Phone Radiations in Zebrafish (Danio rerio)

  • Nirwane, Abhijit;Sridhar, Vinay;Majumdar, Anuradha
    • Toxicological Research
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    • 제32권2호
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    • pp.123-132
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    • 2016
  • The impact of mobile phone (MP) radiation on the brain is of specific interest to the scientific community and warrants investigations, as MP is held close to the head. Studies on humans and rodents revealed hazards MP radiation associated such as brain tumors, impairment in cognition, hearing etc. Melatonin (MT) is an important modulator of CNS functioning and is a neural antioxidant hormone. Zebrafish has emerged as a popular model organism for CNS studies. Herein, we evaluated the impact of GSM900MP (GSM900MP) radiation exposure daily for 1 hr for 14 days with the SAR of 1.34W/Kg on neurobehavioral and oxidative stress parameters in zebrafish. Our study revealed that, GSM900MP radiation exposure, significantly decreased time spent near social stimulus zone and increased total distance travelled, in social interaction test. In the novel tank dive test, the GSM900MP radiation exposure elicited anxiety as revealed by significantly increased time spent in bottom half; freezing bouts and duration and decreased distance travelled, average velocity, and number of entries to upper half of the tank. Exposed zebrafish spent less time in the novel arm of the Y-Maze, corroborating significant impairment in learning as compared to the control group. Exposure decreased superoxide dismutase (SOD), catalase (CAT) activities whereas, increased levels of reduced glutathione (GSH) and lipid peroxidation (LPO) was encountered showing compromised antioxidant defense. Treatment with MT significantly reversed the above neurobehavioral and oxidative derangements induced by GSM900MP radiation exposure. This study traced GSM900MP radiation exposure induced neurobehavioral aberrations and alterations in brain oxidative status. Furthermore, MT proved to be a promising therapeutic candidate in ameliorating such outcomes in zebrafish.

Identifications of Reflex Muscle Activities and Joint Moments Triggered by Electrical Stimulation to Sole of the Foot during Lokomat Treadmill Walking

  • Kim, Yong-Chul
    • 대한의용생체공학회:의공학회지
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    • 제31권5호
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    • pp.344-350
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    • 2010
  • The aim of this study was to investigate the characteristics of the flexion withdrawal reflex modulated during Lokomat treadmill walking in people with spinal cord injury. The influence of the limb position and movement were tested in 5 subjects with chronic spinal cord injury. EMG activities from tibialis anterior and moments of the hip joint elicited by the foot stimulation were examined during Lokomat treadmill walking. To trigger the flexion withdrawal reflex during Lokomat treadmill walking, a train of 10 stimulus pulses was applied at the skin of the medial arch. The TA EMG activity was modulated during gait phase and the largest TA reflex was obtained after heel-off and initial swing phase. During swing phase, TA EMG was 40.9% greater for the extended hip position (phase 6), compared with flexed hip position (phase 8). The measured reflex moment of the hip joint was also modulated during gait phase. In order to characterize the neural contribution of flexion reflex at the hip joint, we compared estimated moments consisted of the static and dynamic components with measured moment of the hip joint. The mean static gains of reflex hip moments for swing and stance phase are -0.1, -0.8, respectively. The mean dynamic gains of reflex hip moments are 0.25 for swing, 0.75 for stance phase. From this study, we postulate that the joint moment and muscle response of flexion withdrawal reflex have the phase-dependent modulation and linear relationship with hip angle and angular velocity for swing phase during Lokomat treadmill walking.

$TcpO_2$를 이용한 신경병성 당뇨환자 조기진단 (An early diagnostic method for diabetic neuropathy using $TcpO_2$)

  • 김진태;김성우;남기창;박중훈;김덕원
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년 학술대회 논문집 정보 및 제어부문
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    • pp.232-234
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    • 2006
  • Diabetic neuropathy is one of the most common diabetic complications. In clinical practices, nerve conduction velocity (NCV) has been used as a standard method for diagnosing diabetic neuropathy. However, it applies maximum of 100mA electric stimulus to nerves causing stress and pain to patients. In this study. as a non-invasive method, $TcpO_2$ was utilized to investigate the difference and relationship between $TcpO_2$ and $SpO_2$ of normal and diabetic neuropathy subjects. In addition, a new method of diagnosing diabetic neuropathy using $TcpO_2$ is suggested. 50 normal subjects and 50 diabetic patients with neuropathy diagnosed by NCV participated in this study. Parameters used in this study were $TcpO_2,\;TcpCo_2$, and $SpO_2$. As a result of the $TcpO_2$ measurements, statistical significances were found from $TcpO_2$ of hands and feet from normal and patients group (p<0.01). $SpO_2$ measured from index finger of normal and patient groups showed no statistical significance (p>0.05). On the other hand, $SpO_2$ measured from great toes of normal and patient group showed statistical significance (p<0.01). Correlation coefficient between $SpO_2$ of finger and $TcpO_2$ of hand was 0.400 (p<0.01) and $SpO_2$ of toe and $TcpO_2$ of foot was 0.471 (p<0.01). Both correlation values were statistically significant. Sensitivities and specificities of the $TcpO_2$ method were found to be 66 % and 92 %, respectively. If suggested $TcpO_2$ method is used periodically. prevention and early diagnosis of diabetic neuropathy is possible.

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Nerve length measurement method in a radial motor nerve conduction study

  • Kim, Jae-Gyum;Kim, Yoohwan;Seok, Hung Youl;Kim, Byung-Jo
    • Annals of Clinical Neurophysiology
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    • 제19권1호
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    • pp.28-33
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    • 2017
  • Background: Previous studies of radial nerve conduction study (NCS) did not present how to measure the length of the radial nerve across the elbow, and did not even mention how to manage the spiral course of the nerve. This study aimed to applicate the most reliable method to measure the length of the radial nerve during NCS. Methods: Three points (A, B, and C) were determined along the relatively straight course of the radial nerve. The distance was measured using three different methods: L1) straight distance corresponding to the A-C distance, L2) sum of the distances corresponding to the A-B-C distance, L3) based on the L2, but the elbow is flexed at a $45^{\circ}$ angle. We compared the three methods of distance measurement and the calculated nerve conduction velocities (V1, V2, and V3) in normal healthy subjects. Results: 19 normal participants were enrolled. The mean value for method L1, L2 and L3 were $22.5{\pm}1.8cm$, $24.0{\pm}2.1cm$, and $23.2{\pm}2.1cm$ (p < 0.001). Calculated conduction velocities using those distance measurement methods as follows (p < 0.001): V1 ($60.9{\pm}2.7m/s$), V2 ($64.6{\pm}3.3m/s$), and V3 ($63.4{\pm}3.9m/s$). V2 was significantly greater than V1 and V3 (p < 0.001, p = 0.010, respectively). Conclusions: The distance measurement using a stopover point near the lateral epicondyle between two stimulus points in position of a fully extended elbow with forearm pronation is the most appropriate posture for radial motor NCS.

Characterization of aluminized RDX for chemical propulsion

  • Yoh, Jai-ick;Kim, Yoocheon;Kim, Bohoon;Kim, Minsung;Lee, Kyung-Cheol;Park, Jungsu;Yang, Seungho;Park, Honglae
    • International Journal of Aeronautical and Space Sciences
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    • 제16권3호
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    • pp.418-424
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    • 2015
  • The chemical response of energetic materials is analyzed in terms of 1) the thermal decomposition under the thermal stimulus and 2) the reactive flow upon the mechanical impact, both of which give rise to an exothermic thermal runaway or an explosion. The present study aims at building a set of chemical kinetics that can precisely model both thermal and impact initiation of a heavily aluminized cyclotrimethylene-trinitramine (RDX) which contains 35% of aluminum. For a thermal decomposition model, the differential scanning calorimetry (DSC) measurement is used together with the Friedman isoconversional method for defining the frequency factor and activation energy in the form of Arrhenius rate law that are extracted from the evolution of product mass fraction. As for modelling the impact response, a series of unconfined rate stick data are used to construct the size effect curve which represents the relationship between detonation velocity and inverse radius of the sample. For validation of the modeled results, a cook-off test and a pressure chamber test are used to compare the predicted chemical response of the aluminized RDX that is either thermally or mechanically loaded.

경 두개 직류자극이 뇌졸중 환자의 시간적, 공간적 보행능력에 미치는 영향 (Effect of Trans cranial Directed Current Stimulus on Temporal and Spatial Walking Capacity for Hemiparalysis Patients)

  • 이연섭;전현주
    • 대한물리치료과학회지
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    • 제29권3호
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    • pp.75-84
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    • 2022
  • Background: This study was to investigate the effect of non-invasive transcranial direct current stimulation due to hemiplegic patients due to stroke on temporal and spatial gait ability. Design: Randomized sham controlled trial. Methods: For the study method, 42 patients with hemiplegia due to stroke were randomly assigned to 14 patients each, and the general walking group, tDCS walking group, and tDCS (sham) walking group were subjected to 5 times a week, 30 minutes a day, and 6 weeks. In the temporal gait variables of hemiplegic patients due to stroke, the effect of the gait time, gait cycle, single support, double support, swing phase, stance phase, gait speed, cadence were measured. In spatial variables, one step length and one step length were measured. Results: As a result of the study, the EG group significantly increased in the step time, gait velocity, and cadence of the paralysis side in the comparison of temporal walking variables between groups according to the application of tDCS of walking ability in hemiplegic patients due to stroke patients(p<.05). In the change in spatial walking variables between groups according to the application of tDCS, the step length and stride length of the EG group showed a significant increase. Both the comparison of temporal and spatial symmetry walking variables between groups according to tDCS application was not significant(p>.05) Conclusion: As a result, tDCS has an effective effect on the improvement of the gait ability of stroke patients. In particular, it is an effective method of physical therapy that can improve the cadence and speed of gait, which can be combined with the existing gait training to effectively increase the gait of hemiplegia due to stroke patients.

청각 피드백이 적용된 좌우 불균형 개선을 위한 밸런스 인솔 개발 및 검증 (The Development and Verification of Balance Insole for Improving the Muscle Imbalance of Left and Right Leg Using based Sound Feedback)

  • 강승록;윤영환;유창호;나재욱;홍철운;권대규
    • 재활복지공학회논문지
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    • 제11권2호
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    • pp.115-124
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    • 2017
  • 본 연구에서는 하지의 좌우 불균형 검출을 위한 밸런스 측정 인솔을 개발하고 불균형을 개선하기 위한 청각 피드백 기술에 대한 검증을 하고자 하였다. 밸런스 인솔은 실시간 압력 감지 범위가 64 단계이며 발바닥 압력분포를 고려해 8개 부위에 FSR 센서를 탑재한 FPCB로 구성되었다. 피험자는 하지의 좌우 근력차이가 20% 이상 차이가 나는 피험자 20명을 선출하였다. 피험자들은 경사 0, 5, 10%와 속도 3, 4, 5km/h 로 15분 간 트레드밀 위에서 보행을 하였다. 또한 보행 시 나타나는 좌우 불균형을 평가 및 청각 피드백에 따른 개선효과를 검증하기 위해 측정된 족압 센서 데이터와 실시간 근육생리신호 데이터를 비교분석하였다. 실험 결과, 보행경사와 속도가 증가할수록 하지 좌우의 근력 불균형을 보유한 피험자들은 75.7%~140.9%까지 증가하는 반면 청각 피드백을 제공 시 10% 이내로 감소하는 결과를 보였다. 본 연구에서 개발 인솔 시스템을 이용한 보행환경에 따른 인체 좌우 불균형 발생시 FSR 신호 감도 결과와 인체생리신호 간 유효한 결과를 보였다. 향후 밸런스 피드백 보행 시 하지 좌우 불균형 개선 효과 경향을 보여 향후 족부 영역별 FSR 센서 민감도, 불균형 검출 및 개선을 위한 역치점 처리 알고리즘 개발에 대한 연구가 필요하다고 사료된다.

흰쥐의 운동유발전위에 대한 전정신경핵과 연수망상핵의 역할 (Role of the Vestibular and Medullary Reticular Neuclei for the Motor Evoked Potentials in Rats)

  • 이문영;이성호;김재효;박병림;김민선
    • The Korean Journal of Physiology and Pharmacology
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    • 제1권6호
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    • pp.603-611
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    • 1997
  • The motor evoked potentials (MEPs) have been advocated as a method of monitoring the integrity of spinal efferent pathways in various injury models of the central nervous system. However, there were many disputes about origin sites of MEPs generated by transcranial electrical stimulation. The purpose of present study was to investigate the effect of major extrapyramidal motor nuclei such as lateral vestibular nucleus (VN) and medullary reticular nucleus (mRTN) on any components of the MEPs in adult Sprague-Dalwey rats. MEPs were evoked by electrical stimulation of the right sensorimotor cortex through a stainless steel screw with 0.5mm in diameter, and recorded epidurally at T9 - T10 spinal cord levels by using a pair of teflon-coated stainless steel wire electrodes with 1mm exposed tip. In order to inject lidocaine and make a lesion, insulated long dental needle with noninsulated tips were placed stareotoxically in VN and mRTN. Lidocaine of $2{\sim}3\;{\mu}l$ was injected into either VN or mRTN. The normal MEPs were composed of typical four reproducible waves; P1, P2, P3, P4. The first wave (P1) was shown at a mean latency of 1.2 ms, corresponding to a conduction velocity of 67.5 m/sec. The latencies of MEPs were shortened and the amplitudes were increased as stimulus intensity was increased. The amplitudes of P1 and P2 were more decreased among 4 waves of MEPs after lidocaine microinjection into mRTN. Especially, the amplitude of P1 was decreased by 50% after lidocaine microinjection into bilateral mRTN. On the other hand, lidocaine microinjection into VN reduced the amplitudes of P3 and P4 than other MEP waves. However, the latencies of MEPs were not changed by lidocaine microinjection into either VN or mRTN. These results suggest that the vestibular and reticular nuclei contribute to partially different role in generation of MEPs elicited by transcranial electrical stimulation.

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PPG를 이용한 당뇨병 환자의 족부질환의 조기진단 시스템 개발 (Development of early diagnosis system for the detection of diabetic foot using photoplethysmograph)

  • 김진태;김성우;홍현기;임재중;김덕원
    • 전자공학회논문지SC
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    • 제43권3호
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    • pp.60-66
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    • 2006
  • 본 논문은 photoplethysmography(PPG)와 Laser doppler(LD)를 이용하여 당뇨병 환자의 신경병증을 조기 진단하기 위한 시스템을 구성하여 손가락과 발가락의 혈류량을 측정하고 그 비율을 이용하는 방법을 제안하였다. 당뇨병 환자의 신경병증 진단을 위해 임상에서는 신경전도검사(NCV)가 사용되고 있으나 이 검사는 피부에 전기자극을 가하므로 환자에게 스트레스와 고통을 준다. 이에 본 논문에서는 고통이 전혀 없으며, 비관혈적이고 측정방법이 간단한 PPG와 LD를 이용하여 신경병증 진단법을 제안하였다. PPG가 LD에 비해 손가락 및 발가락의 혈류량 및 온도와의 상관관계, 민감도 및 특이도에서 더 우수하였다. 분석결과 50명의 신경병성 당뇨환자의 혈류비($0.96{\pm}0.20$)가 64명의 정상인의 혈류비($0.46{\pm}0.15$)에 비해 유의하게 높았다(p<0.000). 또한 신경병성 당뇨환자의 발가락 온도($30.5{\pm}1.4^{\circ}C$)가 정상인의 발가락 온도($29.3{\pm}2.0^{\circ}C$)에 비해 유의하게 높았다(p<0.000). 본 연구로부터 도출된 최적 혈류비(0.678)에 대한 측정 방법의 높은 민감도(95.3%)와 특이도(95.3%)를 확인하였다. 마지막으로 신경병성 당뇨환자 그룹의 경우 모두 손가락과 발가락의 온도차가 $4.5^{\circ}C$ 미만이었다.

Effects of exploration and molecular mechanism of CsV on eNOS and vascular endothelial functions

  • Zuo, Deyu;Jiang, Heng;Yi, Shixiong;Fu, Yang;Xie, Lei;Peng, Qifeng;Liu, Pei;Zhou, Jie;Li, Xunjia
    • Advances in nano research
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    • 제12권5호
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    • pp.501-514
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    • 2022
  • This study aimed to investigate the effects and potential mechanisms of Chikusetsusaponin V (CsV) on endothelial nitric oxide synthase (eNOS) and vascular endothelial cell functions. Different concentrations of CsV were added to animal models, bovine aorta endothelial cells (BAECs) and human umbilical vein endothelial cells (HUVECs) cultured in vitro. qPCR, Western blotting (WB), and B ultrasound were performed to explore the effects of CsV on mouse endothelial cell functions, vascular stiffness and cellular eNOS mRNA, protein expression and NO release. Bioinformatics analysis, network pharmacology, molecular docking and protein mass spectrometry analysis were conducted to jointly predict the upstream transcription factors of eNOS. Furthermore, pulldown and ChIP and dual luciferase assays were employed for subsequent verification. At the presence or absence of CsV stimulation, either overexpression or knockdown of purine rich element binding protein A (PURA) was conducted, and PCR assay was employed to detect PURA and eNOS mRNA expressions, Western blot was used to detect PURA and eNOS protein expressions, cell NO release and serum NO levels. Tube formation experiment was conducted to detect the tube forming capability of HUVECs cells. The animal vasodilation function test detected the vasodilation functions. Ultrasonic detection was performed to determine the mouse aortic arch pulse wave velocity to identify aortic stiffness. CsV stimulus on bovine aortic cells revealed that CsV could upregulate eNOS protein levels in vascular endothelial cells in a concentration and time dependent manner. The expression levels of eNOS mRNA and phosphorylation sites Ser1177, Ser633 and Thr495 increased significantly after CsV stimulation. Meanwhile, CsV could also enhance the tube forming capability of HUVECs cells. Following the mice were gavaged using CsV, the eNOS protein level of mouse aortic endothelial cells was upregulated in a concentration- and time-dependent manner, and serum NO release and vasodilation ability were simultaneously elevated whereas arterial stiffness was alleviated. The pulldown, ChIP and dual luciferase assays demonstrated that PURA could bind to the eNOS promoter and facilitate the transcription of eNOS. Under the conditions of presence or absence of CsV stimulation, overexpression or knockdown of PURA indicated that the effect of CsV on vascular endothelial function and eNOS was weakened following PURA gene silence, whereas overexpression of PURA gene could enhance the effect of CsV upregulating eNOS expression. CsV could promote NO release from endothelial cells by upregulating the expression of PURA/eNOS pathway, improve endothelial cell functions, enhance vasodilation capability, and alleviate vessel stiffness. The present study plays a role in offering a theoretical basis for the development and application of CsV in vascular function improvement, and it also provides a more comprehensive understanding of the pharmacodynamics of CsV.