• Title/Summary/Keyword: 생체 전기 임피던스 분석

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전류주입자기공명영상기법을 이용한 은도 변화 측정에 관한 연구

  • 강현수;오석훈;이수열;조민형;우응제
    • Proceedings of the KSMRM Conference
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    • 2001.11a
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    • pp.114-114
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    • 2001
  • 목적: 열적인 방법으로 시술을 할 때 발생한 생체 조직의 온도 변화는 생체조직의 전기임피던스 변화를 야기하는데 이 전기임피던스 변화가 자기공명영상의 위상에 어떠한 영향을 미치는지를 분석하고자 하였다. 대상 및 방법: 생체조직의 전기임피던스는 조직부위에 따라 다르나 온도계수가 평균적으로 -2%/$^{\circ}C$에 이를 만큼 온도에 민감한 특성을 가지고 있다. 이러한 특성을 감안하여 유한요소법을 이용하여 자기공명영상의 위상을 계산하여 보았다. 그 결과를 토대로 0.3Tesla 자기공명영상시스템으로 팬텀을 촬영하여 자기공명영상의 위상을 구하였다.

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Analysis of Upper Limb Movement Using Bio-Impedance (임피던스를 이용한 상지 운동 분석)

  • Kim, Soo-Chan;Nam, Ki-Chang;Kim, Deok-Won
    • Proceedings of the KIEE Conference
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    • 2001.11c
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    • pp.461-464
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    • 2001
  • 본 연구에서는 생체 임피던스를 이용하여 3채널 상지(upper arm) 운동 분석 시스템을 제작하였다. 각 채널은 상지의 외전(supination)과 내전(pronation), 팔꿈치(elbow)의 폄과 굽힘, 손목(wrist)의 평과 굽힘에 따른 각 관절의 임피던스 변화를 얻을 수 있도록 설계되었다. 상체 임피던스는 전극의 부착위치에 의존하므로 정밀한 감지를 위해 상지 운동에 대한 임피던스의 변화와 각도계(goniometer)의 각도 변화와의 상관관계를 통하여 상관 관계가 높고, 변화량이 가장 크고 다른 관절의 움직임에 따른 영향이 최소인 곳을 찾아 이를 최적의 전극 위치로 정하였다. 그리고, 선정된 최적의 전극 위치에서 임피던스 변화를 얻어 상지 운동을 분석해 보았다. 최적의 전극 위치에서 손목과 팔꿈치의 각도 변화와 임피던스 변화의 상관 계수는 각각 0.94, -0.97로 아주 높은 상관 관계를 보였다. 또한 이전의 다른 연구에서 임피던스 방법으로 구현해 본적이 없는 팔의 회전(rotation)도 분석이 가능하였다. 이 시스템은 피검자의 동작에 거의 제한을 주지 않고, 가벼우며, 장시간 측정이 용이할 뿐만 아니라 시스템 구성이 영상 분석기에 비해서 단순하다는 장점을 가지고 있다. 본 연구에서 제안하는 방법은 재활과 생체역학, 로봇의 원격 제어, 그리고 가상 현실에서의 동작 구현 등에 활용 할 수 있을 것으로 사료된다.

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Validation of Segmental Multi-Frequency Bioelectrical Impedance Analysis based on the Segmental Bioelectrical Impedance analysis in the Elderly Population (분절임피던스를 기준한 분절다주파수 생체임피던스의 일치도 분석)

  • Tang, Sae-Jo;Kim, Jang-Hee;Eom, Jin Jong;Eom, Sunho;Kim, Hakkyun;Kim, Chul-Hyun
    • Journal of Platform Technology
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    • v.9 no.2
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    • pp.38-45
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    • 2021
  • A frequently used bioimpedance analytical method in Korea is the segmental multi-frequency BIA (SMF-BIA) method, but it is not directly determined at a segmented impedance. This study was to compare SMF-BIA determinations with direct segmented determinations for accuracy and appropriateness of segment parameters. This study is to compare the segment parameters, accuracy and appropriateness of the multi-frequency segmental bioimpedance analysis. To this end, 108 elderly individuals were measured. Segmented bioelectrical measurements obtained from a SMF-BIA (Inbody S10) at 50 kHz and measured with a phase sensitive single frequency device (SF-BIA, bia-101, RJL / akern systems) were compared. The significant difference (%) was demonstrated between single - and multiple frequency determinations of the right upper limb (R = 35.5 ± 6.2%, P < 0.001; Xc = 2.7 ± 7.6%, P < 0.01), left upper limb difference (R= 33. 9 ± 6.0%, P < 0.001; Xc = 2.8 ± 8.3%, P < 0.01), right lower limb difference (R = 18.6 ± 4.3%, P < 0.001; Xc = 25.8 ± 10.0%, P < 0.001), left lower limb difference (R = 18.0 ± 4.7%, P < 0.001; Xc = 31.8%). Of the results determined with the two BIA methods, the impedance measurements of the limbs and whole body showed a high correlation (RA: R = 0. 950, LA: R = 0. 949, RL: R = 0.899, LL: R = 0.88), and in the agreement test, the impedance values of the upper limbs and whole body also showed strong agreement (ICC > 0.9), but in the Xc, the correlation was weak. In conclusion, it was found that although bioimpedance devices had significantly different characteristics and inconsistent cross sectionally, there was a high population level agreement in the upper and lower extremities in determining segmental resistance value changes. But a large error was found on the trunk. Further studies were needed for reducing the error.

Analysis of Bioimpedance Change and the Characteristics of Blood Pressure according to Posture (자세에 따른 생체임피던스 변화와 혈압 특성 분석)

  • Cho, Young Chang;Kim, Min Soo
    • Journal of Korea Society of Industrial Information Systems
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    • v.19 no.5
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    • pp.25-31
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    • 2014
  • Bioelectrical Impedance Analysis(BIA) is a widely used method for estimating body composition changes which is a non-invasive, inexpensive, safety and reproductive method. We studied the bioimpedance change and the distinction of blood pressure according to body posture and conducted three kinds of experiments: the real-time bioimpedance measurement, the simulation using equivalent circuit model and the blood pressure measurement. Bioimpedance is measured during 4 minutes at the multi-frequency(1 kHz, 10 kHz, 20 kHz, 50 kHz, 70 kHz, 100 kHz). From the experiment results, the changes in body postures result in changes of resistance and reactance, with an average rapid increase of body impedance when going from standing, sitting to supine. Specially, the laying resistance on average was 16.49% higher than supine resistance at 50 kHz and the laying reactance measurement was also 26.05% higher than sitting reactance at 1 kHz. Blood pressure in standing posture was higher than those in other postures both in maximum($125.14{\pm}12.30$) and in minimum($75.57{\pm}10.31$). The results of BIA and blood pressure in this study will be contributed to the research on acute illness, extreme fat, and body shape abnormalities.

Implementation of Multiple Frequency Bioelectrical Impedance Analysis System for Body Composition Analysis (신체 성분 분석을 위한 다 주파수 생체전기 임피던스 분석 시스템 구현)

  • Kim, Seong-Cheol;Jo, Byung-Nam;Lee, Seok-Won
    • Proceedings of the KIEE Conference
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    • 2004.11c
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    • pp.331-333
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    • 2004
  • In this study, we implement the multiple frequency bioelectrical impedance analysis system for body composition analysis. Overall system consists of : 1) conductivity electrodes to contact with hands and foots, 2) multiple frequency alternating current signal generator for generating 5, 50, 250kHz frequency and 800uA contained alternating current signal, 3) voltage signal detector, 4) phase signal detector, 5) key-pad to input individual information, 6) micro controller for data processing, 7) LCD for processed data to display, 8) system power, We explain the architecture of the system and required theory to implement the system. Finally, experimental results are illustrated to show the performance of the system.

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Measurement of arousal level based on the change of electrodermal activity. (피부전기활동 변화에 의한 각성도의 측정 (1))

  • Ko, Han-Woo;Lee, Wan-Kyu;Lee, Gun-Ki
    • Proceedings of the KOSOMBE Conference
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    • v.1995 no.05
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    • pp.195-199
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    • 1995
  • 본 연구에서는 피부전기반사를 이용하여 각성도를 측정하기 위한 측정 시스템을 구성하고 이를 이용하여 피부 전기활동의 변화가 뇌파를 동시에 측정하여 각성수준의 변화에 따른 세 측정 요소간의 상관관계를 검토하고 측정에 따른 문제점들을 분석하여 각성도 측정 및 평가와 모니터 개발 을 위한 기초적인 연구를 하였다. 분석 결과 기존의 피부임피던스 만을 이용한 수면상태 판정은 불완전하며 피부임피던스 반사도 포함하면 더욱 정확한 판정을 할 수 있슴을 밝혔다.

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Implementation of Multiple Frequency Bioelectrical Impedance Analysis System for Body Composition Analysis (신체 성분 분석을 위한 다 주파수 생체전기 임피던스 분석 시스템 구현)

  • Kim, Seong-Cheol
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.11
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    • pp.5403-5408
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    • 2012
  • In this paper, we introduce the multiple frequency bio-electrical impedance analysis method for body composition analysis. And then we implement the multiple frequency bio-electrical impedance analysis system. Overall system consists of: multiple frequency alternating current signal generator contained alternating current signal, phase signal detector, voltage signal detector, micro controller, in-out device(key-pad LCD), conductivity electrodes, system power. We explain the architecture of the system and required theory to implement the system. In order to investigate the clinical significance of the body composition data, compare to the data measured by the expert body composition analyzer which provide high reproduction and precision. Finally, experimental results which are the correlation between the measured data show the very high reproduction performance of the body composition analysis in the proposed system.

Bioelectrical Impedance Analysis of Multi-frequency using Portable Small Impedance Measuring System (휴대용 소형임피던스 측정시스템을 이용한 다중주파수의 생체임피던스 해석)

  • Kim, Min Soo;Cho, Young Chang
    • Journal of the Korea Convergence Society
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    • v.8 no.2
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    • pp.121-126
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    • 2017
  • In this study, we measured the bioelectrical impedance of whole body in various frequency bands by non-invasive method by four electrode method using a portable small impedance measurement system developed to understand the bioimpedance characteristics of intracellular fluid and extracellular fluid components through a skin equivalent model. The measurements were performed on 10 male subjects (mean age $24{\pm}3.0$, body mass index(BMI) $20.3kg/m^2$) for four weeks and the bioimpedances were measured at multi-frequencies (1 kHz, 5 kHz, 50 kHz, 70 kHz, 100 kHz and 500 kHz). Experimental results show that the impedance is the highest in the low frequency range of 1 kHz and the lowest in the high frequency range of 500 MHz. Especially, it was confirmed through experiments that the impedance is rapidly lowered above 50 kHz band. In addition, it was confirmed that similar characteristics to the measured values of the bioimpedance measuring system were obtained in the simulations for understanding the impedance characteristics of the intracellular fluid and the extracellular fluid through the skin equivalent circuit model.

Adequate anesthetic induction dose in a morbidly obese patient based on bioelectrical impedance analysis. -Case report- (병적 비만 환자에서 생체 전기 임피던스 분석을 이용한 적절한 마취 유도 용량 -증례보고-)

  • Lee, Ki-Jae;Choi, Seungseo;Baek, Seon Ju;Kim, Dong-Chan;Lee, Jeongwoo;Lee, Jun Ho
    • Journal of the Korea Convergence Society
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    • v.11 no.10
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    • pp.349-353
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    • 2020
  • Background: The dosage of the anesthetic drugs is generally determined by the total body weight of the patients. However, the drugs can be overdosed when the patient is morbidly obese. We have determined anesthetic induction dose based on lean body mass estimated from bioelectrical impedance analysis (BIA). Case: We report a case of morbidly obese patient (161 cm, 138 kg and body mass index 53.1) who had an elective laparoscopic cholecystectomy. The dose of induction agent was determined by lean body mass estimated by BIA, and the sedation was assessed by the observer's assessment alertness/sedation scale. Conclusions: Dose determination through lean body mass measured by BIA is useful in highly obese patients.

Measurement of the Biological Active Point using the Bio-electrical impedance analysis based on the Adaptive Frequency Tracking Filter (적응주파수추적필터기반의 생체임피던스분석을 통한 생물학적활성점측정에 관한 연구)

  • Park, Hodong;Lee, Kyoungjoung;Yeom, Hojun
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.13 no.6
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    • pp.109-114
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    • 2013
  • The biological active points (BAP) are known as low resistance spots or good electro-permeable points. In this paper, a new method for BAP detection using the bio-impedance measurement system based on the adaptive frequency tracking filter (AFTF) and the transition event detector is presented. Also, the microcontroller process continuous time demodulation of the modulated signal by multi frequency components using the AFTF. The transition event detector based on the phase space method is applied about each frequency using the BAP equivalent model which is proposed.