• Title/Summary/Keyword: pulse diagnostic apparatus

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A clinical study of atopic dermatitis patients as measured by Pulse diagnostic apparatus (맥진기(脈診器)를 이용한 아토피 피부염 환자의 임상적 고찰)

  • Shin, Yoon-Jin;Kim, Yoon-Bum;Yoon, Sang-Heub
    • The Journal of Korean Medicine Ophthalmology and Otolaryngology and Dermatology
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    • v.21 no.2
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    • pp.112-119
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    • 2008
  • Objective : The quantification of pulse diagnosis is an important subject utilizing as a modernization of Oriental medical diagnosis and as a basic data for collaborative access between East and West Medicine. This study was to observe the tendency of pulse diagnosis in atopic dermatitis patients as measured by pulse diagnostic apparatus. Methods : We did pulse diagnostic test about 11 new outpatients who had visited the department of ophthalmology, otolaryngology, dermatology in Kyunghee oriental medical center from March 1, 2007 to October 31, 2007 and had atopic dermatitis. Results : The results were as follows. 1. Among the 11 outpatients, the total number of male patients were 5 and female patients were 6, and the age distribution, the most frequently visited age groups were 10-19 years old and 20-29 years old(each 4 patients). 2. The most common period of onset to first examination were 3 years${\leq}$ (7 patients). 3. There were 8 patients who had emphasized T-wave. 4. There were 7 patients who had repeated pulse wave pattern. Conclusion : In 11 cases who had atopic dermatitis, 8 patients had emphasized T-wave and 7 patients had repeated pulse wave pattern.

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Oriental Pulse Diagnostic Apparatus with an emphasis on sense on fingers (수지부 감각정보에 중점을 둔 한의학적 전자 맥진 시스템에 대한 고찰)

  • Kim, Byoung-Chul;Chae, Han
    • Journal of the Institute of Convergence Signal Processing
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    • v.9 no.2
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    • pp.112-120
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    • 2008
  • This study aims to develop a system for diagnosing pulse and disease conditions based on oriental medical classics to collect objective quantitative information in the traditional pulse examination environment that uses fingers. For this purpose, the study suggested a thimble-type sensor unit as the most appropriate pulse analyzer and proposed a traditional method to measure the pulse pressure wave on the spots of cheok, gwan and chon by installing the pulse analyzer on the forefinger, middle finger and medical finger. Then, it was interpretively found that this pulse analyzer enables us to objectively recognize 28 pulses defined in Oriental medical classics including the yukjo pulse, described as the buchimjisak-heosil pulse, and the hong, yoo, hyeok and san pulses. Finally, the study proposed a method to extract key parameters essential to pulse condition diagnosis from the pulse pressure wave measured by this pulse analyzer.

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Embodiment of Spatially Arterial Pulse Diagnostic Apparatus using Array Multiple Hall Devices

  • Lee, Sang-Suk;Kim, Gi-Wang;Ahn, Myung-Cheon;Park, Young-Seok;Choi, Jong-Gu;Choi, Sang-Dae;Park, Dal-Ho;Hwang, Do-Guwn;Yoon, Hyung-Rho
    • Journal of Biomedical Engineering Research
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    • v.28 no.6
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    • pp.721-726
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    • 2007
  • The study relates to achievement and analysis of 3-dimensional spatial pulse wave archived by a spatially arterial pulse diagnostic apparatus (SAPDA), wherein a pulse sensing part array consists of multiple hall devices and is located over a skin contacting part which consists of a magnetic material. When a radially arterial pulse is transferred to the magnetic material, which is contacted skin that results in changes in a magnetic field of the lower part of the pulse sensing part array, the changes in a magnetic field can be detected by the commercial Hall semiconductor device of the pulse sensing part array. Finally, according to development of SAPDA, the 3-dimensionally arterial pulse waveform can be measured noninvasively by detecting the changes of the magnetic field.

The Development of pulse Diagnostic Apparatus enable to gain multi-information and it's Clinical Significance (다정보(多情報) 획득(獲得)을 위한 맥진기 개발과 임상적 의의)

  • Park, Y.B.;Lee, H.J.;Huh, W
    • The Journal of Korean Medicine
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    • v.16 no.1 s.29
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    • pp.499-504
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    • 1995
  • Recently, there are deep and much concerns about the objective assessment of diagnosis in Oriental Medicine. Among them, pulse diagnostics is used for the quantitative device of diagnosis. The objective research of pulse diagnosis were mainly conducted by pulse wave. So it is important to gain multi-information for the quantification of pulse diagnosis. We report the development of pulse diagnostic apparatus enable to gain the multi-information, detect the pressure pulse wave in conku(寸口) area and obtain the gradient curve and original pulse wave simultaneously, and consider the pulse wave with the traditional pulse diagnosis at the same time.

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Achievement of 3-D Pulse Waves of Pulse Diagnostic Apparatus by using Multi-Hall Devices (다중 홀소자를 이용한 맥진기의 3차원 파형 획득 연구)

  • Choi, S.D.;Kim, M.S.;Ahn, M.C.;Choi, Y.G.;Kim, G.W.;Park, D.H.;Hwang, D.G.;Lee, S.S.
    • Journal of the Korean Magnetics Society
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    • v.16 no.4
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    • pp.216-220
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    • 2006
  • The electric signals for the voltage as a function of distance between Hall devices and permanent magnets over the radial artery were investigated. The electric sgnals, that means signals of arterial pulse wave, were differentiated by the hardware of circuits and then were changed to differential signals as magnetic field. The 3-D images simulated by the software as function fo the intensity of differential signals were achieved. It shows that these system can apply to pulse diagnostic apparatus of porthble type medical instrument.

Simulation Analysis of Spatially Arterial Pulse Wave using Two-dimensional Array Sensors with Magnetoresistive Device (2차원 배열 자기저항소자를 이용한 공간 맥진파형의 전산모사 분석)

  • Kim, M.S.;Kim, S.W.;Kim, G.W.;Lee, S.J.;Lee, S.G.;Lee, H.S.;Park, D.H.;Hwang, D.G.;Lee, S.S.
    • Journal of the Korean Magnetics Society
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    • v.15 no.6
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    • pp.307-310
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    • 2005
  • To get the spatial feature of arterial pulse, we designed spatial pulse diagnostic apparatus (SPDA) using a 2-dimensional magnetoresistive sensor array. The magnetic field distribution fur magnet may was simulated using finite element method. We recognized that the field distribution of parallel magnet mays was more sensitive and uniformed than that of perpendicular one. Also the spatial displacements of magnet array were agreed with the output signal of magnetic tunnel junction (MTJ) sensor array.

A New Measurement Method of a Radial Pulse Wave Using Multiple Hall Array Devices

  • Lee, Sang-Suk;An, Myoung-Chone;Ahn, Sung-Hoon
    • Journal of Magnetics
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    • v.14 no.3
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    • pp.132-136
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    • 2009
  • This study investigated the radial pulse waveform obtained by a medical pulsimeter sensor. A pulse-sensing part array consisting of multiple Hall devices was located over a skin-contacting part with a hard magnetic material. The periodic movement of the magnetic material of the skin-contacting part affected the magnetic field in the pulse-sensing part array and was detected by multiple Hall devices. The analysis of a radial pulse waveform that is measured noninvasively by detecting the changes of the magnetic field can be used to develop a new diagnostic algorithm of oriental medical apparatus.

Detection and interpretation of wan-maeck by the pulse diagnostic apparatus -on the pulse/respiration rate- (완맥(緩脈)의 동서의학적(東西醫學的) 해석 -맥율(脈率)을 중심으로-)

  • Park, Young-Bae;Kang, Sung-Keel;Kim, Chang-Hwan;Koh, Hyung-Kyun;Kim, Yong-Suk;Lee, Yun-Ho;Kim, Sung-Woon;Huh, Wung;Youn, Chung-Hwa
    • The Journal of Korean Medicine
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    • v.18 no.1
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    • pp.143-156
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    • 1997
  • This report was conducted to quantify the pulse/respiration ratio and set up the normal range of wan-maeck(緩脈). In order to objectify the pulse diagnosis and use as basic clinical index of Cold-Hot diagnosis, we developed the hardware and software for detection and interpretation of pulse/respiration ratio, pulse/expiration ratio, pulse/respiration ratio, inspiration time, expiration time, respiration frequency, respiration time, duration of one pulse and pulse and pulse rate per minute, The results were as follows; pulse/respiration ratio is $4.30{\pm}1.03$ times, pulse/respiration ratio is $1.60{\pm}0.32$ times, pulse/respiration ratio is $2.37{\pm}0.75$ times, inspiration time is $1.35{\pm}0.20$ sec, expiration time is $1.89{\pm}0.39$ sec, respiration frequency is $17.16{\pm}3.49$ times/min, total respiration time is $3.63{\pm}0.71$ sec, duration of a pulse is $0.86{\pm}0.15$ sec, pulse rate is $71.51{\pm}12.30$ times/min.

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Fabrication and Characterization of a Wrist Wearable Cuffless Pulsimeter by Using the Hall Effect Device

  • Lee, Sang-Suk;Choi, Jong-Gu;Son, Il-Ho;Kim, Keun-Ho;Nam, Dong-Hyun;Hong, You-Sik;Lee, Woo-Beom;Hwang, Do-Guwn;Rhee, Jang-Roh
    • Journal of Magnetics
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    • v.16 no.4
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    • pp.449-452
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    • 2011
  • A wrist wearable cuffless pulsimeter with a portable and small size apparatus using Hall effect is fabricated. The analysis of the pulse wave measured by the testing product of pulsimeter is done to measure the pulse rate and blood pressure. The blood pressure obtained by the puslimeter is compared with the practical values measured by electronic or mercury liquid blood pressure meters. The detail analysis of a pulse wave measured by a wrist wearable cuffless pulsimeter detecting the changes of the magnetic field can be used to develop a new diagnostic algorithm of blood pressure applying for oriental medical apparatus.

Design and Fabrication of High Potential Cenerator for Cathod-ray Apparatus (음극선 발생기를 위한 고전압 발생 장치의 설계 및 제작)

  • 주동만;민경일;황재효
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.2 no.2
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    • pp.11-18
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    • 2001
  • The design method of high potential generator of diagnostic X-ray apparatus by using inverter is presented. For the high potential generator, a line filter, a rectifier, a Pulse width modulation control, bridge drive, a high potential transformer and a high potential rectifier circuit were adopted. The high potential generator with switching frequency to be 40 KHz is fabricated by using design method presented in this method. The experimental results are as followings; variable volts of 0∼620 V and variable currents 50∼500 mA.

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