• Title/Summary/Keyword: Vascular Impedance

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The Wall Shear Rate Distribution Near an End-to-End Anastomosis : Effects of Graft Compliance and Size

  • Rhee, Kye-Han
    • International Journal of Vascular Biomedical Engineering
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    • v.1 no.1
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    • pp.41-47
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    • 2003
  • The patency rates of small diameter vascular grafts are disappointing because of the formation of thrombus and intimal hyperplasia. Among the various factors influencing the success of graft surgery, the compliance and the size of a graft are believed to be the most important physical properties of a vascular graft. Mismatch of compliance and size between an artery and a graft alters anastomotic flow characteristics, which may affect the formation of intimal hyperplasia. Among the hemodynamic factors influencing the development of intimal hyperplasia, the wall shear stress is suspected as the most important one. The wall shear stress distributions are experimentally measured near the end-to-end anastomosis models in order to clarify the effects of compliance and diameter mismatch on the hemodynamics near the anastomosis. The effects of radial wall motion, diameter mismatch and impedance phase angle on the wall shear rate distributions near the anastomosis are considered. Compliance mismatch generates both different radial wall motion and instantaneous diameter mismatch between the arterial portion and the graft portion during a flow cycle. Mismatch in diameter seems to be affecting the wall shear rate distribution more significantly compared to radial wall motion. The impedance phase angle also affects the wall shear rate distribution.

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Multibody Dynamics in Arterial System

  • Shin Sang-Hoon;Park Young-Bae;Rhim Hye-Whon;Yoo Wan-Suk;Park Young-Jae;Park Dae-Hun
    • Journal of Mechanical Science and Technology
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    • v.19 no.spc1
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    • pp.343-349
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    • 2005
  • There are many things in common between hemodynamics in arterial systems and multibody dynamics in mechanical systems. Hemodynamics is concerned with the forces generated by the heart and the resulting motion of blood through the multi-branched vascular system. The conventional hemodynamics model has been intended to show the general behavior of the body arterial system with the frequency domain based linear model. The need for detailed models to analyze the local part like coronary arterial tree and cerebral arterial tree has been required recently. Non-linear analysis techniques are well-developed in multibody dynamics. In this paper, the studies of hemodynamics are summarized from the view of multibody dynamics. Computational algorithms of arterial tree analysis is derived, and proved by experiments on animals. The flow and pressure of each branch are calculated from the measured flow data at the ascending aorta. The simulated results of the carotid artery and the iliac artery show in good accordance with the measured results.

Hemodynamic Effects on Artery-Graft Anastomotic Intimal Hyperplasia (혈류의 유동이 혈관-인조혈관 접속부 혈관 내막 세포증식에 미치는 영향)

  • 이계한
    • Journal of Biomedical Engineering Research
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    • v.15 no.2
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    • pp.143-150
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    • 1994
  • Wall shear rate or stress is believed to be a major hemodynamic variable influencing atherosclerosis and artery-graft anastomic intimal hyperplasia. The purpose of this study is to verify the effects of radial wall motion, artery-graft compliance and diameter mismatch, and impedance phase angle on the wall shear rate distribution near an end-to-end artery-graft anastomosis model. The results show that radial wall motion of the elastic artery model lowers the mean wall shear rates under pulsatile flow condition by 15 to 20 % comparing to those under steady flow condition at the same mean flow rate. Impedance phase angle seems to have small effects on the mean and amplitude of the wall shear rate distribution. In order to study the effects of compliance and diameter mismatch on the wall shear rates, two models are studied-Model I has 6% and Model I has 6% and Model II has 11% smaller graft diameter. Divergent geometry caused by diameter mismatch near the distal sites reduces the mean wall shear rates significantly, and this low shear region is believed to be prone to intimal hyperplasia.

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Analysis of total body water by Impedance Measurement technique (Impedance 방식을 이용한 체내수분 측정에 관한 연구)

  • Lee, Ji-Woong;Oh, Jung-Whan;Yoon, Hyung-Ro
    • Proceedings of the KOSOMBE Conference
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    • v.1993 no.11
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    • pp.55-59
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    • 1993
  • 신체의 특정부위에 정전류를 흘리고 이에 의한 전압의 차이를 이용하여 임피던스를 측정한 후 체내수분을 구하는 방법은 안전하고, 비침습적이며 신속하고, 조작하기 쉽다. 더우기 측정기구의 이동이 용이하므로 실험실 밖에서도 측정이 가능하고 환자의 협조가 별로 없어도 쉽게 측정할 수 장점이 있기 때문에 이를 임상에 적용시키기가 용이하다. 본 연구에서는 설계한 임피던스 측정기는 8bit원칩 마이크로프로세서를 이용하여 다중 채널 주파수 선택이 가능하며 데이터의 입출력 및 통신까지도 가능하도록 설계하였고 이 장치에 대한 실험으로 100명(남자71명, 여자 29명, 평균나이 $34.1{\pm}18.4$세, 1-78세)을 대상으로 체내 임피던스의 기초적인 자료를 구하고 이를 바탕으로 수술전후 환자의 체내수분 변화량을 측정하였다. 실험결과, 수술전후 금식 및 수액투여에 따른 체수분 변화를 관찰할 수 있었다.

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A Simulation Study of Impedance Plethysmography for Diagnosing Deep Vein Thrombosis (Deep Vein Thrombosis 진단을 위한 Impedance Plethysmography의 시뮬레이션 연구)

  • Lee, Jeon;Lee, Kyoung-Joung
    • The Transactions of the Korean Institute of Electrical Engineers D
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    • v.50 no.10
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    • pp.494-501
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    • 2001
  • In this study, the effects of vascular parameter changes and electrodes on VOP measurement based on IPG were simulated mathematically. For the evaluation of the effects of hemodynamic changes on VOP, a mathematical model, which consists of cardiovascular system model and venous occlusion model, was developed and the model solution representing the blood flow and pressure in measuring point was found by 2nd order Runge-Kutta method. And, with sensitivity coefficients obtained from finite element solution of electric field in measuring point, the effects of electrode system on measurement were evaluated. As increasing the resistance, the venous capacitance was not changed but the venous outflows were decreased and the decreased compliance reduced the venous capacitance. And, for several configurations of round electrodes and band electrodes, the sensitivity coefficients were computed using the electric field distribution along deep vein. In conclusion, the proposed mathematical cardiovascular model could be applied to the simulation study on the effects of hemodynamic parameters on DVT diagnosis with IPG. And, also the sensitivity coefficients could provide effective electrode configuration for exact measurement of VOP.

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Comparative study of pulse point using hemodynamics (혈류역학을 이용한 촌구와 인영의 특성비교)

  • Shin, Sang-hoon;Park, Dae-hun;Park, Young-jae;Park, Young-bae
    • Journal of Acupuncture Research
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    • v.21 no.5
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    • pp.241-248
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    • 2004
  • Objectives : The purpose of this study is to examine the hemodynamic characteristics of pulse point. Methods : The computational analysis algorithms of arterial tree system was derived. In order to investigate the effect of internal organ on the pulse point, the diameter of celiac artery was reduced by half. Results : The sensitivity of flow change at the Inyoung(Renying) is better than that of the Chongu(Cunkou). but the Inyoung was worse than the Chongu in the point of the left and right symmetry. The pressure changes at the Inyoung and the Chongu were in the similar range. Conclusions : It was found from the result that the Chongu shows the more symmetrical hemodynamic characteristics than the Inyoung.

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Modeling for the Work of Heart and Development of the WOH Medical device (심장운동부하 모델링과 의료장비 개발)

  • Roh, Hyung-Woon;Suh, Sang-Ho
    • 유체기계공업학회:학술대회논문집
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    • 2006.08a
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    • pp.501-504
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    • 2006
  • The estimation of the work of heart can be treated as one of the most important parameters for determining the amount of circulating blood needed for harmonious metabolism in the human body. By monitoring the work of heart, one can detect increased work load of heart and start the treatment at the early stage of CHF. Thus it is necessary to estimate the work of heart. The contractility of the left ventricle, the second important parameter for representing the motion of heart, can be estimated through information on the work of heart. In this study, the modified Windkessel model, which has been used for a measure of vascular hemodynamic impedance parameters, was adapted to estimate the work of heart.

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A study on the pulp response of posterior composite resins in relation to the thickness of remaining dentin (잔존상아질 후경에 따른 구치용 복합레진의 치수반응에 관한 연구)

  • Ahn, Sang-Hun
    • Restorative Dentistry and Endodontics
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    • v.13 no.2
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    • pp.265-282
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    • 1988
  • The pulp response of posterior composite resins in relation to the thickness of remaining dentin was studied with 120 teeth from 6 dogs, Class V. cavities were prepared on the cervical area of facial surfaces. The thickness of remaining dentin was controlled with Caries Meter$^{(R)}$. The cavities of group A were prepared to show the electrical impedance of 22-26$K{\Omega}$(thickness of remaining dentin:0.4-0.5mm). The cavities of group B, 50-55$K{\Omega}$(thickness of remaining dentin: 0.8-0.9mm). Zinc - Oxide Eugenol cement, Estilux$^{(R)}$ posterior, Heliomolar$^{(R)}$ radiopaque, P-30$^{(R)}$ and Scotchbond$^{(R)}$+P-30$^{(R)}$ were filled in each cavity. After 3days, 1 week, 2 weeks, 4 weeks, 9 weeks and 13 weeks, the teeth and pulp tissue were processed routinely and stained with Hematoxylin and Eosin. Pathological tissue changes were observed with light microscope. The following results were obtained. I. The pulp response of group A cavties was severer than that of group B cavities. 2. In the pulp of group A cavities which were filled with Zinc-Oxide Eugenol Cement, only vascular changes were observed after 3 days and 1 week, severe acute inflammation after 4 weeks, moderate acute inflammation after 9 weeks, and chronic inflammation and formation of granulation tissue after 13 weeks. 3. In the pulp of group A cavities which were filled with Estilux$^{(R)}$ posterior, only vascular changes were observed after 3 days and 1 week. But the inflammatory response has became much severer with the elapsed experimental period. 4. In the pulp of group A cavities which were filled with Heliomolar$^{(R)}$ radiopaque, the inflammatory response with the elapsed experimental period was not severer than that of the pulp of group A cavities which were filled with other materials. 5. In the group B cavities, the difference of pulp response by filling materials was not recognizable. In the group A cavities, the pulp response of Estilux$^{(R)}$ posterior was severest and in order P-30$^{(R)}$, Heliomolar$^{(R)}$ radiopaque was slighter.

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Measurement of Leg Arterial Compliance of Normal and Diabetics (정상인과 당뇨병 환자의 다리 동맥의 Compliance 측정)

  • 김덕원;김상수
    • Journal of Biomedical Engineering Research
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    • v.13 no.3
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    • pp.189-194
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    • 1992
  • As people's income and intake of animal fat rapidly increase, so does choresterol concentration in blood. Thus diseases such as non-insulin-dependent diabetes mellitus(NIDDM)myocardial infraction, high blood pressure, cerebral stroke resulting from atherosclerosis rapidly increase recently. It is very difficult to diagnose atherosclerosis early since its progress is so slow and there is no sypmtoms in the beginning of the disease. In this study a mechanical characteristic, compliance, of the lower leg arteries was measured noninvasively. Changes of blood volume and pressure were measured using impedance plethysmgraphy and mercury sphygmomanometer, respectively. The compliance was calculated by dividing the change of blood volume by the change of pulse pressure ( systolic-diastolic pressure ) . Subjects were 24 asymptomatic persons ranging (rom 30 Ic 58yeras and 14 diabetics from 41 to 59years. The compliances, mean, and systolic pressures were statistically analyzed using a t-test be- tween the healthy and diabetic groups. The average compliance of the healthy and diabetic group was measured 2.79 and 1.82U1/mmHg/cm, respectively and these were significantly different(p<0.01). It was also found that the compliance is a better parameter in differentiating the vascular disease than mean or systolic blood pressure.

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