• 제목/요약/키워드: arterial system

검색결과 406건 처리시간 0.028초

세포-시스템 차원의 혈류역학적 심혈관 시스템 모델의 개발 (Development of an integrative cardiovascular system model including cell-system and arterial network)

  • 심은보;전형민
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2008년도 춘계학술대회논문집
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    • pp.542-546
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    • 2008
  • In this study, we developed a whole cardiovascular system model combined with a Laplace heart based on the numerical cardiac cell model and a detailed arterial network structure. The present model incorporates the Laplace heart model and pulmonary model using the lumped parameter model with the distributed arterial system model. The Laplace heart plays a role of the pump consisted of the atrium and ventricle. We applied a cellular contraction model modulated by calcium concentration and action potential in the single cell. The numerical arterial model is based upon a numerical solution of the one-dimensional momentum equations and continuity equation of flow and vessel wall motion in a geometrically accurate branching network of the arterial system including energy losses at bifurcations. For validation of the present method, the computed pressure waves are compared with the existing experimental observations. Using the cell-system-arterial network combined model, the pathophysiological events from cells to arterial network are delineated.

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무선 기반의 광섬유 간섭계형 맥파센서 시스템 (Wireless Optical Fiber Interferometer Arterial Pulse Wave Sensor System)

  • 박재희;신종덕
    • 센서학회지
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    • 제22권6호
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    • pp.439-443
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    • 2013
  • A wireless optical fiber interferometer arterial pulse wave sensor system is developed for remote sensing. The wireless optical fiber sensor system consists of Zigbee communication modules and an optical fiber interferometer arterial pulse wave sensor. The optical fiber arterial pulse wave sensor is an in-line Michelson interferometer enclosed with steel reinforcement in a heat-shrinkable tube. The Zigbee communication modules are composed of an ATmega128L microprocessor and a CC2420 Zigbee chip. The arterial pulse waves detected by the optical fiber sensor were transmitted and received via the Zigbee communication modules. The experimental results show that the wireless optical fiber sensor system can be used for monitoring the arterial pulse waves remotely.

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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    • 제19권spc1호
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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.

Measurement of Arterial Pulse Wave at the Temple Using PZT Piezo Sensor

  • Kil Se Kee;Han Young Hwan;Lee Eung Hyuk;Park Young Bae;Cho Heung Ho;Min Hong Ki;Hong Seung Hong
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2004년도 학술대회지
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    • pp.772-775
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    • 2004
  • Generally, arterial pulse waves are measured at the radial arterial of wrist or carotid arterial of neck using a sensor such as pressure sensor, piezoelectric sensor or optic sensor. But in this paper, arterial pulse wave is measured at the temple using PZT piezo sensor which is attached on the temple in form of a hair-band. Arterial Pulse waves are generally measured when a reagent is in a static state. But in this paper, we implemented the arterial pulse wave measurement system, as a previous stage of the arterial pulse wave measurement system for running at outdoors or on a running machine, that measures arterial pulse waves at the temple, which is the least moving part when running. Thorough the continuous study, if the motion artifact when running is possible to be removed, the system will be able to perform monitoring of running men's states and especially emergency signals such as serious pulse waves of an/old and feeble persons and handicapped persons.

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대도시 교통문제 완화를 위한 간선도로별 신호체계의 최적설계에 관한 연구 (A Study on the Optimum Design of the Arterial-Based Signal System for the Relief of Transportation Problems in Metropolitan Areas)

  • 김태곤
    • 한국항만학회지
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    • 제8권2호
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    • pp.1-35
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    • 1994
  • The main arterial which runs through the in City of Pusan, carries about 60% of downtown traffic or more, maintains about 20% yearly increase in traffic is severely suffering from the traffic congestion because of concentrated traffic volumes regardless of peak-time periods. The purpose of this study was to grasp the traffic, geometric, and signal conditions of the main arterial through the Videologging System Techniques, perform the transportation system analyses, and finally suggest the improvements which could increase the travel capacity, reduce the average delay and fuel consumption with the optimal conditions of signal system. The following conclusions were drawn : firstly the traffic system should be shifted for the travel distribution on the arterial during the peak time periods, secondly the roadway system of the arterial reviewed for left-turn traffic during the peak time periods, and thirdly the signal system of intersection reconstructed for signal optimization or progression within the range of cycle length suggested.

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급성 신성 고혈압 쥐의 전신성 동맥계 및 폐 동맥계에 대한 Angiotensin II의 반응성 (Angiotensin II Reactivity in Systemic and Pulmonary Arterial System of Acute Renal Hypertensive Rats)

  • 이병호;신화섭;허인회;안형수;노정구
    • 약학회지
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    • 제37권6호
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    • pp.605-614
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    • 1993
  • To investigate the endothelial dependence of angiotensin II(A II)-induced responses in the systemic and pulmonary arterial system of acute renal hypertensive rats of 2-kidney, 1-ligation type (RHRs), A II-induced vasocontractile and pressor effects were evaluated in isolated arteries and in vivo, respectively. A II dose-dependently contracted intact thoracic aorta and pulmonary artery (E$_{max}$:40% at 10$^{-7}$M and 80% at 3$\times$10 $^{-8}$M, respectively) from normotensive rats(NRs), which was significantly increased by removal of endothelial cells or pretreatment with EDRF inhibitors. In NRs, A II increased mean systemic and pulmonary arterial pressure(33 and 5.6mmHg at 0.1 $\mu\textrm{g}$/kg, respectively), the effect being significantly increased (P<0.01) by L-NAME(30mg/kg, i.v.). However, A II-induced contraction of intact thoracic aorta and pulmonary artery(E$_{max}$: 33% at 10$^{-7}$M and 93% at 3$\times$10$^{-8}$M, respectively) from RHRs were not changed after endothelial function was disrupted as above; similarly, pressor effects of A II on the systemic and pulmonary arterial pressure in RHRs did not altered by L-NAME. A II tachyphylactic responses for intact thoracic aorta from NRs and RHRs(65 and 87% at 10$^{-8}$M, respectively) were greater than those for pulmonary artery(19 and 19% at 10$^{-8}$M, respectively). Distruption of endothelial function significantly (P<0.01) depressed A II tachyphylaxis for thoracic aorta, but not for pulmonary artery. These results suggest that vascular reactivity to A II is not altered in RHRs, and it is greater for pulmonary arterial system than for systemic arterial system. A II reactivity is EDRF-dependent in both arterial systems of NRs, but EDRF-independent for RHRs. Finally, EDRF is one of the major factors underlying A II tachyphylaxis for thoracic aorta, but not for pulmonary artery.

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신성 고혈압쥐의 전신성 동맥계와 폐동맥계에 대한 EDRF 기능의 차이 (Differential Function of EDRF in Systemic Arterial and Pulmonary Arterial System of Renal Hypertensive Rats)

  • 이병호;신화섭;허인회
    • 대한약리학회지
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    • 제29권2호
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    • pp.213-223
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    • 1993
  • 급성 신성 고혈압쥐 (2-kidney, 1-ligation type)의 전신성 동맥계와 폐 동맥계에 대한 내피 의존적 혈관반응성을 규명하기 위하여, 적출 혈관 및 마취상태의 흰쥐에 대한 acetylcholine (ACh)의 혈관이완작용 및 혈압강하 작용을 측정하였다. 혈장 renin 활성(PRA)은 신동맥 결찰전 $7.31{\pm}0.63\;ng/ml/hr$ A I에 비해 결찰 $6{\sim}8$일후에는 $19{\sim}22\;ng/ml/hr$ A I으로 유의성있게 증가하였으며, 이는 수축기혈압의 상승과 $(154{\pm}1.83{\rightarrow}190{\sim}215\;mmHg)$ 일정한 상관성을 유지하였다. 신성 고혈압쥐 및 정상 혈압쥐의 흉곽 대동맥은 내피세포 존재시 ACh에 의해 용량의존적으로 이완되었으며, 이때 신성고혈압쥐에서의 반응은 정상 혈압쥐에 비해 유의성있게 감소하였다(각각 34% 및 86%, p<0.01). 또한 ACh은 신성 고혈압쥐 및 정상 혈압쥐의 폐동맥에 대해서도 내피세포 존재시에 이완반응을 초래하였다. 그러나, 흉곽 대동맥에서와는 달리 두 군간에 유의성있는 차이가 없었다. 이들 반응은 내피세포 제거후 또는 EDRF 억제제 (L-NAME, MB, $10^{-5}$ M) 투여후 유의성있게 억제되었다. $ACh(0.1{\sim}10\;{\mu}g/kg,\;i.v.)$은 신성 고혈압쥐 및 정상 혈압쥐에서 전신성 동맥압의 강하를 초래하였는데, 신성 고혈압쥐에서 다소 감소하였으나 유의성있는 차이는 없었으며 ($SAPm;\;10\;{\mu}g/kg$에서 각각 39%, 46 %), 이들 작용은 L-NAME(30 mg/kg, i.v.) 전처치후 유의성있게 억제되었다. ACh에 의한 폐동맥압 강하는 신성 고혈압쥐 및 정상 혈압쥐 사이에 서로 비슷하게 나타났다. 그러나, 신성 고혈압 쥐 및 정상 혈압쥐에서 ACh에 의한 폐동맥압의 강하율은 전신성 동맥압의 강하율보다 유의성있게(p<0.01) 작았으며, 또한 L-NAME $(0.1{\sim}100\;mg/kg,\;i.v.)$에 의한 폐동맥압의 상승은 전신성 동맥압의 상승보다 유의성있게(p<0.01) 작았다. 이상의 실험 결과들은 급성 신성 고혈압쥐의 전신성 동맥계에서는 내피세포 손상이 초래되지만, 폐동맥계에서는 초래되지 않는다는것을 제시해준다. 또 신성고혈압쥐 및 정상 혈압쥐에서 EDRF 의 basal release 및 ACh 유발성 EDRF function은 전신성 동맥계에 비해 폐동맥계에서 적다는 것을 제시해준다.

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구강 내부 맥파 계측을 위한 센서 시스템 연구 (A Study on the Arterial Pulse Wave Measuring System of an Oral Cavity)

  • 김경호
    • 반도체디스플레이기술학회지
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    • 제6권4호
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    • pp.43-47
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    • 2007
  • In this paper, we propose a novel sensor system for measuring the arterial pulse in an oral cavity. In order to measure pulse wave in oral cavity, the proposed system is designed with reflection type arterial wave sensor, not by using transmission type arterial pulse wave sensor. Driving circuit through pulse current is designed for solving self-heating problem of LED. The effectiveness of the proposed sensor system is compared with pulse wave between pulse wave of oral cavity and other body parts as well as with characteristic measurements. The experiment shows that the proposed sensor system is adaptive to capturing consecutive and meaningful biometric signals through the variation of pulse wave changes in oral cavity when exercising. The study result expects to design and develop mobile sensors which could be adapted to healthcare devices.

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Usefulness of Arterial Subtraction in Applying Liver Imaging Reporting and Data System (LI-RADS) Treatment Response Algorithm to Gadoxetic Acid-Enhanced MRI

  • Seo Yeon Youn;Dong Hwan Kim;Joon-Il Choi;Moon Hyung Choi;Bohyun Kim;Yu Ri Shin;Soon Nam Oh;Sung Eun Rha
    • Korean Journal of Radiology
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    • 제22권8호
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    • pp.1289-1299
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    • 2021
  • Objective: We aimed to evaluate the usefulness of arterial subtraction images for predicting the viability of hepatocellular carcinoma (HCC) after locoregional therapy (LRT) using gadoxetic acid-enhanced MRI and the Liver Imaging Reporting and Data System treatment response (LR-TR) algorithm. Materials and Methods: This study included 90 patients (mean age ± standard deviation, 57 ± 9 years) who underwent liver transplantation or resection after LRT and had 73 viable and 32 nonviable HCCs. All patients underwent gadoxetic acid-enhanced MRI before surgery. Two radiologists assessed the presence of LR-TR features, including arterial phase hyperenhancement (APHE) and LR-TR categories (viable, nonviable, or equivocal), using ordinary arterial-phase and arterial subtraction images. The reference standard for tumor viability was surgical pathology. The sensitivity of APHE for diagnosing viable HCC was compared between ordinary arterial-phase and arterial subtraction images. The sensitivity and specificity of the LR-TR algorithm for diagnosing viable HCC was compared between the use of ordinary arterial-phase and the use of arterial subtraction images. Subgroup analysis was performed on lesions treated with transarterial chemoembolization (TACE) only. Results: The sensitivity of APHE for viable HCCs was higher for arterial subtraction images than ordinary arterial-phase images (71.2% vs. 47.9%; p < 0.001). LR-TR viable category with the use of arterial subtraction images compared with ordinary arterial-phase images showed a significant increase in sensitivity (76.7% [56/73] vs. 63.0% [46/73]; p = 0.002) without significant decrease in specificity (90.6% [29/32] vs. 93.8% [30/32]; p > 0.999). In a subgroup of 63 lesions treated with TACE only, the use of arterial subtraction images showed a significant increase in sensitivity (81.4% [35/43] vs. 67.4% [29/43]; p = 0.031) without significant decrease in specificity (85.0% [17/20] vs. 90.0% [18/20]; p > 0.999). Conclusion: Use of arterial subtraction images compared with ordinary arterial-phase images improved the sensitivity while maintaining specificity for diagnosing viable HCC after LRT using gadoxetic acid-enhanced MRI and the LR-TR algorithm.

촬상소자를 이용한 맥동의 2차원 계측 (2-dimensional Measurement of Arterial Pulse by Imaging Devices)

  • 김기왕
    • 대한한의진단학회지
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    • 제12권2호
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    • pp.8-17
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    • 2008
  • Objectives: For the traditional pulse diagnosis in Oriental Medicine, not only the pulse shape in time domain, but the width, length and depth of arterial pulse also should be measured. However, conventional pulse diagnostic systems have failed to measure the spatial parameters of the arterial pulse e.g. effective length of arterial pulse in the wrist. In fact, there are many ways to measure that kind of spatial features in arterial pulsation, but among them, the method using image sensor provides relatively cheap and simple way, therefore I tested feasibility of measuring 2-dimensional pressure distribution by imaging devices. Methods: Using widely used PC cameras and dotted balloons, the subtle oscillation of skin over the radial artery was recorded continuously, and then the displacement of every dot was calculated. Consequently, the time course of that displacements shows arterial pulse wave. Results: By the proposed method I could get pressure distribution map with 30Hz sampling rate, 21steps quantization resolution, and approximately 1mm spatial resolution. With reduced quantization resolution, $3cm{\times}4cm$ view angle could be achieved. Conclusion: Although this method has some limitations, it would be useful method for detecting 2-dimensional features of arterial pulse, and accordingly, this method provides a novel way to detect 'narrow pulse', 'wide pulse', 'long pulse', 'short pulse', and their derivatives.

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