• Title/Summary/Keyword: Flow Resonance

Search Result 478, Processing Time 0.042 seconds

MR 관류강조영상에서 정상 가토의 국소 뇌혈류량 측정 (Measurement of Regional Cerebral Blood Volume in Normal Rabbits on Perfusion-weighted MR Image)

  • 박병래;예수영;나상옥;김학진;이석홍;전계록
    • Investigative Magnetic Resonance Imaging
    • /
    • 제4권2호
    • /
    • pp.100-106
    • /
    • 2000
  • 목적: 정상 가토의 뇌혈류를 측정하고자 자기공명영상 기법중 스캔시간이 훨씬 짧은 single shot gradient echo-planar 기법을 관류강조영상에 적용하여 뇌혈류량 측정법의 유용성을 알아보고자 하였다. 대상 및 방법: 몸무게 2.1-3.6kg의 가토 24마리를 실험군으로 채택하고, 실험군을 소아용 위치 잡이에 복와위로 눕힌 후 관류강조영상을 획득하였다. 관류강조영상 획득은 매 1초마다 연속하여 한 단면당 44초가지 44개의 영상을 얻었다. 스캔 시작 후 4초 경과시 조영제 Gd-DTPA 2ml를 빠른 속도로 경정맥 주입 후 연속하여 식염수 5ml를 경정맥 주입하였으며, 한 가토에서 동일한 방법으로 약 30분 간격으로 2회씩 실시하였다. 영상은 두정부 대뇌피질, 궁룡부 대뇌피 질 두 부위와 기저핵 한 부위에서 약 $3-5{\textrm{mm}^2}$의 면적으로 선택한 후, 시간 경과에 따른 신호강도의 변화를 보여주는 커브를 구하였다 이 영상을 PC로 전송한 후 자체 개발한 영상처리 프로그램과 IDL 소프트웨어를 이용하여 상대적 및 국소 뇌혈류량을 구하였다. 결과: 실험군으로 채택한 가토 총 24마리중 22마리에서 만족할 만한 1-2회의 시간-신호강도 곡선을 얻었다. 획득한 데이터는 두정부 대뇌피질 두 곳과 기저 핵에서 시간의 경과에 따른 신호강도의 변화를 측정하고, 이들 부위의 국소 뇌혈류 용적 및 조영제의 잔류 시간을 구하였다. 평균 국소 뇌혈류량 용적비는 궁륭부 대뇌피질에서는 $0.97{\pm}0.35$, 기저 핵에서는 $0.99{\pm}0.37$이었으며, 조영제의 펑균 잔류시간은 궁룡부 대뇌피질에서는 $9.83{\pm}1.63초$, 기저핵에서는 $9.42{\pm}1.14$초로서 두 부위간에 통계학적으로 유의한 차이는 없었다. 결론: 궁룡부 대뇌피질과 기저 핵에서 평균 국소 뇌혈류량 용적비와 조영제 평균잔류 시간의 차이는 없었다. 그러므로 PWI가 뇌혈류량 측정에 유용하며 허혈성 질환의 조기진단 및 예후 추정에 이용될 수 있다. 향후 정상조직과 뇌경색이 유발 된 조직의 rCBV차이를 비교할 수 있으며, DWI 소견과 경색 환자에 적용하면 뇌혈류 변화 분석에 도움이 될 것으로 사료된다.

  • PDF

두부둔상 후 내경동맥손상으로 인한 뇌경색의 지연진단: 증례보고 (Delayed Diagnosis of Cerebral Infarction after Complete Occlusion of ICA due to Blunt Head Trauma: A Case of Report)

  • 윤정호;고정호;조준성
    • Journal of Trauma and Injury
    • /
    • 제28권3호
    • /
    • pp.190-194
    • /
    • 2015
  • Blunt cerebrovascular injury is defined as a vertebral or carotid arterial structural wall injury resulting from nonpenetrating trauma. Complete traumatic internal carotid artery occlusion is very rare condition accounting for 0.08~0.4 0f all trauma patients and believed to be associated with the greatest risk of ischemic stroke reported in 50~90% in a few small series. A 55-year-male was admitted with drowsy mentality and severe headache after a fall down accident. Brain computed tomography showed a subdural hematoma at the both frontal area with a fracture of the occipital skull bone. Two days after admission, he suddenly complained with a right side hemiparesis of motor grade 2. Brain magnetic resonance diffusion demonstrated multiple high flow signal changes from the left frontal and parietal lesion. Computed tomographic angiogram (CTA) revealed absence of the left ICA flow. Trans femoral cerebral angiography (TFCA) showed complete occlusion of the left internal carotid artery (ICA) at ophthalmic segment in the left ICA angiogram and flows on the left whole hemispheric lesions through the anterior communicating artery in the right ICA angiogram. We decided to conduct close observations as a treatment for the patient because of acute subdural hematoma and sufficient contralateral cerebral flow by perfusion SPECT scan. Two weeks after the accident, he was treated with heparin anticoagulation within INR 2~4 ranges. He recovered as the motor grade 4 without another neurologic deficit after 3 months.

  • PDF

Influence of viscous effects on numerical prediction of motions of SWATH vessels in waves

  • Brizzolara, Stefano;Bonfiglio, Luca;Medeiros, Joao Seixas De
    • Ocean Systems Engineering
    • /
    • 제3권3호
    • /
    • pp.219-236
    • /
    • 2013
  • The accurate prediction of motion in waves of a marine vehicle is essential to assess the maximum sea state vs. operational requirements. This is particularly true for small crafts, such as Autonomous Surface Vessels (ASV). Two different numerical methods to predict motions of a SWATH-ASV are considered: an inviscid strip theory initially developed at MIT for catamarans and then adapted for SWATHs and new a hybrid strip theory, based on the numerical solution of the radiation forces by an unsteady viscous, non-linear free surface flow solver. Motion predictions obtained by the viscous flow method are critically discussed against those obtained by potential flow strip theory. Effects of viscosity are analyzed by comparison of sectional added mass and damping calculated at different frequencies and for different sections, RAOs and motions response in irregular waves at zero speed. Some relevant conclusions can be drawn from this study: influence of viscosity is definitely non negligible for SWATH vessels like the one presented: amplitude of the pitch and heave motions predicted at the resonance frequency differ of 20% respectively and 50%; in this respect, the hybrid method with fully non-linear, viscous free surface calculation of the radiation forces turns out to be a very valuable tool to improve the accuracy of traditional strip theories, without the burden of long computational times requested by fully viscous time domain three dimensional simulations.

양방향 유체-고체 연성해석을 통한 표면 위 미세날개의 진동이 열전달에 미치는 영향 분석 (A Numerical Study on the Effect of a Microfin with a Flexible Up-down Movement on Heat Transfer using a Fluid-structure Interaction (FSI) Method)

  • 박기홍;민준기;김진규;강석훈;김성진;박상후
    • 한국정밀공학회지
    • /
    • 제28권8호
    • /
    • pp.975-983
    • /
    • 2011
  • A microfin on a heated surface and its effects of the heat transfer has been investigated. The thickness of the fin is about 8 micrometer to allow the flexible up-down motion of the fin. Two-way complete FSI (Fluid-Structure Interaction) method has been applied for the analysis. Firstly, the deformation of a microfin due to the pulsating flow is evaluated using structure analysis. The flow and temperature patterns are predicted by CFD (Computational Fluid Dynamics) method. At each time step, using the pressure force and temperature distribution from CFD, the deformation of the wing is evaluated by FEM. Also in order to estimate the resonance probability, the natural frequency of the wing structure is calculated by modal analysis. The proposed numerical procedure was validated through experiment using a single fin. Through this work, we show that the increase of 40% in heat transfer capacity using the microfin has been compared with that of flat plate case.

상지동맥 혈관계의 모델링과 혈유동의 전산수치해석 (Modeling of the Artery Tree in the Human Upper Extremity and Numerical Simulation of Blood Flow in the Artery Tree)

  • 김기원;김재욱;백현만;김성균
    • 대한기계학회논문집B
    • /
    • 제40권4호
    • /
    • pp.221-226
    • /
    • 2016
  • 하지혈관에 비해 상지혈관질환은 드물기 때문에 상지혈관계에 대한 실험적, 수치해석적 연구는 매우 드물다. 본 논문에서는 최초로 MRA 영상데이터로부터 한국 성인 왼팔의 혈관계, 상완동맥에서 1 mm 이상의 손가락동맥들에 이르는, 3차원 컴퓨터 모델을 제작하였다. 이 모델에 대해 수치해석을 수행하여 정상, 주기유동에 대한 속도장, 압력장을 계산하였고 주요 분지관에서의 유량분배와 벽전단응력 분포에 대해 분석하였다.

Study of Stay Vanes Vortex-Induced Vibrations with different Trailing-Edge Profiles Using CFD

  • Neto, Alexandre D'Agostini;Saltara, Fabio
    • International Journal of Fluid Machinery and Systems
    • /
    • 제2권4호
    • /
    • pp.363-374
    • /
    • 2009
  • The 2D flow around 13 similar stay-vane profiles with different trailing edge geometries is investigated to determinate the main characteristics of the excitation forces for each one of them and their respective dynamic behaviors when modeled as a free-oscillating system. The main goal is avoid problems with cracks of hydraulic turbines components. A stay vane profile with a history of cracks was selected as the basis for this work. The commercial finite-volume code $FLUENT^{(R)}$ was employed in the simulations of the stationary profiles and, then, modified to take into account the transversal motion of elastically mounted profiles with equivalent structural stiffness and damping. The k-$\omega$ SST turbulence model is employed in all simulations and a deforming mesh technique used for models with profile motion. The static-model simulations were carried out for each one of the 13 geometries using a constant far field flow velocity value in order to determine the lift force oscillating frequency and amplitude as a function of the geometry. The free-oscillating stay-vane simulations were run with a low mass-damping parameter ($m^*{\xi}=0.0072$) and a single mean flow velocity value (5m/s). The structural bending stiffness of the stay-vane is defined by the Reduced Velocity parameter (Vr). The dynamic analyses were divided into two sets. The first set of simulations was carried out only for one profile with $2{\leq}Vr{\leq}12$. The second set of simulations focused on determining the behavior of each one of the 13 profiles in resonance.

Analysis of the effect of flow-induced crystallization on the stability of low-speed spinning using the linear stability method

  • Shin Dong Myeong;Lee Joo Sung;Jung Hyun Wook;Hyun Jae Chun
    • Korea-Australia Rheology Journal
    • /
    • 제17권2호
    • /
    • pp.63-69
    • /
    • 2005
  • The stability of low-speed spinning process exhibiting spinline flow-induced crystallization (FIC) with no neck-like spinline deformation has been investigated using the method of linear stability analysis. Effects of various process conditions such as fluid viscoelasticity and the spinline cooling on the spinning stability have been found closely related to the development of the spinline crystallinity. It also has been found that the FIC makes the system less stable or more unstable than no FIC cases when the spinline crystallinity reaches its maximum possible value, whereas the FIC generally stabilizes the system if the crystallinity doesn't reach its maximum value on the spinline. It is believed that the destabilizing effect of the FIC on low-speed spinning when the crystallinity is fully developed on the spinline is due to the reduction of the real spinning length available for deformation on the spinline. On the other hand, the increased spinline tension caused by the FIC when the maximum crystallinity is not reached on the spinline and thus no reduction in the spinning length occurs, makes the sensitivity of spinline variables to external disturbances smaller and hence stabilizes the system. These linear stability results are consistent with the findings by nonlinear transient simulation, as first reported by Lee et al. (2005b).

Characteristics of Particle Separation in Suspension using an Ultrasonic Standing Wave

  • Shin, Beom-Soo;Danao, Mary-Grace C.
    • Journal of Biosystems Engineering
    • /
    • 제37권2호
    • /
    • pp.113-121
    • /
    • 2012
  • Purpose: Particle separation in solution is one of important process in a unit operation as well as in an extract preparation for biosensors. Contrary to centrifuge-type of mesh-type filter, using an ultrasonic standing wave make the filtering process continuous and free from maintenance. It is needed to investigate the characteristics of particle movement in the ultrasonic standing wave field. Methods: Through the computer simulation the effects of major design and driving parameters on the alignment characteristics of particles were investigated, and a cylindrical chamber with up-stream flow type was devised using two circular-shape PZTs on both sides of the chamber, one for transmitting ultrasonic wave and the other for just reflecting it. Then, the system performance was experimentally investigated as well. Results: The speed of a particle to reach pressure-node plane increased as the acoustic pressure and size of particle increased. The maximum allowable up-stream flow rate could be calculated as well. As expected, exact numbers of pressure-node planes were well formed at specific locations according to the wavelength of ultrasonic wave. As the driving frequency of PZT got close to its resonance frequency, the bands of particles were observed clearer, which meant the particles were trapped into narrower space. Higher excitation voltages to the PZT produced a greater acoustic force with which to trap particles in the pressure-node planes, so that the particles gathered could move upwards without disturbing their alignments even at a higher inlet flow rate. Conclusions: This research showed the feasibility of particle separation in solution in the continuous way by an ultrasonic standing wave. Further study is needed to develop a device to collect or harvest those separated particles.

수중 프로펠러 명음 현상의 규명에 관한 연구 (A study on the identification of underwater propeller singing phenomenon)

  • 김태형;이형석
    • 한국음향학회지
    • /
    • 제37권2호
    • /
    • pp.92-98
    • /
    • 2018
  • 본 논문은 모형 프로펠러를 대상으로 공동수조 시험, 수중 충격시험, 유한요소해석 및 전산유체해석에 기반하여 수행한 명음 발생 메커니즘 연구이다. 선미 유동을 모사하기 위해 반류망, 프로펠러 및 방향타를 설치하고 수중청음기와 가속도계로 프로펠러 명음 현상의 발생과 소멸을 계측하였다. 유한요소해석을 통해 프로펠러 날개의 고유진동수를 예측하고 접촉 및 비접촉식 충격시험으로 이를 검증하였다. RANS(Reynolds Averaged Navier-Stokes) 방정식 기반 전산유체해석을 통하여 프로펠러 날개 각 단면의 유속과 유효 받음각을 계산하였으며, DES(Detached Eddy Simulation) 기반 고해상도 해석을 통해 명음 발생 위치에서 2-D 날개 단면 뒷전의 와류흘림주파수(vortex shedding frequency) 계산을 수행하였다. 수치적으로 예측된 와류흘림주파수는 모형시험으로 계측한 명음 발생 주파수 및 날개 고유진동수와 일치함을 확인하였다.

암 바이오마커 검출용 비색법 기반 측면 흐름 면역 크로마토그래피 분석법(LFIA) 스트립의 최신 연구 동향 (Recent Research Trend in Lateral Flow Immunoassay Strip (LFIA) with Colorimetric Method for Detection of Cancer Biomarkers)

  • 이수영;이혜진
    • 공업화학
    • /
    • 제31권6호
    • /
    • pp.585-590
    • /
    • 2020
  • 암(예: 폐암, 전립선암, 간암, 부신겉질샘암종 등)의 조기 진단은 치료비용, 생존율, 완치 여부를 결정짓는 아주 중요한 단계다. 현재의 암 진단 시스템(예: 조직검사, 컴퓨터단층쵤영, 양전자방출단층쵤영, 자기공명영상, 초음파촬영 등)은 고가의 장비를 사용하거나 훈련된 고급 인력만이 수행 가능하기 때문에 신속한 조기 진단에 적합하지 못하다. 국제 의과학 사회는 현장검사(point of care) 디바이스 개발을 통한 효과적인 질병 관리 시스템 개발을 지향하고 있으며, 다양한 분석법 기반의 디바이스가 개발되어왔다. 이 중에서도 측면 흐름 면역 크로마토그래피 분석법 스트립은 경제적인 비용, 짧은 검사 시간, 사용자의 쉬운 접근성 등의 많은 이점들이 있다. 본 논문에서는 LFIA 스트립의 최신 연구 동향을 바탕으로 암 진단 관점에서의 비색법 기반 LFIA 스트립의 연구 방향 및 잠재적 응용에 대해 논의하고자 한다.