• 제목/요약/키워드: TPLS

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TPLS 혈액주머니 내의 3차원 비정상유동에 대한 수치해석 연구: 액추에이터 속도의 영향 (Numerical Study of 3D Unsteady Flow in a Blood Sac of TPLS: Effect of Actuator Speed)

  • 정기석;성현찬;박명수;고형종;심은보;민병구;박찬영
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2003년도 추계 학술대회논문집
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    • pp.206-211
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    • 2003
  • This paper reports the numerical results for blood flow of the sac squeezed by moving actuator in the TPLS(Twin Pulse Life Support System). Blood flow in the sac is assumed to be 3-dimensional unsteady newtonian fluid. where the blood flow interacts with the sac, which is activated by the moving actuator. The flow field is simulated numerically by using the FEM code, ADINA. It is well known that hemolysis is closely related to shear stress acted on blood flow. According to this fact, we simulate four models with different speed for moving actuator and examine the distribution of shear stress for each model. Numerical results show that maximum shear stress is strongly dependent on the actuator speed.

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박동형 인공심폐기에서의 혈류의 고체-유체 상호작용에 대한 수치적 연구 (Numerical study for fluid-structure interaction of blood flow in TPLS)

  • 정기석;성현찬;심은보;고형종;민병구
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.705-706
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    • 2002
  • Hemodynamics of the TPLS(Twin Pulse Life Support System) is numerically investigated to delineate the possibility of hemolysis in blood. Computational method employing finite element algorithm is utilized to solve the blood flow of the sac squeezed by moving actuator. We assume that the blood flow interacts with the sac material which is activated by the rigid body motion of the actuator. Valve dynamics at the ends of the sac is simplified as on/off type motion. We compute the transient viscous flow in the two-dimensional geometry of the blood sac. Incompressible laminar flow is simulated on the assumption of Newtonian fluid. Blood velocity has a step gradient near the throat of the sac formed by the moving actuator. According to the decrease of the gap size of blood passage, the magnitude of shear stress in the blood is dramatically increased. Numerical solutions show that the maximum value of shear stress in the blood flow in TPLS is relatively smaller than that of the roller type ECLS.

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Design of an 8× Four-group Zoom System without a Moving Group by Considering the Overall Length

  • Park, Sung Min;Lee, Jea-Woo;Park, Sung-Chan
    • Current Optics and Photonics
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    • 제6권1호
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    • pp.104-113
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    • 2022
  • We present a method to count the overall length of the zoom system in an initial design stage. In a zoom-lens design using the concept of the group, it has been very hard to precisely estimate the overall length at all zoom positions through the previous paraxial studies. To solve this difficulty, we introduce Teq as a measure of the total track length in an equivalent zoom system, which can be found from the first order parameters obtained by solving the zoom equations. Among many solutions, the parameters that provide the smallest Teq are selected to construct a compact initial zoom system. Also, to obtain an 8× four-group zoom system without moving groups, tunable polymer lenses (TPLs) have been introduced as a variator and a compensator. The final designed zoom lens has a short overall length of 29.99 mm, even over a wide focal-length range of 4-31 mm, and an f-number of F/3.5 at wide to F/4.5 at tele position, respectively.

실험적으로 신부전을 유발시킨 개에서 박동형 혈액투석기의 효능 (Efficacy of Pulsatile Hemodialyzer to Experimental Renal Failure in Dog)

  • 지혜정;윤영민;이주명;강태영;김재훈;정종태;최민주;민병구;이경갑
    • 한국임상수의학회지
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    • 제23권3호
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    • pp.320-324
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    • 2006
  • The purpose of the present study was to compare pulsatile type(Twin Pulse Life Support; TPLS) with rotary type hemodialyzer(AK95) in order to reduce the dialysis time and to improve dialysis effect. Three healthy dogs(about 30 kg BW) were used. Experimental renal failure was induced by the ligation of bilateral renal artery. A pair of catheters were implanted in jugular vein for dialysis. Daily investigated parameters included clinical signs such as vomiting, fecal appearance and activity, and also laboratory data such as PCV, TP, BUN and creatinine. Hemodialysis was started above 90 mg/100 ml BUN level and, laboratory data were measured every an hour for 4 hours. Heparin was administered 300 IU/Kg before dialysis and 150 IU/Kg via IV route every 90 minutes during dialysis. Clinical signs after induction renal failure were shown severe vomiting, anorexia, diarrhea, mucous feces, ataxia, dilated pupil and episcleral hyperemia. The average of BUN value decreased hourly $99{\pm}12.1,\;84{\pm}12.2,\;72{\pm}8.0,\;58{\pm}7.1,\;48{\pm}5.2,\;and\;39{\pm}3.2mg/100ml$ by hemodialysis. The average of creatinine value decreased $7.8{\pm}0.61,\;6.4{\pm}0.40,\;5.3{\pm}0.42,\;4.5{\pm}0.23,\;4.0{\pm}0.41,\;and\;3.4{\pm}0.42mg/100ml$ according to hemodialysis an hour. There are not significantly differences BUN, creatinine, PCV and TP values between pulsatile and rotary type hemodialysis. These results suggested that effects of hemodialysis with Pulsatile type(TPLS) are not significantly difference as compared with hemodialysis of rotary type(AK95). Further research is needed in order to estimate the influence of cardiovascular and pulmonary system in hemodialysis of pulsatile type.

한국형 박동식 생명구조장치(T-PLS) 순환회로를 위한 최적화 모델 연구 (A Study of Optimal Model for the Circuit Configuration of Korean Pulsatile Extracorporeal Life Support System (T-PLS))

  • 임춘학;손호성;이정주;황진욱;이혜원;김광택;선경
    • Journal of Chest Surgery
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    • 제38권10호
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    • pp.661-668
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    • 2005
  • 배경: 체외순환장치 중 막형산화기를 사용하는 인공심폐기나 생명구조장치(Extra-corporeal Life Support System; ECLS)는 혈액이 통과하기 위해 막형산화기 전방에 구동점프가 요구된다. 국내에서 개발된 박동식 생명구조장치(T-PLS)의 경우는 막형산화기가 두 개의 혈액주머니 사이에 위치하여 액츄에이터가 번갈아 까내는 구조로 되어 있다 저자 등은, 만일 저항이 낮은 gravity-flow hollow fiber 막형산화기를 사용한다면 두 개의 혈액주머니와 박동점프를 막형산화기 후방에 설치하는 것이 가능하며, 이러한 구조는 같은 펌프박동 조건에서 2배의 맥박수를 보장하므로 펌프박출량이 증가될 것으로 가정하였다. 본 실험은 한국형 생명구조장치의 회로구성을 최적화하기 위해 계획되었으며, 기존의 막형산화기를 사용한 직렬회로구조와 gravity-flow hollow fiber 막형산화기를 이용한 병렬회로 구조를 박동에너지와 펌프박출량을 이용하여 비교하였다. 대상 및 방법: 실험은 $35\~45kg$의 돼지 12마리에서 심실세동혈 심정지 모델을 만들었으며, T-PLS 회로구성 형태에 따라 두 군으로 나누었다. 직렬군은 두 개의 혈액주머니 중간에 기존 막형산화기를 직렬로 설치하였으며, 병렬군은 gravity-flow hollow fiber막형산화기 후방에 이중구동점프를 병렬로 설치하였다. 펌프박출량은 대동맥 도관에서 직접 혈류를 측정하였고, 등가압력에너지(EEP)는 실시간으로 컴퓨터에 저장된 펌프박출곡선과 하행대동맥 혈압곡선에서 계산하였다. 각 지표는 점프속도 30, 40, 50 BPM에서 매번 측정하였다. 결과: 두 군 모두 박동에너지 측면에서 충분한 박동성을 보여주었다. 점프속도 30, 40, 50 BPM에서 EEP와 평균동맥압의 변화율은 병렬군의 경우 $13.0\pm.7\%,\;12.0\pm1.9\%,\;and\;7.6\pm0.9\%$였으며, 직렬군의 경우 $22.5\pm2.4\%,\;23.2\pm1.9\%,\;and\;21.8\pm1.4\%$였다. 점프박출량의 경우는 점프속도 40, 50 BPM에서 병렬군의 경우 $3.1\pm0.2\;and\;3.7\pm0.2L/min$였으며, 직렬군의 경우 $2.2\pm0.1\;and\;2.5\pm0.1\;L/min$였다(p<0.05). 결론: 혈류 저항이 낮은 gravity-flow 막형산화기를 사용하여 T-PLS 구동점프를 병렬회로로 배치할 경우 효과적인 박동성은 유지하면서, 기존의 막형산화기를 이용한 직렬회로 구조에 비해 점프박출량을 증가시켰다.