실험 개에서 Rb-82 심근 Dynamic PET 영상을 이용한 국소 심근 혈류 예측의 기본 모델 연구

A Study on the Estimation of Regional Myocardial Blood Flow in Experimental Canine Model with Coronary Thrombosis using Rb-82 Dynamic Myocardial Positron Emission Tomography

  • 곽철은 (서울대학교병원 핵의학과) ;
  • 이동수 (서울대학교병원 핵의학과) ;
  • 강건욱 (서울대학교병원 핵의학과) ;
  • 황은경 (서울대학교병원 핵의학과) ;
  • 정재민 (서울대학교병원 핵의학과) ;
  • 장기현 (서울대학교병원 진단방사선과) ;
  • 정준기 (서울대학교병원 핵의학과) ;
  • 이명철 (서울대학교병원 핵의학과) ;
  • 서정돈 (서울대학교병원 내과) ;
  • 고창순 (서울대학교병원 핵의학과)
  • Kwark, Cheol-Eun (Department of Nuclear Medicine, Seoul National University Hospital) ;
  • Lee, Dong-Soo (Department of Nuclear Medicine, Seoul National University Hospital) ;
  • Kang, Keon-Wook (Department of Nuclear Medicine, Seoul National University Hospital) ;
  • Hwang, Eun-Kyung (Department of Nuclear Medicine, Seoul National University Hospital) ;
  • Jeong, Jae-Min (Department of Nuclear Medicine, Seoul National University Hospital) ;
  • Chang, Kee-Hyun (Department of Diagnostic Radiology, Seoul National University Hospital) ;
  • Chung, June-Key (Department of Nuclear Medicine, Seoul National University Hospital) ;
  • Lee, Myung-Chul (Department of Nuclear Medicine, Seoul National University Hospital) ;
  • Seo, Joung-Don (Department of Internal Medicine, Seoul National University Hospital) ;
  • Koh, Chang-Soon (Department of Nuclear Medicine, Seoul National University Hospital)
  • 발행 : 1995.03.31

초록

Rb-82 dynamic PET과 이중적분법에 의한 국소 심근 혈류측정 연구를 시행하고자 실험 개를 이용한 심근 혈전증 모델에서 좌심실 입력함수에 의한 정상 및 관류결손 심근에서의 혈류를 측정하였다. 이중적분법이 선형회귀모델에 의한 혈류측정방법에 비하여 실현이 간단하고 심근내 혈류가 선형적인 가정을 배제할 수 있어 더욱 정확한 방법이 될 수 있음을 확인하였다.

This study investigates a simple mathematical model for the quantitative estimation of regional myocardial blood flow in experimental canine coronary artery thrombosis using Rb-82 dynamic myocardial positron emission tomography. The coronary thrombosis was induced using the new catheter technique by narrowing the lumen of coronary vessel gradually, which finally led to partial obstruction of coronary artery. Ten Rb-82 dynamic myocardial PET scans were performed sequentially for each experiment using our 5, 10 and 20 second acquisition protocol, respectively, and three regions of interest were drawn on the transaxial slices, one on left ventricular chamber for input function and the other two on normal and decreased perfusion segments for the flow estimation in those regions. Single compartment model has been applied to the measured sets of regional PET data, and the rate constants of influx to myocardial tissue were calculated for regional myocardial flow estimates with the three parameter fits of raw data by the Levenberg-Marquardt method. The results showed that, (1) single compartment model suggested by Kety-Schmidt could be used for the simple estimation of regional myocardial blood flow, (2) the calculated regional myocardial blood flow estimates were dependent on the selection of input function, which reflected partial volume effect and left ventricular wall motion, and (3) mathematically fitted input and tissue time activity curves were more suitable than the direct application of the measured data in terms of convergence.

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