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肾脏微循环灌注评价方法的研究进展

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摘要 客观评价肾脏的微循环状态对于认识多种肾脏病的发病机制,了解病情进展,帮助临床治疗决策有着重要的意义。本文就肾脏微循环各种评价方法及其应用概况作一综述。
出处 《国际泌尿系统杂志》 2009年第2期251-254,共4页 International Journal of Urology and Nephrology
基金 安徽省临床医学重大应用技术项目(2005Z042)
关键词 微循环
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参考文献12

  • 1Steinhausen M, Snoei H, Parckh N, et al. Hydronephrosis; A new method to visualize was affems, efferns, and glomerular network. Kldney Int,1983,23(6) :7C4 -806.
  • 2Cryer HM, Unger LS, Carrison RN, et al. Prostaglandins maintain renal macrovascular Blood flow dining hyperdynamic bacteremia. Ciro Shock,1988,26(1):71 -88.
  • 3Links Lerman LO, Rodriguez -Porcel M. Functional assessment of the circulation of the single kidney. Hypertension,2001,38(3 Pt 2) : 625 - 629.
  • 4陶恭明 金惠铭 等.正常兔肾表面微循环的研究[J].中华医学杂志,1984,64(4):222-25.
  • 5赵鸿铭,王乃欣.体外循环状态下家兔肾脏皮质微循环观测方法[J].中国心血管杂志,1997,2(4):274-274. 被引量:1
  • 6Stromski ME, Brady HR, Gullans SR, et al. Application of missingpulse steady state free precession to the study of renal microcirculation. Magnetic Resonance in Medicine, 1991,20 ( 1 ) :66 - 67.
  • 7Links Gorbach AM, Wang H, Dhanani NN, et al. Assessment of critical renal ischemia with real - time infrared imaging. J Surg Res, 2008,149(2) :310 -318.
  • 8Links Kuwa T, Cancio LC, Sondeen JL, et al. Evaluation of renal cortical perfusion by noninvasive power Doppler ultrasound during vascular occlusion and reperfusion. J Trauma, 2004,56 ( 3 ) : 618 - 624.
  • 9Links Kraus T, Klar E, Osswald BR, et al. Continuous measurement of porcine renal cortex microcirculatiou with enhanced thermal diffusion technology. J Surg Res,1996,61 (2) :531 -536.
  • 10Nilsson A. Contrast - enhanced ultrasound of the kidneys. Eur Radiol,2004.14( Suppl 8 ) :104 -109.

二级参考文献18

  • 1孙建男,么刚,李立军,郭启勇.肾脏CT灌注成像[J].中国医学影像技术,2004,20(8):1300-1302. 被引量:13
  • 2周剑,高培毅.动态CT灌注成像临床应用中的质量控制[J].中国医学影像技术,2003,19(11):1576-1578. 被引量:6
  • 3范光明,郭启勇,解学乾,陈丽英,于涛,侯阳.造影剂量和注射流率对肝脏CT灌注成像影响的实验研究[J].中国医学影像技术,2005,21(1):14-17. 被引量:14
  • 4Miles KA, Hayball MP, Dixon AK. Measurement of human pancreatic perfusion using dynamic computed tomography with perfusion imaging[J]. Br J Radiol, 1995,68(809):471-475.
  • 5Hamberg LM, Hunter GJ, Halpern EF, et al. Quantitative high-resolution measurement of cerebrovascular physiology with slipring CT[J]. AJNR, 1996,17(4):639-650.
  • 6Garcia-Sanz A, Rodriguez-Barbero A, Bentley MD, et al. Three-dimensional microcomputed tomography of renal vasculature in rats[J]. Hypertesion, 1998,31(1 Pt 2):440-444.
  • 7Lerman LO, Flickinger AL, Sheedy PF 2nd, et al. Reproducibility of human kidney perfusion and volume determinations with electron beam computed tomography [J]. Invest Radiol, 1996,31(4):204-210.
  • 8Dawson P, Peters AM. Functional imaging in computed tomography. The use of contrast-enhanced computed tomography for the study of renal function and physiology[J]. Invest Radiol, 1993,28(Suppl 5):S79-S86.
  • 9Blomely MJ, Coulden R, Bufkin C, et al. Contrast bolous dynamic compuded tomography for the measurment of solid organ perfusion[J]. Invest Radiol, 1994,28(5):72-77.
  • 10Purdie TG, Henderson E, Lee TY. Function CT imaging of anglogenesis in rabbit VX2 soft-tissue tumor[J]. Phys Med Biol, 2001,46(12):3161-3175.

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