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A tissue compression/transillumination approach to noninvasive hemoglobinometry.

机译:一种用于非侵入性血红蛋白测定的组织压缩/透照法。

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摘要

The measurement of blood hemoglobin concentration is among the most common clinical laboratory assessments made. Current methods for measuring hemoglobin concentration require direct blood access. Numerous disadvantages associated with collecting blood, including patient pain and risk of infection, make a noninvasive hemoglobinometry method desirable. This dissertation evaluates tissue compression/transillumination (TCTI) hemoglobinometry, a noninvasive opto-mechanical technique in which vascularized tissue is compressed to diminish tissue blood volume while measuring the change in transmitted near-infrared (NIR) light intensity.; The feasibility of TCTI hemoglobinometry was established using Monte Carlo computer simulations of near-infrared light transmission through a tissue model comprised of blood and nonblood layers. The computer simulations indicated that the technique was feasible, although the measurement range for the method was limited due to the nonlinear relationship between the optical density of blood and the blood hematocrit (directly related to hemoglobin concentration).; A microprocessor-based opto-mechanical device was developed to collect TCTI data. An in vitro investigation was conducted on a physical model of vascularized tissue consisting of a thin layer of canine blood positioned between two layers of nonblood tissue phantom material (Intralipid and India ink). The blood layer hemoglobin concentration was varied between 0 and 28 g/dl. In vivo canine studies were conducted using the tongue as the tissue bed for analysis. Hemoglobin concentration in each animal was incrementally decreased by normovolemic hemodilution from 17.2 g/dl (s.d. 1.3) to 5.3 g/dl (s.d. 2.2). TCTI data and reference hemoglobin measurements were collected at each hemoglobin level.; Results from the in vitro and in vivo experiments generally agreed with computer simulation results, and exhibited the predicted nonlinear relationship between hemoglobin concentration and optical transmission data. For data with hemoglobin concentrations up to 15 g/dl, 80% limits of agreement between the TCTI hemoglobinometer and reference measurements were +/−0.83 g/dl for the in vitro experiments, and ranged from +/−2.03 to +/−3.06 g/dl for the in vivo experiments. These results indicate that TCTI technique is capable of noninvasive hemoglobin determination, although its precision is not yet adequate for some clinical applications. Venous occlusion and impedance plethysmography offer potential alternatives to tissue compression and NIR transillumination.
机译:血液中血红蛋白浓度的测量是最常见的临床实验室评估之一。当前测量血红蛋白浓度的方法需要直接进入血液。与收集血液有关的许多缺点,包括患者的痛苦和感染的危险,使得无创血红蛋白测定法成为理想的方法。本文对组织压缩/透照度(TCTI)血红蛋白法进行了评估,这是一种非侵入性的光机械技术,在该技术中,压缩血管化组织以减少组织血容量,同时测量透射近红外(NIR)光强度的变化。 TCTI血红蛋白测定法的可行性是使用蒙特卡洛计算机模拟近红外光通过包含血液和非血液层的组织模型的透射率确定的。计算机模拟表明该技术是可行的,尽管该方法的测量范围由于血液的光密度与血细胞比容之间的非线性关系(与血红蛋白浓度直接相关)而受到限制。开发了一种基于微处理器的光机械设备来收集TCTI数据。一项体外研究是对血管化组织的物理模型进行的,该模型由位于两层非血液组织体模材料(脂内和印度墨水)之间的一层薄薄的犬血组成。血层血红蛋白浓度在0至28 g / dl之间变化。使用舌头作为分析的组织床进行了体内犬科研究。降血脂血液稀释法使每只动物中的血红蛋白浓度从17.2 g / dl(s.d. 1.3)逐渐降低至5.3 g / dl(s.d. 2.2)。在每个血红蛋白水平收集TCTI数据和参考血红蛋白测量值。 体外体内实验的结果与计算机模拟结果基本吻合,并显示出预测的血红蛋白浓度与光透射数据之间的非线性关系。对于血红蛋白浓度最高为15 g / dl的数据,体外实验中TCTI血红蛋白仪与参考测量值之间的一致性的80%为+/- 0.83 g / dl,范围为+ /对于体内实验,为-2.03至+/- 3.06 g / dl。这些结果表明,TCTI技术能够确定非侵入性血红蛋白,尽管它的精度对于某些临床应用而言还不够。静脉阻塞和阻抗体积描记法为组织压缩和近红外透射检查提供了潜在的替代方法。

著录项

  • 作者

    Hendee, Shonn Phillip.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Engineering Biomedical.; Biophysics Medical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;生物物理学;
  • 关键词

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