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Whole-Body Imaging of Whole-Organ, Subresolution, Basic Functional Unit (BFU) Perfusion Characteristics

机译:全器官,亚分辨率,基本功能单位(BFU)灌注特征的全身成像

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A BFU, is an organ's smallest assembly of diverse cells that functions like the organ, such as the liver's hepatic lobules. There are approximately 10~7 BFUs in a human organ. These 100-200um structures are perfused by capillaries fed by a terminal arteriole (<15μm diameter). BFU sizes, function and number per organ vary with disease, either by loss of BFUs and/or their decrease in function. The BFU is the upper limit of a spherical assembly of cells, immersed in a suitably nutrient medium, which can survive without its own blood supply. However, each BFU has its own blood supply to support the extra energy and/or solutes needed for providing its physiological function (e.g., contraction or secretion).A BFU function is best evaluated by its micro-perfusion, which can be readily evaluated with whole-body CT. Resolution of individual BFUs within in-situ organs, using clinical imaging devices, would require high radiation doses and/or the intolerably long scan-durations needed for suitable signal-to-noise image-data. However, it is possible to obtain a statistical description of the BFU number, size and function from whole-body CT by way of a model. In this study we demonstrate this capability by using the distribution of myocardial terminal arteriolar perfusion territories by way of a nested, multiple, regions-of-interest analysis of the heart wall imaged during transient opacification of its blood supply.
机译:BFU是器官中由各种细胞组成的最小集合,其功能类似于器官,例如肝脏的肝小叶。人体器官中大约有10〜7个BFU。这些100-200um的结构由末端小动脉(直径<15μm)喂养的毛细血管灌注。 BFU的大小,功能和每个器官的数量随疾病的变化而变化,可能是BFU丢失和/或功能降低。 BFU是细胞球形组装体的上限,浸没在适当的营养培养基中,这种培养基可以在没有自身血液供应的情况下存活。但是,每种BFU都有自己的血液供应,以支持提供其生理功能(例如,收缩或分泌)所需的额外能量和/或溶质。BFU功能最好通过其微灌注来评估,这可以通过以下方式轻松评估:全身CT。使用临床成像设备分辨单个BFU在原位器官内,将需要高辐射剂量和/或合适的信噪比图像数据所需的难以忍受的长扫描时间。但是,可以通过模型从全身CT获得BFU数量,大小和功能的统计描述。在这项研究中,我们通过对心肌壁的血液供应进行短暂的乳浊成像,对嵌套的多个感兴趣区域进行分析,利用心肌终末小动脉灌注区域的分布来证明这种能力。

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