再现图处理技术的文章综述

Pradnya N. Gokhale, B. R. Patil
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引用次数: 0

摘要

肾造影术是在注射放射性示踪剂(如99mtc - dtpa、99mTc-MAG3)后测量肾脏活动时所检测到的时间活动过程。肾脏扫描有助于诊断肾脏的引流功能是否正常或异常。该肾示踪剂的数据通过数学模型和数据处理技术如Rutland-Patlak和反卷积方法进行处理,生成肾图。本研究旨在回顾先前发表的研究文章,包括各种方法、应用和图像处理算法,以及用于处理肾脏放射性示踪剂传输时间数据的技术。本文综述了现有重图数据处理技术的各种类型、优点、差距和可能的范围。通过对142篇文章的分析处理发现,大多数文章与肾脏扫描的处理方法有关,这些方法仅限于肾脏患者的相关疾病类别,缺乏对实质放射性示踪剂从肾皮质到肾盂路径的传递时间的可量化测量和研究,而有限的文章纯粹与定性检测阻塞程度的应用算法有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of Articles Representing Renogram Processing Techniques
The renography represents time activity process detected when one measures the activity in the kidneys after the dose injection of radiolabeled radio tracer(e.g.99mTc-DTPA,99mTc-MAG3). Interpretation of this renal scan helps to diagnose whether the drainage function from the kidney is normal or abnormal. This renal tracer’s data is processed by mathematical models and data processing techniques like Rutland-Patlak and deconvolution methods to produce renograph. This research study is carried out to review previously published research articles incorporating various methods, their applications and image processing algorithms as well as techniques that were applied to process renal radiotracer’s transit time data. This review includes various types, advantages, gaps and possible scopes for existing renogram data processing techniques. After analysis process of 142 articles it is found that, maximum of the articles are associated with renal scan’s processing methods that are limited to renal patient’s related disease categories and having absence of quantifiable measurement and study of parenchymal radio tracer’s transit time counted from renal cortex to renal pelvis path while limited numbers of articles are purely related to applied algorithms for detecting obstruction level qualitatively.
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