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CystAnalyser: A new software tool for the automatic detection and quantification of cysts in Polycystic Kidney and Liver Disease, and other cystic disorders

机译:膀胱瘤:一种用于自动检测和定量多囊肾和肝病中囊肿的新软件工具,以及其他囊性疾病

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The Polycystic Kidney Disease (PKD) is characterized by progressive renal cyst development and other extrarenal manifestation including Polycystic Liver Disease (PLD). Phenotypical characterization of animal models mimicking human diseases are commonly used, in order to, study new molecular mechanisms and identify new therapeutic approaches. The main biomarker of disease progression is total volume of kidney and liver in both human and mouse, which correlates with organ function. For this reason, the estimation of the number and area of the tissue occupied by cysts, is critical for the understanding of physiological mechanisms underlying the disease. In this regard, cystic index is a robust parameter commonly used to quantify the severity of the disease. To date, the vast majority of biomedical researchers use ImageJ as a software tool to estimate the cystic index by quantifying the cystic areas of histological images after thresholding. This tool has imitations of being inaccurate, largely due to incorrectly identifying non-cystic regions. We have developed a new software, named CystAnalyser (register by Universidade de Santiago de Compostela– USC, and Fundacio′n Investigacio′n Sanitaria de Santiago—FIDIS), that combines automatic image processing with a graphical user friendly interface that allows investigators to oversee and easily correct the image processing before quantification. CystAnalyser was able to generate a cystic profile including cystic index, number of cysts and cyst size. In order to test the CystAnalyser software, 795 cystic kidney, and liver histological images were analyzed. Using CystAnalyser there were no differences calculating cystic index automatically versus user input, except in specific circumstances where it was necessary for the user to distinguish between mildly cystic from non-cystic regions. The sensitivity and specificity of the number of cysts detected by the automatic quantification depends on the type of organand cystic severity, with values 76.84–78.59% and 76.96–89.66% for the kidney and 87.29–93.80% and 63.42–86.07% for the liver. CystAnalyser, in addition, provides a new tool for estimating the number of cysts and a more specific measure of the cystic index than ImageJ. This study proposes CystAnalyser is a new robust and freely downloadable software tool for analyzing the severity of disease by quantifying histological images of cystic organs for routine biomedical research. CystAnalyser can be downloaded from https://citius.usc.es/transferencia/software/cystanalyser (for Windows and Linux) for research purposes.
机译:多囊肾(PKD)的特点是渐进的肾囊肿发展等肾外表现,包括多囊肝(PLD)。动物模型模拟人类疾病的表型特征常用,为了,研究新的分子机制,并确定新的治疗方法。疾病进展的主要生物标记物是在人类和小鼠的肾脏和肝脏的总体积,其与器官功能相关。出于这个原因,通过囊肿占据的组织的数量和面积的估算,是用于的疾病潜在的生理机制的认识至关重要。在这点上,囊性指数是常用来量化疾病的严重性鲁棒参数。迄今为止,绝大多数生物医学研究人员的使用ImageJ的作为一个软件工具,通过阈值后量化组织学图像的囊性区估计囊肿指数。该工具具有不准确,这主要是由于不正确地识别非囊性区域的仿制品。我们已经开发出一种新的软件,名为CystAnalyser(由UNIVERSIDADE圣地亚哥德Compostela- USC和Fundacio'n Investigacio'n SANITARIA圣地亚哥 - FIDIS注册),具有图形用户界面友好,允许调查人员监督相结合的自动图像处理和量化之前容易地校正图像处理。 CystAnalyser能够产生囊性特征,包括囊肿指数,囊肿的数量和囊肿的大小。为了测试CystAnalyser软件,795囊性肾和肝组织学图像进行分析。使用CystAnalyser没有差异自动地计算囊肿指数相对于用户输入,除了在特定情况下,其中用户从非囊性区域轻度囊性区分它是必要的。由自动定量检测的胞囊数目的灵敏度和特异性取决于organand囊性严重性的类型,其值76.84-78.59%和肾脏和87.29-93.80%和63.42-86.07%的肝76.96-89.66% 。 CystAnalyser,此外,提供了用于估计囊肿的数量和比ImageJ的囊性指数的更具体的度量的新工具。本研究提出CystAnalyser是通过量化囊状器官的病理图像进行常规的生物医学研究分析疾病的严重程度了新的强大和自由下载的软件工具。 CystAnalyser可以下载从https://citius.usc.es/transferencia/software/cystanalyser(适用于Windows和Linux)用于研究目的。

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