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Digital image analysis of rhodanine-stained liver biopsy specimens for calculation of hepatic copper concentrations in dogs

机译:罗丹宁染色的肝活检标本的数字图像分析,用于计算犬肝铜浓度

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Objective-To evaluate the accuracy of digitally scanned rhodanine-stained liver biopsy specimens for determination of hepatic copper concentration and compare results with qualitatively assigned histologic copper scores in dogs. Sample-353 liver biopsy specimens from dogs. Procedures-Specimens (n = 139) with quantified copper concentration ranging from 93 to 6,900 mu g/g were allocated to group 1 (< 400 mu g/g [37]), group 2 (401 to 1,000 mu g/g [27]), group 3 (1,001 to 2,000 mu g/g [34]), and group 4 (> 2,001 mu g/g [41]); stained with rhodanine; and digitally scanned and analyzed with a proprietary positive pixel algorithm. Measured versus calculated copper concentrations were compared, and limits of agreement determined. Influence of nodular remodeling, fibrosis, or parenchymal loss on copper concentration was determined by digitally analyzing selected regions in 17 specimens. After method validation, 214 additional liver specimens underwent digital scanning for copper concentration determination. All sections (n = 353) were then independently scored by 2 naive evaluators with a qualitative scoring schema. Agreement between assigned scores and between assigned scores and tissue copper concentrations was determined. Results-Linear regression was used to develop a formula for calculating hepatic copper concentration >= 400 mu g/g from scanned sections. Copper concentrations in unremodeled specimens were significantly higher than in remodeled specimens. Qualitative scores widely overlapped among quantitative copper concentration groups. Conclusions and Clinical Relevance-Calculated copper concentrations determined by means of digital scanning of rhodanine-stained liver sections were highly correlated with measured values and more accurate than qualitative copper scores, which should improve diagnostic usefulness of hepatic copper concentrations and assessments in sequential biopsy specimens.
机译:目的-评估数字扫描罗丹宁染色的肝活检标本测定肝铜浓度的准确性,并将结果与​​定性分配的犬组织学铜评分进行比较。狗的353号肝活检标本。程序-将量化铜浓度范围为93至6,900μg / g的标本(n = 139)分配给第1组(<400μg / g [37]),第2组(401至1,000 mu g / g [27]) ]),第3组(1,001至2,000μg / g [34])和第4组(> 2,001μg / g [41]);罗丹宁染色;然后使用专有的正像素算法进行数字扫描和分析。比较测得的铜浓度与计算出的铜浓度,并确定一致性极限。结节性重塑,纤维化或实质损失对铜浓度的影响通过对17个样本中的选定区域进行数字分析来确定。经过方法验证后,又对214个肝脏样本进行了数字扫描,以确定铜的浓度。然后,由2位具有定性评分方案的幼稚评估员对所有部分(n = 353)进行独立评分。确定分配分数之间以及分配分数与组织铜浓度之间的一致性。结果-线性回归用于建立公式,用于从扫描的切片中计算出≥400μg/ g的肝铜浓度。未改型样品中的铜浓度显着高于改型样品中的铜浓度。定性分数在定量铜浓度组之间广泛重叠。结论和临床相关性通过对若丹宁染色的肝脏切片进行数字扫描确定的铜浓度与测量值高度相关,并且比定性铜评分更准确,这应提高肝铜浓度的诊断价值和对连续活检标本的评估。

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