Chien Hsien Kitty Yang, Shane W Bateman, Xiu Ting Yiew, Allan R Willms
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Ultrasonographic images were obtained by 2 different observers at 18 different time points on 10 healthy, purpose-bred male cats under general anesthesia in sternal recumbency. Actual urine volumes were measured <i>via</i> urinary catheterization and compared to UBV estimations using Lin's concordance correlation coefficient and Bland-Altman analysis. Estimation of UBV using the 3D computational bladder circumference tracing method showed moderate strength-of-agreement with actual bladder volume (ρ<sub>c</sub> = 0.94 to 0.95) with clinically insignificant bias (3D computation-derived minus actual volume) of -1.96 mL (IQR = -3.89 to -0.57 mL, <i>P</i> < 0.001) and -2.42 mL (IQR = -4.64 to -0.66 mL, <i>P</i> < 0.001) for the 2 observers, respectively. Our study demonstrated acceptable accuracy of 3D computation method for UBV estimation in healthy cats. 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引用次数: 0
摘要
尿量测量对于住院猫及其潜在疾病的管理至关重要。超声引导下膀胱体积(UBV)的估算是一种无创的替代测量方法,可以提供重要的临床信息。本研究的目的是验证一种新的3D计算方法的准确性,该方法使用二维点护理超声图像来估计超紫外线。膀胱体积的估计是通过在三维空间中排列成对的纵向和横向超声图像(n = 359)的膀胱周长跟踪坐标进行数学算法计算。在18个不同的时间点,由2个不同的观察者对10只健康的专用雄性猫在胸骨平躺下进行全身麻醉,获得超声图像。通过导尿测量实际尿量,并使用Lin的一致性相关系数和Bland-Altman分析与uv估计进行比较。使用三维计算膀胱周长追踪方法估计UBV与实际膀胱体积(ρc = 0.94 ~ 0.95)的一致性中等,2名观察者的临床不显著偏差(3D计算减去实际体积)分别为-1.96 mL (IQR = -3.89 ~ -0.57 mL, P < 0.001)和-2.42 mL (IQR = -4.64 ~ -0.66 mL, P < 0.001)。我们的研究表明,三维计算方法对健康猫的超紫外线估计具有可接受的准确性。这种方法可以提供一个桥接的选择,直到三维超声变得更容易获得。
Validation of 3-dimensional mathematical computation of feline bladder volume using orthogonal ultrasonographic bladder images.
Urine output measurement is critical for the management of hospitalized cats and their underlying conditions. Ultrasound-guided estimation of urinary bladder volume (UBV) is a non-invasive surrogate measurement that can provide important clinical information. The purpose of this study was to validate the accuracy of a novel 3D computation method in estimating UBV using 2D point-of-care ultrasonographic images. Bladder volume estimation was performed using coordinates from bladder circumference tracings on paired longitudinal and transverse ultrasonographic images (n = 359) aligned in 3D space for mathematical algorithmic computation. Ultrasonographic images were obtained by 2 different observers at 18 different time points on 10 healthy, purpose-bred male cats under general anesthesia in sternal recumbency. Actual urine volumes were measured via urinary catheterization and compared to UBV estimations using Lin's concordance correlation coefficient and Bland-Altman analysis. Estimation of UBV using the 3D computational bladder circumference tracing method showed moderate strength-of-agreement with actual bladder volume (ρc = 0.94 to 0.95) with clinically insignificant bias (3D computation-derived minus actual volume) of -1.96 mL (IQR = -3.89 to -0.57 mL, P < 0.001) and -2.42 mL (IQR = -4.64 to -0.66 mL, P < 0.001) for the 2 observers, respectively. Our study demonstrated acceptable accuracy of 3D computation method for UBV estimation in healthy cats. This method may provide a bridging alternative until 3D ultrasound becomes more readily accessible.
期刊介绍:
The Canadian Journal of Veterinary Research, published by the Canadian Veterinary Medical Association, is Canada''s only veterinary research publication. This quarterly peer-reviewed online-only journal has earned a wide international readership through the publishing of high quality scientific papers in the field of veterinary medicine. The Journal publishes the results of original research in veterinary and comparative medicine.