首页> 美国卫生研究院文献>Canadian Journal of Comparative Medicine >Feasibility of a novel 3-dimensional mathematical algorithmic computation of feline bladder volumes using point-of-care longitudinal and transverse cysto-colic ultrasonographic images
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Feasibility of a novel 3-dimensional mathematical algorithmic computation of feline bladder volumes using point-of-care longitudinal and transverse cysto-colic ultrasonographic images

机译:使用即时点纵向和横向膀胱螺旋超声图像对猫膀胱体积进行新颖的三维数学算法计算的可行性

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摘要

Conventional geometric formulas for estimating bladder volume assume that bladders have a perfectly uniform spheroid geometry. Bladders are often irregularly shaped, however, especially when under-filled or distorted by a full colon, which results in inaccurate ultrasonographic linear measurements and volume estimation. This pilot study investigates the feasibility, inter-observer reliability (reproducibility), robustness, and agreement of a novel 3-dimensional bladder volume computation method using bladder circumference tracing compared to a published feline linear bladder dimension formula. Paired sets of longitudinal and transverse B-mode bladder ultrasound images ( = 228) were acquired by 2 observers with different point-of-care ultrasonography skills using 10 healthy purpose-bred cats positioned in dorsal recumbency at various time points. Using strict criteria for Lin’s concordance correlation coefficient, inter-observer agreements ( = 223) were found to be substantial (0.95 to 0.99) with statistically significant but clinically non-significant median differences (biases) of 0.96 mL [interquartile range (IQR): 0.16 to 2.46, < 0.001] and 0.23 mL (IQR: 0.88 to 1.97, = 0.006) when bladder circumference tracings were made on similar sets of ultrasound images respectively. Inter-observer agreements improved from substantial (0.95 to 0.99) to almost perfect (> 0.99) strength-of-agreement as the quality of ultrasound images improved. The bladder circumference tracing method showed moderate (0.90 to 0.95) strength-of-agreement with the recently published feline linear bladder dimension formula, with significant additive median differences (biases) of −6.76 mL (IQR: −9.06 to −3.88, < 0.001) and −6.44 mL (IQR: −11.41 to −3.81, < 0.001) recorded by each observer ( = 111, = 83), respectively. Data obtained from orthogonal ultrasonographic bladder circumference tracings justify further investigation into use of this method for estimating bladder volume in cats.
机译:用于估计膀胱体积的常规几何公式假定膀胱具有完全均匀的球体几何形状。但是,膀胱的形状通常不规则,特别是当填充不足或整个结肠扭曲时,会导致超声线性测量和体积估计不准确。这项先导研究调查了可行性,观察者间的可靠性(可重复性),鲁棒性和与膀胱猫公开的线性膀胱尺寸公式相比,采用膀胱周围追踪的新型三维膀胱体积计算方法的一致性。两名成对的纵向和横向B型膀胱超声图像(= 228)是由2位具有不同即时医疗超声技能的观察者使用位于各个时间点背侧卧位的10只健康专用猫制成的。使用林的一致性相关系数的严格标准,观察者之间的共识(= 223)被认为是重要的(0.95至0.99),具有统计学上的显着差异,但临床上的中位差异(偏倚)为0.96 mL [四分位间距(IQR):当分别在相似的超声图像集上进行膀胱周围描迹时,分别为0.16至2.46,<0.001]和0.23 mL(IQR:0.88至1.97,= 0.006)。随着超声图像质量的提高,观察者之间的协议从实质性(0.95增至0.99)提高到近乎完美(> 0.99)。膀胱周围追踪方法与最近发表的猫线性膀胱尺寸公式显示出一致的强度(0.90至0.95),且相加的中值差(偏差)为-6.76 mL(IQR:-9.06至-3.88,<0.001) )和-6.44 mL(IQR:-11.41至-3.81,<0.001)分别由每个观察者(= 111,= 83)记录。从正交超声检查膀胱周围的轨迹获得的数据证明了进一步研究使用这种方法来估计猫的膀胱体积的合理性。

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