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用99m锝硫胶体进行单光子发射计算机断层扫描成像时肝脏和脾脏体积测定的最佳处理方案。

Optimum processing protocols for volume determination of the liver and spleen from SPECT imaging with technetium-99m sulfur colloid.

作者信息

Mut F, Glickman S, Marciano D, Hawkins R A

机构信息

Department of Radiological Sciences, UCLA School of Medicine 90024.

出版信息

J Nucl Med. 1988 Nov;29(11):1768-75.

PMID:3263478
Abstract

A study of the effects of processing parameters on the determination of liver and spleen volume from SPECT data was performed. A method for volume determination using a threshold algorithm was calibrated against phantoms and applied to 60 patient studies. Good reproducibility was found using different projections and computing the volume on separate days. Variations of the measured volumes with the threshold value, reconstruction filter cutoff frequency and attenuation correction were investigated. Reconstruction parameters producing best image quality were also determined. A threshold of 25% of the maximum value in the organ was determined from phantom studies. Changes of 1% around this value yielded changes of 2-3% in the computed volume. No significant change was noted as cutoff frequencies varied between 0.4 and 0.85 of Nyquist (0.031 to 0.066 cycles/cm) for a third order Butterworth filter. Attenuation correction produced a decrease of 9% and 6% in liver and spleen measured volume respectively. Best image quality was obtained with 0.4 Nyquist (0.031 cycles/cm) cutoff frequency for third order Butterworth filter and attenuation correction. It is concluded that optimal parameters must be determined for any processing protocol, and must then be adhered to in future applications to insure clinical accuracy, especially those parameters demonstrating the most quantitative and qualitative sensitivity.

摘要

开展了一项关于处理参数对从单光子发射计算机断层扫描(SPECT)数据测定肝脏和脾脏体积影响的研究。一种使用阈值算法进行体积测定的方法针对体模进行了校准,并应用于60例患者研究。通过使用不同投影并在不同日期计算体积,发现具有良好的可重复性。研究了测量体积随阈值、重建滤波器截止频率和衰减校正的变化情况。还确定了产生最佳图像质量的重建参数。通过体模研究确定器官中最大值的25%作为阈值。围绕该值1%的变化会导致计算体积有2 - 3%的变化。对于三阶巴特沃斯滤波器,当截止频率在奈奎斯特频率的0.4至0.85(0.031至0.066周期/厘米)之间变化时,未观察到显著变化。衰减校正分别使肝脏和脾脏的测量体积减少了9%和6%。对于三阶巴特沃斯滤波器和衰减校正,在0.4奈奎斯特(0.031周期/厘米)截止频率下可获得最佳图像质量。得出的结论是,必须为任何处理方案确定最佳参数,并且在未来应用中必须坚持这些参数以确保临床准确性,尤其是那些显示出最具定量和定性敏感性的参数。

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