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使用点响应体模测定螺旋CT切片敏感度分布

Determination of spiral CT slice sensitivity profiles using a point response phantom.

作者信息

Davros W J, Herts B R, Walmsley J J, Obuchowski N A

机构信息

Cleveland Clinic Foundation, Division of Radiology Hb-6, OH 44195, USA.

出版信息

J Comput Assist Tomogr. 1995 Sep-Oct;19(5):838-43. doi: 10.1097/00004728-199509000-00031.

Abstract

OBJECTIVE

This study was done to compare the slice sensitivity profiles (SSP) for combinations of collimation, pitch, and table speed for spiral CT using a point response phantom. The goal was to determine the optimal combination of parameters to reduce partial volume averaging without compromising z-axis coverage.

MATERIALS AND METHODS

A copper ball bearing measuring 0.4 mm was embedded in a closed-cell air-foam background to create a point response input phantom. The phantom was scanned at pitches from 0.1 to 2.0 for collimations of 5, 8, and 10 mm. The full width half maximums (FWHMs) and full width tenth maximums (FWTMs) were estimated from SSP curves generated by plotting the maximum pixel value in HU for each reconstructed image against table position. FWHMs and FWTMs were compared separately for constant collimation and increasing table speed and for constant table speed and decreasing collimation using either a two-tailed z-test or chi-square test.

RESULTS

Differences between FWHMs and between FWTMs for comparisons made between different collimations at constant table speeds of 8 and 10 mm/s were significantly different (p < or = 0.0001). Differences between FWHMs and between FWTMs showed a linear trend, increasing with increasing pitch for constant collimation (p < or = 0.0013).

CONCLUSION

Scanning at narrower collimation but higher pitch provides a narrower SSP when scanning at equivalent table speeds without compromising z-axis coverage.

摘要

目的

本研究旨在使用点响应体模比较螺旋CT准直、螺距和床速组合的层厚灵敏度曲线(SSP)。目标是确定在不影响z轴覆盖范围的情况下减少部分容积平均效应的最佳参数组合。

材料与方法

将一个直径0.4mm的铜滚珠嵌入闭孔泡沫背景中,制成点响应输入体模。对该体模进行扫描,准直分别为5mm、8mm和10mm,螺距范围从0.1至2.0。通过绘制每个重建图像在HU中的最大像素值相对于床位置的曲线生成SSP曲线,估计半高宽(FWHM)和十分之一高宽(FWTM)。对于恒定准直和增加床速以及恒定床速和减小准直的情况,分别使用双尾z检验或卡方检验比较FWHM和FWTM。

结果

在床速为8mm/s和10mm/s恒定的情况下,不同准直之间比较的FWHM和FWTM差异显著(p≤0.0001)。对于恒定准直,FWHM和FWTM之间的差异呈线性趋势,随螺距增加而增大(p≤0.0013)。

结论

在等效床速扫描时,采用更窄准直但更高螺距进行扫描可在不影响z轴覆盖范围的情况下提供更窄的SSP。

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