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使用自制CT体模对用于虚拟模拟的专用计算机断层扫描扫描仪进行性能评估。

Performance evaluation of a dedicated computed tomography scanner used for virtual simulation using in-house fabricated CT phantoms.

作者信息

Sharma D S, Sharma S D, Sanu K K, Saju S, Deshpande D D, Kannan S

机构信息

Department of Medical Physics, Tata Memorial Hospital, Parel, Mumbai, India.

出版信息

J Med Phys. 2006 Jan;31(1):28-35. doi: 10.4103/0971-6203.25667.

Abstract

Comprehensive tests on single slice CT scanner was carried out using in-house fabricated phantoms/test tools following AAPM recommended methods to independently validate the auto-performance test (APT) results. Test results of all the electromechanical parameters were found within the specified limits. Radiation and sensitivity profile widths were within ± 0.05 cm of the set slice thickness. Effective energy corresponding to nominal kVp of 80, 110 and 130 were 49.99, 55.08 and 59.48 keV, respectively. Percentage noise obtained by APT was 1.32% while the independently measured value was 0.38%. Observed contrast resolutions by independent method at 0.78% and 12% contrast difference were 4 mm and 1.25 mm (= 4 lp/cm) respectively. However, high contrast resolution (limiting spatial resolution) by APT at 50, 10 and 2% MTF levels were 9, 12.5 and 14.1 lp/cm respectively. Difference in calculated and measured CT numbers of water, air, teflon, acrylic, polystyrene and polypropylene were in the range of 0 to 24 HU, while this difference was 46 and 94 HU in case of nylon and bakelite respectively. The contrast scale determined using CT linearity phantom was 1.998×10(-4) cm(-1)/CT number. CT dose index (CTDI) and weighted CTDI (CTDI(w)) measured at different kVp for standard head and body phantoms were smaller than manufacturer-specified and system-calculated values and were found within the manufacturer-specified limit of ± 20%. Measured CTDIs on surface (head: 3.6 cGy and body: 2.6 cGy) and at the center (3.3 cGy, head; and 1.2 cGy, body) were comparable to reported values of other similar CT scanners and were also within the industry-quoted CTDI range. Comprehensive QA and independent validation of APT results are necessary to obtain baseline data for CT virtual simulation.

摘要

按照美国医学物理师协会(AAPM)推荐的方法,使用自制的体模/测试工具对单层CT扫描仪进行了全面测试,以独立验证自动性能测试(APT)结果。发现所有机电参数的测试结果均在规定范围内。辐射和灵敏度剖面宽度在设定层厚的±0.05厘米范围内。对应于80、110和130标称千伏峰值(kVp)的有效能量分别为49.99、55.08和59.48千电子伏特(keV)。APT获得的百分比噪声为1.32%,而独立测量值为0.38%。通过独立方法在对比度差异为0.78%和12%时观察到的对比度分辨率分别为4毫米和1.25毫米(=4线对/厘米)。然而,APT在50%、10%和2%调制传递函数(MTF)水平下的高对比度分辨率(极限空间分辨率)分别为9、12.5和14.1线对/厘米。水、空气、聚四氟乙烯、丙烯酸、聚苯乙烯和聚丙烯的计算CT值与测量CT值的差异在0至24亨氏单位(HU)范围内,而尼龙和酚醛塑料的这一差异分别为46和94亨氏单位。使用CT线性体模确定的对比度标度为1.998×10(-4)厘米(-1)/CT值。在不同千伏峰值下对标准头部和身体体模测量的CT剂量指数(CTDI)和加权CTDI(CTDI(w))小于制造商规定值和系统计算值,且在制造商规定的±20%范围内。表面(头部:3.6厘戈瑞和身体:2.6厘戈瑞)和中心(头部:3.3厘戈瑞;身体:1.2厘戈瑞)的测量CTDI与其他类似CT扫描仪的报告值相当,也在行业引用的CTDI范围内。全面的质量保证(QA)和APT结果的独立验证对于获得CT虚拟模拟的基线数据是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cd5/3003891/ec64c7ecb839/JMP-31-28-g001.jpg

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