首页> 外文期刊>British Journal of Radiology >Accurate tissue area measurements with considerably reduced radiation dose achieved by patient-specific CT scan parameters.
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Accurate tissue area measurements with considerably reduced radiation dose achieved by patient-specific CT scan parameters.

机译:通过特定于患者的CT扫描参数可实现精确的组织面积测量,并显着降低辐射剂量。

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A low-dose technique was compared with a standard diagnostic technique for measuring areas of adipose and muscle tissue and CT numbers for muscles in a body composition application. The low-dose technique was intended to keep the expected deviation in the measured area of adipose and muscle tissue to <1% of the total tissue area. The largest diameter of the patient determined the parameters for the low-dose technique. 17 patients - chosen to cover a wide range of diameters (31-47 cm) for both abdomen and thighs - were examined using both techniques. Tissue areas were compared, as were CT numbers for muscle tissue. Image noise was quantified by standard deviation measurements. The area deviation was <1%, except in the smallest subjects, in whom it was <2%. The integral radiation dose of the low-dose technique was reduced to 2-3% for diameters of 31-35 cm and to 7.5-50% for diameters of 36-47 cm as compared with the integral dose by the standard diagnostic technique. The CT numbers of muscle tissue remained unchanged with reduced radiation dose. Image noise was on average 20.9 HU (Hounsfield units) for subjects with diameters of 31-35 cm and 11.2 HU for subjects with diameters in the range of 36-47 cm. In conclusion, for body composition studies with CT, scan protocols can be adjusted so that the integral dose is lowered to 2-60% of the standard diagnostic technique at our centre without adversely altering area measurements of adipose and muscle tissue and without altering CT numbers of muscle tissue.
机译:将低剂量技术与标准诊断技术进行了比较,该技术用于在身体成分应用中测量脂肪和肌肉组织的面积以及肌肉的CT数。低剂量技术旨在将脂肪和肌肉组织的测量面积中的预期偏差保持在组织总面积的<1%以内。患者的最大直径决定了低剂量技术的参数。使用这两种技术检查了17名患者-选择腹部和大腿的直径范围广泛(31-47 cm)-对其进行了检查。比较了组织面积和肌肉组织的CT数。通过标准偏差测量来量化图像噪声。面积偏差<1%,最小的受试者除外,<2%。与标准诊断技术的总剂量相比,低剂量技术的总辐射剂量对于31-35 cm的直径降低到2-3%,对于36-47 cm的直径降低到7.5-50%。减少辐射剂量后,肌肉组织的CT数保持不变。对于直径为31-35 cm的受试者,图像噪声平均为20.9 HU(霍恩斯单位),对于直径为36-47 cm的受试者,图像噪声平均为11.2 HU。总之,对于使用CT进行的人体成分研究,可以调整扫描方案,以使积分剂量降低到我们中心标准诊断技术的2-60%,而不会不利地改变脂肪和肌肉组织的面积测量,也不会更改CT数肌肉组织。

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