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倾斜下巴以改善图像质量或降低锥形束 CT 的剂量。

Tilting the jaw to improve the image quality or to reduce the dose in cone-beam computed tomography.

机构信息

School of Dental Medicine, Biomaterials Science Center, University of Basel, Switzerland.

出版信息

Eur J Radiol. 2011 Dec;80(3):e389-93. doi: 10.1016/j.ejrad.2010.10.001. Epub 2010 Oct 28.

Abstract

OBJECTIVE

The image quality in cone-beam computed tomography (CBCT) should be improved tilting the mandible that contains two dental titanium implants, within the relevant range of motion.

MATERIALS AND METHODS

Using the mandible of a five-month-old pig, CBCT was performed varying the accelerating voltage, beam current, the starting rotation angle of the mandible in the source-detector plane and the tilt angles of the jaw with respect to the source-detector plane. The different datasets were automatically registered with respect to micro CT data to extract the common volume and the deviance to the pre-defined standard that characterizes the image quality.

RESULTS

The variations of the accelerating voltage, beam current and the rotation within the source-detection plane provided the expected quantitative behavior indicating the appropriate choice of the imaging quality factor. The tilting of the porcine mandible by about 14° improves the image quality by almost a factor of two.

CONCLUSIONS

The tilting of the mandible with two dental implants can be used to significantly reduce the artifacts of the strongly X-ray absorbing materials in the CBCT images. The comparison of 14° jaw tilting with respect to the currently recommended arrangement in plane with the teeth demonstrates that the applied exposure time and the related dose can be reduced by a factor of four without decreasing the image quality.

摘要

目的

在相关运动范围内,倾斜包含两个牙科钛植入物的下颌骨,以提高锥形束 CT(CBCT)的图像质量。

材料与方法

使用五个月大猪的下颌骨,在源探测器平面上改变下颌骨的加速电压、束流、起始旋转角度和下颌骨相对于源探测器平面的倾斜角度,进行 CBCT 检查。不同的数据集自动与微 CT 数据进行配准,以提取共同体积和偏离预定义标准的情况,从而反映图像质量。

结果

加速电压、束流和源检测平面内旋转的变化提供了预期的定量行为,表明选择适当的成像质量因素。将猪下颌骨倾斜约 14°可使图像质量提高近两倍。

结论

用两个牙科植入物倾斜下颌骨可显著减少 CBCT 图像中强 X 射线吸收材料的伪影。与目前在牙齿平面内推荐的方案相比,14°的颌骨倾斜比较表明,在不降低图像质量的情况下,可将应用的曝光时间和相关剂量减少到四分之一。

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