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大视野锥形束 CT 图像与拼接图像的准确性比较。

Comparison of the accuracy of full head cone beam CT images obtained using a large field of view and stitched images.

机构信息

1 Department of Dentomaxillofacial Radiology, Faculty of Dentistry, Baskent University , Ankara , Turkey.

出版信息

Dentomaxillofac Radiol. 2018 Oct;47(7):20170454. doi: 10.1259/dmfr.20170454. Epub 2018 Jun 19.

Abstract

OBJECTIVE

: The aim of this study was to investigate the accuracy of the new stitching feature of the Morita 3D Accuitomo device by comparing it with the I-CAT device and real measurements.

METHODS

: Eight dry skulls were used in this study. The full scan mode of an I-CAT device and the new stitching feature of the Morita 3D Accuitomo device were used to obtain full head cone beam CT (CBCT) images, and the linear distances between the selected anatomical sites were measured by two observers. The real distances were measured directly on the skulls using digital calipers. Statistical analyses were performed using the intraclass correlation coefficient and Bland-Altman Limits of Agreement.

RESULTS

: High or perfect agreement was detected between the CBCT images and real measurements. The Bland-Altman Limits of Agreement analysis revealed that the stitched coronal and sagittal images of the Morita might differ by >1.54-1.67 or <0.01 mm from the real measurements.

CONCLUSIONS

: The stitched images of the Morita CBCT device showed perfect agreement with both real measurements and the images of an I-CAT full head scan. After the evaluation of the radiation doses received from stitching sectional images, this device may be used to obtain full head images.

摘要

目的

本研究旨在通过与 I-CAT 设备和实际测量值进行比较,来评估 Morita 3D Accuitomo 设备新的拼接功能的准确性。

方法

本研究使用了 8 个干燥的颅骨。使用 I-CAT 设备的全景扫描模式和 Morita 3D Accuitomo 设备的新拼接功能获取全头颅锥形束 CT(CBCT)图像,并由两位观察者测量所选解剖部位之间的线性距离。使用数字卡尺直接在颅骨上测量真实距离。使用组内相关系数和 Bland-Altman 一致性界限进行统计分析。

结果

CBCT 图像与真实测量值之间存在高度或完全一致。Bland-Altman 一致性界限分析显示,Morita 的拼接冠状和矢状图像可能与真实测量值相差>1.54-1.67 或<0.01 毫米。

结论

Morita CBCT 设备的拼接图像与真实测量值和 I-CAT 全头颅扫描图像完全一致。在评估拼接断层图像所接受的辐射剂量后,该设备可用于获取全头颅图像。

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