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METHOD, SYSTEM, AND DEVICE FOR ULTRA-LOW-DOSE ORAL CBCT IMAGING

发明专利审中
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20权利要求 · 1 独立
§ Ⅰ

卷宗概要

申请人

CHINA-JAPAN FRIENDSHIP HOSPITAL (CHINA JAPAN FRIENDSHIP CLINICAL MEDICAL RESEARCH INSTITUTE); RUISHI WISDOM (BEIJING) MEDICAL TECHNOLOGY CO., LTD

发明人

Qisheng XIA; Hai WANG; Yao ZOU; Qiang XIONG

IPC 分类

G6T 11/G6N 3/464G6N 3/475G6N 3/94G6T 7/G6T 15/20

CPC 分类

G6T11/8G6N3/464G6N3/475G6N3/94G6T7/12G6T15/205G6T2207/10081G6T2207/20081G6T2207/20084G6T2207/30036

A method, system, and device for ultra-low-dose imaging of oral cone-beam computed tomography (CBCT) are provided. The method encompasses high-dose oral CBCT image data acquisition, data segmentation processing, three-dimensional (3D) reconstruction processing, model training, image data input, image enhancement, and image data output. Specifically, the process involves performing 3D reconstruction on 2D projection data of oral CBCT acquired in ultra-low-dose mode to obtain ultra-low-dose oral CBCT 3D reconstructed image data. This ultra-low-dose oral CBCT 3D reconstructed image data is then input into the oral CBCT ultra-low-dose imaging enhancement network model, from which high-quality oral CBCT image data is output for subsequent clinical diagnosis and treatment processes. This method significantly reduces the radiation dose of imaging while ensuring imaging quality, accelerates imaging speed, and enhances the safety of oral CBCT imaging, holding broad clinical application prospects.

原文(中文)

A method, system, and device for ultra-low-dose imaging of oral cone-beam computed tomography (CBCT) are provided. The method encompasses high-dose oral CBCT image data acquisition, data segmentation processing, three-dimensional (3D) reconstruction processing, model training, image data input, image enhancement, and image data output. Specifically, the process involves performing 3D reconstruction on 2D projection data of oral CBCT acquired in ultra-low-dose mode to obtain ultra-low-dose oral CBCT 3D reconstructed image data. This ultra-low-dose oral CBCT 3D reconstructed image data is then input into the oral CBCT ultra-low-dose imaging enhancement network model, from which high-quality oral CBCT image data is output for subsequent clinical diagnosis and treatment processes. This method significantly reduces the radiation dose of imaging while ensuring imaging quality, accelerates imaging speed, and enhances the safety of oral CBCT imaging, holding broad clinical application prospects.