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Clinical Trial

Clinical Application of a Low-Dose CBCT AI Model

NCT: NCT07845929 · RECRUITING

NCT IDNCT07845929
StatusRECRUITING
Start Date2026-08-01
Completion2026-12-31
SponsorUnion Hospital, Tongji Medical College, Huazhong University of Science and Technology (OTHER)
First posted
Last updated

Brief Summary

Cone Beam CT (CBCT) is an imaging modality used in interventional digital subtraction angiography (DSA). It produces three-dimensional images via cone-beam X-ray scanning and computer reconstruction. Clinically, CBCT guides puncture for pulmonary and hepatic lesions and evaluates post-intervention outcomes in liver cancer and cerebrovascular diseases. However, CBCT-guided interventions carry high patient radiation exposure; dose reduction often degrades image quality and impairs procedural results. Studies report that each 100 mGy radiation increment elevates cancer risk by 1.96-fold. Artificial intelligence enables low-dose CBCT. Our prior DeepPriorCBCT model embedded anatomical priors using neural discrete representation learning, reducing thoracic CBCT dose to one-sixth of routine protocols while preserving image quality. We further developed DeepPriorCBCT-V2 using 55 000 pre-reconstruction CBCT datasets covering brain, thorax and abdomen. This multi-organ model maintains image quality at one-sixth standard radiation dose. Nevertheless, its real-world clinical performance remains unvalidated. We therefore designed this prospective multicenter randomized controlled trial to evaluate the clinical applicability of DeepPriorCBCT-V2.

Frequently Asked Questions

What is Clinical Application of a Low-Dose CBCT AI Model?

Clinical Application of a Low-Dose CBCT AI Model is a clinical trial registered under NCT07845929. Current status: RECRUITING.

What is the status of NCT07845929?

The current status of NCT07845929 (Clinical Application of a Low-Dose CBCT AI Model) is: RECRUITING.

When did Clinical Application of a Low-Dose CBCT AI Model start?

Clinical Application of a Low-Dose CBCT AI Model started on 2026-08-01.

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Official Source

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