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Clinical Trial Summary

This preliminary clinical trial aims to evaluate the performance of the low-dose CT colonoscopy (CTC) with computer aided detection (CAD) on polyps detection compared with optical colonoscopy (OC), and explore the possible clinical routine for integrated use of CT colonoscopy and optical colonoscopy OC in colorectal cancer screening.


Clinical Trial Description

CT colonoscopy (CTC), also referred to as virtual colonoscopy (VC), utilizes computer virtual-reality techniques to navigate inside a three-dimensional patient-specific colon model reconstructed from abdominal CT images, looking for colonic lesions, full bowel preparation and colon inflation are needed to perform CTC examination. The clinical trial consists of two major parts:

1. Comparative study on the performance of CTC and OC: 50 subjects will be recruited in this part with written consents. With full bowel preparation, all the volunteers receive CT scans first with inflated colon, then OC followed by the same day, and necessary pathological analysis thereafter. The performance of CTC based on high-resolution CT data, including the number of polyps detected, size, position, etc, will be validated by that of OC with the paired comparison.

2. Integrate use of low-dose CTC with OC for colorectal cancer screening: After the validation of CTC performance, in this part, another 50 subjects will be recruited to explore the integrated use of CTC with OC as a possible and efficient workflow for colorectal cancer screening. In this part, a combination of normal dose and low-dose scan protocols will be employed (e.g., normal dose on supine, low-dose on prone), low-dose CTC based on the low-dose CT scanning protocol and an artifacts reduction technique will be introduced to reduce the radiation risk in screening. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT03064828
Study type Interventional
Source Xijing Hospital
Contact Shuhui Liang, MD
Email liangsh@fmmu.edu.cn
Status Recruiting
Phase N/A
Start date January 2017
Completion date December 2019

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