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Application of Multimodal Endoscopic Functional Imaging Technology in the Diagnosis of Common Gastrointestinal Diseases

Application of Multimodal Endoscopic Functional Imaging Technology in the Diagnosis of Common Gastrointestinal Diseases

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT06236594
Acronym
Endo-mmfi
Enrollment
100
Registered
2024-02-01
Start date
2023-09-18
Completion date
2024-12-31
Last updated
2024-02-01

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Gastrointestinal Disease

Keywords

endoscopic laser speckle imaging, multispectral blood oxygen imaging, gastrointestinal lesions, early diagnosis, gastrointestinal tumors

Brief summary

We plan the study to explore the application of endoscopic laser speckle imaging and multispectral blood oxygen imaging to observe gastrointestinal lesions, as well as the differences in the morphology, density and functional status of mucosal surfaces and deep blood vessels of different gastrointestinal lesions, also to explore the role of endoscopic multimodal functional imaging in common gastrointestinal diseases, especially in the early diagnosis of gastrointestinal tumors.

Detailed description

The current focus of electronic endoscopy is on the morphology and fine structure of the mucosal surface, and there is no effective observation method for the deep structure of the mucosa and the function of blood oxygen binding. However, the multilayer morphology and functions of mucosal vessels under different conditions of digestive tract lesions should be different. Therefore, we propose a method of endoscopic multimodal functional imaging to the conventional endoscopic examinations observing the mucosa of the digestive tract, which is based on the existing electronic endoscope, laser speckle contrast imaging and multispectral blood oxygen imaging technology. Laser irradiation was given to obtain the information of coherent light on the mucosal surface and deep scattering of coherent light to obtain multi-level vascular distribution information, and multispectral irradiation imaging was carried out to obtain the oxygenation situation of the mucosa. Finally, we may find the differences of images of deep blood vessels among common gastrointestinal diseases, which could help us to make early diagnosis of gastrointestinal tumors noninvasively.

Interventions

None listed

Sponsors

Beijing 302 Hospital
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

1. Age: 18-80 years old, gender is not limited 2. Diagnosed or suspected of one of the following common gastrointestinal mucosal diseases: Chronic non-atrophic gastritis, chronic atrophic gastritis, gastric polyps, early gastric cancer, advanced gastric cancer, colon polyps, colon melanosis, inflammatory bowel disease, early colon cancer, advanced colon cancer 3. Sign the informed consent form -

Exclusion criteria

1. Combined with cardiovascular and cerebrovascular diseases, or severe impairment of liver, kidney and hematopoietic system; 2. mentally ill; 3. the presence of bleeding disorders; 4. Platelet count\<50×10\^9/L; 5. Inability to tolerate or cooperate with endoscopy; 6. Patients with serious complications, such as severe infection, gastrointestinal bleeding, obstruction, perforation, etc.; 7. Pregnant or lactating women. 8. Refuse to sign the informed consent form

Design outcomes

Primary

MeasureTime frameDescription
Image quality rateone yearThe main evaluation index (image quality rate) is based on FAS(Full Analysis Set) and PPS(Per Protocol Set), for statistical description. Image quality rate Calculation formula: image excellent rate = number of cases with excellent or good image quality evaluation ÷ number of subjects undergoing multimodal endoscopy × 100%.

Secondary

MeasureTime frameDescription
Diagnosis accuracy according to imageone year(1) Endoscopy examinations combined with laser speckle imaging and Doppler blood oxygen imaging can realize multi-level vascular observation and photographing of the mucosa, and the imaging analyzer will analyzes and synthesizes the two-dimensional map of laser speckle and blood oxygen imaging of the mucosa. Endoscopist will make diagnosis according to the image they get. (2) After endoscopic biopsy or endoscopic mucosal resection (EMR), endoscopic submucosal resection (ESD) obtaining tissue specimens, the pathology was observed by conventional HE staining or immunohistochemistry. (3) The results of comparison are divided into conformity, partial conformity and non-conformity.

Countries

China

Contacts

Primary ContactWei Shen
shshenw@sina.com+8615001038695
Backup ContactShujuan Li
+8601066947300

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026