MoleGazer Development Feasibility Study
NCT05015816 · Status: ACTIVE_NOT_RECRUITING · Phase: NA · Type: INTERVENTIONAL · Enrollment: 374
Last updated 2025-07-31
Summary
Melanoma (skin cancer) frequently develops from existing moles on the skin. Current practice relies on expert dermatologists being able to successfully identify new/changing moles in individuals with multiple moles. Total body photography (TBP-high-quality images of the entire skin) can track and monitor moles over time to detect melanoma.
However, TBP is currently used as a visual guide when diagnosing melanoma, requiring visual inspection of each mole sequentially. This process is challenging, time-consuming and inefficient. Artificial intelligence (AI) is ideally suited to automate this process. Comparing baseline TBP images to newly acquired photographs, AI techniques can be used to accurately identify and highlight changing moles, and potentially distinguish harmless moles from cancerous changes.
Astrophysicists face a similar problem when they map the night sky to detect new events, such as exploding stars. Using AI, based on two or more images, astrophysicists detect new events and accurately predict how they will appear subsequently. This project, called MoleGazer, is a collaboration with astrophysicists aiming to apply AI methods that are currently used for astronomical sky surveys, to TBP images. The MoleGazer algorithm, developed at Oxford University Hospitals NHS Foundation Trust, will automatically identify the appearance of new moles and characterise changes in existing ones, when new TBP images are taken. To optimise this MoleGazer algorithm TBP images will be taken at multiple time-points, as there are no existing datasets of TBP images that are publicly available. The investigators invite a) high-risk patients attending skin cancer screening clinics to attend sequential three-monthly TBP imaging and clinical assessment and b) any patient who undergoes TBP as standard care to share images so that the investigators can develop the MoleGazer algorithm. The ultimate goal is for the MoleGazer algorithm to 'map moles' over a patient's lifetime to detect changes, with the eventual aim to detect melanoma as early as possible.
Conditions
- Melanoma (Skin)
- Moles Multiple Benign
Interventions
- DIAGNOSTIC_TEST
-
Total body photography
3 monthly TBP imaging
Sponsors & Collaborators
-
University of Southampton
collaborator OTHER -
Oxford University Hospitals NHS Trust
lead OTHER
Principal Investigators
-
Rubeta N Matin, PhD FRCP · Oxford University Hospitals NHS Trust
Study Design
- Allocation
- NON_RANDOMIZED
- Purpose
- OTHER
- Masking
- NONE
- Model
- PARALLEL
Eligibility
- Min Age
- 18 Years
- Max Age
- 80 Years
- Sex
- ALL
- Healthy Volunteers
- Yes
Timeline & Regulatory
- Start
- 2021-09-13
- Primary Completion
- 2024-02-28
- Completion
- 2026-02-28
Countries
- United Kingdom
Study Locations
More Related Trials
-
Clinical, Laboratory, and Epidemiologic Characterization of Individuals and Families at High Risk of Melanoma
NCT00040352 ·Status: RECRUITING
-
Early Diagnosis of Malignant Transformation of Pigmentary Skin Lesions
NCT01167998 ·Status: UNKNOWN
-
Using High Resolution Function Imaging To Detect Melanoma and Dysplastic Nevi
NCT01118832 ·Status: COMPLETED
-
Melanoma Surveillance Photography (MSP) to Improve Early Detection of Melanoma in Ultra-high and High Risk Patients
NCT04385732 ·Status: ACTIVE_NOT_RECRUITING ·Phase: NA
-
Application of Genomic Techniques and Image Processing Using Artificial Intelligence to Obtain a Predictor Model Risk of Melanoma
NCT02511119 ·Status: UNKNOWN
-
Skin Care Behaviors Among Melanoma Survivors and Their Families
NCT02457065 ·Status: COMPLETED ·Phase: NA
-
Head and Neck Melanoma; Access to Staging and Surgical Treatment
NCT05900102 ·Status: COMPLETED
-
Interactive Tailored Website to Promote Sun Protection and Skin Self-Check Behaviors in Patients With Melanoma
NCT03028948 ·Status: COMPLETED ·Phase: NA
-
Confocal Reflectance Microscopy of Shave-Biopsy Sites on Skin in Vivo.
NCT00601185 ·Status: COMPLETED
-
Diagnostic Precision of the AI Tool Dermalyzer to Identify Malignant Melanomas in Subjects Seeking Primary Care for Melanoma-suspected Cutaneous Lesions
NCT05172232 ·Status: COMPLETED
-
ARTIficial Intelligence-based Smartphone Application for Skin Cancer Detection
NCT05246163 ·Status: RECRUITING
-
SpotCheck: Comparison of Enhanced Telemedicine Versus In-person Evaluation for the Diagnosis of Skin Cancer
NCT04411810 ·Status: COMPLETED ·Phase: NA
-
Spectral Diagnosis of Cutaneous Malignancy
NCT00476905 ·Status: COMPLETED
-
Curettage Versus Excision in Nodular and Superficial Basal Cell Carcinomas
NCT00515970 ·Status: SUSPENDED ·Phase: NA
-
Tailored Intervention for Melanoma Patient's Families
NCT00816374 ·Status: COMPLETED ·Phase: NA
-
A Pilot Study to Evaluate Optical Spectroscopy of Pigmented Skin Lesions
NCT00633516 ·Status: COMPLETED
-
Use of Fiber-optic Probe for Non-invasive Diagnosis of Melanoma and Assessment of Impact of Ultraviolet (UV) Exposure on Skin
NCT01085396 ·Status: TERMINATED
-
Pilot Study of Infrared Imaging of Cutaneous Melanoma
NCT00937690 ·Status: COMPLETED
-
Study of Metabolic Changes in the Transformation Malignant Precancerous Skin Lesions
NCT04389112 ·Status: UNKNOWN ·Phase: NA
-
Comparative Retrospective Analysis of Skin Tumors of the Eyelids and Face in 2 Brussels University Hospitals Over 5 Years in Dermatology or Ophthalmology
NCT04886908 ·Status: COMPLETED
-
The Use of Mole Mapping Diagrams to Increase Skin Self Examination Accuracy
NCT00237965 ·Status: COMPLETED ·Phase: NA
-
Confocal Microscopy of Benign and Malignant Skin Tumors
NCT01010321 ·Status: SUSPENDED
-
Imaging Methods for the Diagnosis of Non-melanoma Skin Cancer and Its Precursors
NCT05842421 ·Status: COMPLETED ·Phase: NA
-
A Comparison of Interventions to Teach Melanoma Patients Skin Self-examination
NCT01432860 ·Status: COMPLETED ·Phase: NA
-
Superficial Basal Cell Carcinoma Treatment With Topical Photodynamic Therapy With Fractionated 5-aminolevulinic Acid 20% Versus Two Stage Methylaminolevulinate
NCT01491711 ·Status: UNKNOWN ·Phase: PHASE4