Multi-sensor Eversion Robot Towards Intelligent Endoscopic Diagnosis and Therapy
EndoTheranostics aims to revolutionize colorectal cancer screening and treatment through a robotic system that enables painless preparation, real-time polyp detection, and effective removal using advanced imaging and tools.
Projectdetails
Introduction
Colorectal cancer (CRC) represents a significant proportion of malignant diseases. Interventions are often carried out during the latter stages of development, leading to low patient survival rates and poor quality of life.
Current Challenges
In 2022, a European Commission report stated that “colonoscopy-based screening has higher sensitivity than testing for blood in stool, but it is less acceptable to participants”. At the same time, effective methods to treat polyps in the colon are limited. Current approaches are often associated with unsafe oncological margins and high complication rates, requiring life-changing surgery.
Project Overview
EndoTheranostics will usher in a new era for screening colonoscopy, advancing the frontiers of medical imaging and robotics. A tip-growing or eversion robot with a sleeve-like structure will be created to extend deep into hollow spaces while perceiving the environment through multimodal imaging and sensing.
System Capabilities
It will also act as a conduit to transfer miniaturised instruments to the remote site within the colon for diagnosis and therapy (theranostics). With these capabilities, the system will be able to offer:
- Painless colon cleansing in preparation for endoscopy.
- Real-time polyp detection and tissue characterisation through AI-assisted multimodal imaging.
- Effective removal of polyps by conveying a “miniature mobile operating chamber” equipped with microsurgical tools to the target through the lumen of the eversion robot.
Team Expertise
The unique technical and clinical challenges will be tackled by the PIs, each bringing complementary skills, backed by their institutions with wide expertise and exceptional facilities. The synergy and added value evident in this team will lead to breakthroughs not possible through independent research.
Impact
The outcomes of EndoTheranostics will revolutionise the theranostics of CRC, impacting the quality of life of millions of individuals. Ultimately, it will launch a new era for endoluminal intervention with applications beyond medicine.
Financiële details & Tijdlijn
Financiële details
Subsidiebedrag | € 7.616.426 |
Totale projectbegroting | € 7.616.426 |
Tijdlijn
Startdatum | 1-7-2024 |
Einddatum | 30-6-2030 |
Subsidiejaar | 2024 |
Partners & Locaties
Projectpartners
- UNIVERSITA DEGLI STUDI DI TORINOpenvoerder
- QUEEN MARY UNIVERSITY OF LONDON
- C.R.E.A.T.E. CONSORZIO DI RICERCA PER L'ENERGIA L AUTOMAZIONE E LE TECNOLOGIE DELL'ELETTROMAGNETISMO
- KING'S COLLEGE LONDON
Land(en)
Vergelijkbare projecten binnen European Research Council
Project | Regeling | Bedrag | Jaar | Actie |
---|---|---|---|---|
AI to predict Cancer metastasis using Ultra-Echo-Sono imagingAI CUrES aims to enhance early diagnosis and pre-emptive therapies for cancer metastasis by utilizing nanosized-contrast agents and AI-driven bioimaging of extracellular vesicles from colorectal tumors. | ERC Proof of... | € 150.000 | 2022 | Details |
In vivo Immunofluorescence-Optical Coherence TomographyDevelop a high-resolution endoscopic imaging system combining Optical Coherence Tomography and fluorescent antibodies for improved diagnosis and treatment of esophageal cancer and lung disease. | ERC Advanced... | € 2.500.000 | 2025 | Details |
Prostate Diagnosis using Optical Coherence TomographyThe PROCT project aims to enhance prostate cancer diagnosis by developing a semiautonomous robotic system using Optical Coherence Tomography for accurate, in vivo lesion analysis without biopsies. | ERC Proof of... | € 150.000 | 2022 | Details |
EARTHWORM: pEristAlsis in Real-Time Human mri to study the interWOven fRequency & Microstructural propertiesEARTHWORM aims to revolutionize MRI techniques to study peristaltic motion and microstructure in the human body, enhancing diagnosis and modeling of related diseases. | ERC Starting... | € 1.494.536 | 2024 | Details |
Mucinase-based innovative therapy to enhance cancer treatmentThe MUC-BITE project aims to develop Nano-MUCase, a mucinase-nanobody conjugate, to enhance CRC drug efficacy by degrading mucin barriers, while assessing its commercial viability. | ERC Proof of... | € 150.000 | 2023 | Details |
AI to predict Cancer metastasis using Ultra-Echo-Sono imaging
AI CUrES aims to enhance early diagnosis and pre-emptive therapies for cancer metastasis by utilizing nanosized-contrast agents and AI-driven bioimaging of extracellular vesicles from colorectal tumors.
In vivo Immunofluorescence-Optical Coherence Tomography
Develop a high-resolution endoscopic imaging system combining Optical Coherence Tomography and fluorescent antibodies for improved diagnosis and treatment of esophageal cancer and lung disease.
Prostate Diagnosis using Optical Coherence Tomography
The PROCT project aims to enhance prostate cancer diagnosis by developing a semiautonomous robotic system using Optical Coherence Tomography for accurate, in vivo lesion analysis without biopsies.
EARTHWORM: pEristAlsis in Real-Time Human mri to study the interWOven fRequency & Microstructural properties
EARTHWORM aims to revolutionize MRI techniques to study peristaltic motion and microstructure in the human body, enhancing diagnosis and modeling of related diseases.
Mucinase-based innovative therapy to enhance cancer treatment
The MUC-BITE project aims to develop Nano-MUCase, a mucinase-nanobody conjugate, to enhance CRC drug efficacy by degrading mucin barriers, while assessing its commercial viability.
Vergelijkbare projecten uit andere regelingen
Project | Regeling | Bedrag | Jaar | Actie |
---|---|---|---|---|
Real-time multi-spectral imaging for accurate detection of cancerous tissue in endoscopic surgeryThericon is developing an rMSI platform to enhance endoscopic cancer surgery by providing multi-parametric imaging for better tissue differentiation and reducing cancer recurrence, seeking funding for market launch in 2024. | EIC Accelerator | € 2.500.000 | 2022 | Details |
EndocartoScope: Transforming any Endoscope into a Smart Device for Intraoperative 3D Localization, Navigation and MappingEndoCartoScope aims to develop a real-time 3D mapping system for endoscopy using VSLAM technology, enhancing navigation and measurement for improved diagnostics and future robotic applications. | EIC Transition | € 2.498.425 | 2025 | Details |
AI and Robotics for Prostate BiopsyThe ROBIOPSY project aims to develop a robotic prostate biopsy prototype for clinical trials, enhancing diagnostic accuracy and addressing health economics for improved cancer treatment. | EIC Transition | € 2.499.141 | 2023 | Details |
MULTIMODE NONLINEAR FIBER BASED ENDOSCOPIC IMAGING AND TREATMENTMULTISCOPE aims to revolutionize optical diagnostics and therapy by developing a dual-function endoscopic device for real-time optical biopsy and cold atmospheric plasma treatment in gastrointestinal care. | EIC Pathfinder | € 2.863.733 | 2024 | Details |
Radically New Cancer Therapy Based on Advances in Nanotechnology and Photonics for Simultaneous Imaging and Treatment of Solid TumoursScanNanoTreat aims to revolutionize cancer treatment by integrating advanced imaging and therapy technologies to improve patient outcomes and reduce costs, targeting clinical trials by 2027. | EIC Transition | € 2.499.911 | 2025 | Details |
Real-time multi-spectral imaging for accurate detection of cancerous tissue in endoscopic surgery
Thericon is developing an rMSI platform to enhance endoscopic cancer surgery by providing multi-parametric imaging for better tissue differentiation and reducing cancer recurrence, seeking funding for market launch in 2024.
EndocartoScope: Transforming any Endoscope into a Smart Device for Intraoperative 3D Localization, Navigation and Mapping
EndoCartoScope aims to develop a real-time 3D mapping system for endoscopy using VSLAM technology, enhancing navigation and measurement for improved diagnostics and future robotic applications.
AI and Robotics for Prostate Biopsy
The ROBIOPSY project aims to develop a robotic prostate biopsy prototype for clinical trials, enhancing diagnostic accuracy and addressing health economics for improved cancer treatment.
MULTIMODE NONLINEAR FIBER BASED ENDOSCOPIC IMAGING AND TREATMENT
MULTISCOPE aims to revolutionize optical diagnostics and therapy by developing a dual-function endoscopic device for real-time optical biopsy and cold atmospheric plasma treatment in gastrointestinal care.
Radically New Cancer Therapy Based on Advances in Nanotechnology and Photonics for Simultaneous Imaging and Treatment of Solid Tumours
ScanNanoTreat aims to revolutionize cancer treatment by integrating advanced imaging and therapy technologies to improve patient outcomes and reduce costs, targeting clinical trials by 2027.