Completed Digestion, Kidneys & Other Organs Cancer

Micro-IGES - Microscopic Image Guided Endoluminal Surgery

In plain English

AI plain-English summary

Surgeons are testing a new platform that lets them see through tissue in real time while removing early-stage cancers through a flexible tube, without making a single incision. Current endoluminal surgery—where doctors reach tumours through natural openings like the mouth or anus—is unreliable. The instruments are crude, the view is poor, and the tissue moves and deforms. As a result, surgeons often cannot tell whether they have removed the entire tumour, leading to incomplete excision, bleeding, or accidental perforation. This forces many patients to undergo radical surgery instead, which carries significant risks of death and life-altering side effects. The Micro-IGES platform combines probe-based microscopic imaging, integrated sensing, and instruments that account for 3D tissue deformation. It gives surgeons a “see-through” view of excision margins during the procedure. The research team will test the platform first in animal models, then in human studies. If it works, the platform could transform care for patients with early-stage gastrointestinal, respiratory, or nasopharyngeal cancers. It offers the potential for a single procedure that both diagnoses and treats the tumour, reduces surgical trauma, and opens up treatment to elderly patients and those with other health conditions who cannot tolerate major surgery.

View original technical description
Although radical surgery for cancer is generally oncologically effective, the associated mortality and life altering morbidity are significant. Endoluminal excision offers a much less invasive alternative even to laparoscopic radical surgery for the removal of pre-malignant or early-stage malignant tumours. Endoluminal lesions of the gastrointestinal, respiratory or nasopharyngeal tract are accessible through minimally invasive means. However, even those close to the external orifice remain challenging to excise completely due to a lack of effective instrumentation, leading to significant operator dependency, risks of haemorrhage and perforation. Microscopic Image Guided Endoluminal Surgery (Micro-IGES) offers a novel microscopic surgical platform for minimally invasive surgery to enable endoluminal tasks to be undertaken with significantly improved consistency and precision through integrated sensing, instrumentation, probe-based microscopic imaging and effective intra-operative guidance that cater for 3D tissue deformation, and ‘see-through’ vision to confirm excision margins during specific endoluminal tasks. During this Award the platform will be evaluated in both in-vivo animal models and human studies. Micro-IGES offers a streamlined care-pathway for individual patients with improved quality of life and the ultimate potential for one-stop diagnosis and treatment. The platform will reduce surgical trauma - of particular importance to the aged and those with co-morbidities precluding major procedures.

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Related Research

Grants with similar aims, by meaning.

Micro-IGES - Microscopic Image Guided Endoluminal Surgery.
Self-propelled soft robotic endoscopes for next-generation gastrointestinal surgery and beyond
Dynamic Peri-operative Cerenkov Luminescence Imaging for Robotic Assisted Surgery (EDCLIRS)
Micro-Robotics for Surgery
SMART-Endomicroscopy (Sensing and Mechatronically Assisted Real-Time Endomicroscopy)

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