Completed Cancer Lungs & Breathing

Transcostal High Intensity Focused Ultrasound for the Treatment of Cancer

In plain English

AI plain-English summary

High intensity focused ultrasound (HIFU) can destroy tumours deep inside the body without a single incision, but delivering that energy through the rib cage currently risks burning the skin and damaging the ribs. This project tackles four specific barriers that keep HIFU from becoming a routine cancer treatment: the rib-cage problem, the blurring effect of organs moving as patients breathe, the unpredictable behaviour of tiny gas bubbles (cavitation) inside living tissue, and the lack of real-time imaging that lets clinicians see what the ultrasound is doing as it works. The researchers aim to solve each of these engineering challenges and build a prototype clinical device for treating liver, kidney and pancreatic cancers. If successful, the device will have undergone preclinical safety testing and be ready for patient use. This matters because current treatments for these cancers—surgery, chemotherapy, or radiotherapy—are often invasive, toxic, or limited in effectiveness. A non-invasive, precisely targeted ultrasound beam could offer a safer alternative with fewer side effects, changing how several common and deadly cancers are managed.

View original technical description
The efficacy of high intensity focused ultrasound (HIFU) for the non-invasive treatment of cancer has been clearly demonstrated for a range of different cancers including those of the liver, prostate and breast. As a non-invasive focal therapy, HIFU offers considerable advantages over other techniques such as chemotherapy and surgery, in terms of invasiveness and risk of harmful side-effects. Despite its advantages, however, there are a number of significant challenges currently hindering its widespread clinical application, specifically: the need to transmit energy through the rib cage and the associated risk of skin burns and damage to the rib surface, the effects of organ motion on treatment accuracy, a poor understanding of cavitation processes in vivo and, finally, the lack of effective techniques for real-time image guidance and treatment monitoring. The overall objective of the research programme described in this document is to develop practical solutions for these issues. Successful completion of this proposal will result in a prototype clinical device for the safe and effective HIFU treatment of tumours of the liver, kidney and pancreas that has undergone preclinical testing and conforms to the necessary safety standards for patient use.

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Researchers

David Hawkes (Co-Investigator)Dean Barratt (Co-Investigator)Eleanor Stride (Co-Investigator)Nader Saffari (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

Use of Controlled Acoustic Cavitation to Enhance and Monitor Treatment by High-Intensity Focussed Ultrasound (HIFU)
Optimising patient specific treatment plans for ultrasound ablative therapies in the abdomen (OptimUS)
Copy of Development of methods for characterising and testing clinical High Intensity Focused Ultrasound (HIFU) systems
CRUKE/06/050: HIFU: An evaluation of hemi-ablation therapy using high-Intensity focused ultrasound in the treatment of localized adenocarcinoma of the prostate
Model-Based Treatment Planning for Focused Ultrasound Surgery

Original classification

Research Grant

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