We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

Features Partner Sites Information LinkXpress hp
Sign In
Advertise with Us

Download Mobile App




Computer-Controlled Couch Used to Direct Radiotherapy to Tumors

By HospiMedica International staff writers
Posted on 16 Jan 2014
Swiveling patients around on a computer-controlled, rotating table could deliver high doses of radiotherapy to tumors more rapidly than current technology, while sparing vulnerable organs such as the eyes, heart, brain, and bowel. More...


Sophisticated computer modelling has been devised to slowly move the table, known as a couch, and a radiation source in three dimensions to direct radiation right to the patient’s tumor. A radiotherapy table currently can be angled during treatment, but there is no way to synchronize its rotation with a moving radiation beam. However, with some alterations, an upgraded system could move both the patient and the beam while reducing the radiation dose of healthy tissue.

A team of researchers from the Institute of Cancer Research, London (ICR; UK) and the Royal Marsden NHS (National Health Service) Foundation Trust (London, UK) modelled the effectiveness of the technique using data from four patients with different cancers close to major organs and found it could substantially cut the amount of radiation delivered to healthy tissue. The study was published November 7, 2013, in the journal Physics in Medicine and Biology.

In breast cancer, the average radiation dose to the heart could be reduced by 53% compared with radiotherapy without the new technique. In a patient with a brain tumor, maximum calculated doses to the left and right eye lenses decreased by 61% and 77% respectively, and by 37% and 40% to the left and right eyes, respectively.

The technique could slash the average dose a prostate cancer patient’s bowel is exposed to by 15%. Patients with advanced prostate cancer, where the pelvic nodes are also treated, could see the volume of their bowel exposed to radiation lowered by as much as 45%. This next-generation radiotherapy technique, known as dynamic couch rotation volumetric-modulated arc therapy (DCR-VMAT), would use a beam of radiation, which would move around the patient, while also moving the patient table simultaneously. Clinicians could control the angle of the beam, the dose rate and the shape of the beam, and limit the radiation dose to the patient’s healthy organs.

Because the technique is so new, little research has been conducted about how to coordinate the patient’s movement with the radiation source to minimize organ exposure while treating tumors in different parts of the body. This is the first study using sophisticated computer modelling to directly optimize the technique.

Researchers at the ICR and The Royal Marsden used computer modelling of the path of the radiation beam to produce maps showing the amount of radiation from the moving source that intersected with healthy organs near the patient’s tumors. They cross-referenced this with every possible orientation of the table in relation to the beam to calculate how to move the patient during DCR-VMAT to minimize the radiation dose to healthy organs.

Study leader Dr. James Bedford, lead clinical research physicist in the joint department of physics at the Institute of Cancer Research, London and The Royal Marsden NHS Foundation Trust, said, “Radiotherapy continues to improve as new ways of directing radiation to the tumor while sparing the critical structures are found. The outcome of radiotherapy depends very much on the type of cancer and where it is located in the body. This technique allows us to maximize the dose to the tumor while steering the radiation beam around the sensitive normal tissues. It will be of particular value for patients whose tumors are located near to radiation-sensitive organs.

“Although other high-tech radiotherapy systems exist, they are only available at a few sites around the UK, and the time taken to treat the patient is considerable. The advantage of our proposed system is that it improves on radiotherapy machines already widely available—it’s the natural progression for these devices. The new technique could provide precision radiotherapy that would be easier to implement in every radiotherapy facility in the country. Furthermore, treatment would only take a few minutes, which is more comfortable for the patient and improves accuracy.”

Prof. Alan Ashworth, chief executive of the Institute of Cancer Research, London, said, “Research into physics has played an important but largely unheralded role in advancing cancer treatment, with around 40% of cancer survivors having received radiotherapy. Our physicists are developing cutting-edge techniques to deliver doses of radiation to tumors more precisely. This work could substantially reduce the amount of harmful radiation patients' healthy organs are exposed to, allowing us to hit the cancer with higher and more effective doses of treatment.”

Dr. Imogen Locke, lead for clinical oncology at the Royal Marsden, said, “This research has the exciting potential to translate into significant clinical benefit for patients by reducing some of the long-term effects of radiotherapy on healthy tissue. Delivering radiotherapy using advanced rotational techniques also allows treatment to be targeted more accurately and delivered more rapidly.”

Related Links:

Institute of Cancer Research, London Institute of Cancer Research, London
Royal Marsden NHS Foundation Trust 



Gold Member
Neonatal Heel Incision Device
Tenderfoot
Radiology Monitor
MDNC-6121 Barco Nio Color 5.8MP
Blood Pressure Monitor
Cuff Blood Pressure Monitor
Glucose Meter
StatStrip®
Read the full article by registering today, it's FREE! It's Free!
Register now for FREE to HospiMedica.com and get access to news and events that shape the world of Hospital Medicine.
  • Free digital version edition of HospiMedica International sent by email on regular basis
  • Free print version of HospiMedica International magazine (available only outside USA and Canada).
  • Free and unlimited access to back issues of HospiMedica International in digital format
  • Free HospiMedica International Newsletter sent every week containing the latest news
  • Free breaking news sent via email
  • Free access to Events Calendar
  • Free access to LinkXpress new product services
  • REGISTRATION IS FREE AND EASY!
Click here to Register








Channels

Artificial Intelligence

view channel
Image

Explainable AI Tool Improves Brain Disorder Screening from 4D fMRI

Functional magnetic resonance imaging (fMRI) captures changes in brain activity over time, but the resulting image sequences can be difficult to analyze. Screening for brain disorders requires assessing... Read more

Critical Care

view channel
Image: Liposomes have long been used for gradual drug delivery, with their composition controlling release speed, potency, duration, and potential toxicity. (Image Credit: iStock)

New Drug Delivery System Extends Release of Local Anesthetic for Weeks

Local anesthetics used for nerve blocks often provide pain relief for only a limited period, while perioperative pain can persist much longer. Extending the duration of a nerve block therefore requires... Read more

Surgical Techniques

view channel
Image: Memo 4D Curve preserves the mitral annulus’s natural three-dimensional motion while supporting remodeling and is available in sizes up to 42 mm for a broad range of mitral pathology. (Photo courtesy of Corcym)

First Human Implant Performed With New Open Mitral Annuloplasty Ring

In mitral valve repair, clinicians aim to preserve the mitral annulus’s three-dimensional motion while providing enough support for effective remodeling. Ring preferences vary between open and closed ... Read more

Point of Care

view channel
Image Credit: 123RF

Continuous Glucose Monitoring Identifies Cardiometabolic Risk in Adults Without Diabetes

Dysglycemia—abnormal blood glucose regulation—can fluctuate throughout the day and often escape conventional screening. Clinicians typically rely on fasting plasma glucose and hemoglobin A1c, which offer... Read more

Business

view channel
Image: LigaSure RAS Maryland, designed for the Valleylab FT10 platform on Hugo RAS, seals and cuts vessels, tissue, and lymphatics up to 7 mm in diameter (Photo courtesy of Medtronic)

Medtronic Receives FDA Clearance for Vessel-Sealing Instrument for Robotic Surgery

As robotic-assisted surgery expands across U.S. hospitals, teams increasingly seek energy instruments with the familiarity and performance of tools used in open and laparoscopic procedures.... Read more
Copyright © 2000-2026 Globetech Media. All rights reserved.