Volumetric-Modulated Arc Therapy Targets Shortened Radiation Treatment Times for Cancer Patients
By MedImaging International staff writers Posted on 13 May 2009 |

Image: SmartArc, a radiation treatment planning option designed for volumetric-modulated arc therapy (VMAT) that can be used with the leading linear accelerators on the market. Available as a module in Philips Pinnacle3 version 9 radiation treatment planning (RTP) software, the new planning option can be used with any VMAT-capable delivery system on the market (Photo courtesy of Royal Philips Electronics).
Independent technology for volumetric-modulated arc therapy (VMAT) treatment planning has been developed that can be used with the leading linear accelerators on the market.
Available as a module in the Philips Medical Systems' (Best, The Netherlands) Pinnacle3 version 9 radiation treatment planning (RTP) software, the new SmartArc planning option can be used with any VMAT-capable delivery system on the market.
VMAT is an advanced form of intensity-modulated radiation therapy (IMRT) in which the treatment machine rotates around the patient while the treatment beam is on. The basic promise of VMAT delivery is to significantly reduce treatment time per patient compared with traditional IMRT. VMAT can benefit the patient by offering shorter treatment times, increased accuracy and better sparing of healthy tissue. Reduced treatment time results in decreased stress for patients and increased capacity for providers.
"Volumetric-modulated arc therapy provides the ability to combine the dosimetric benefits of rotational therapy with the dose painting capabilities of IMRT. In addition to improved plan quality, VMAT results in more efficient plan deliveries--using VMAT for complex head-and-neck cases can result in a seven minute reduction in our average treatment time," said Dave Shepard, Ph.D., DABR, director of medical physics radiation oncology at the Swedish Cancer Institute (Seattle, WA, USA). "The SmartArc module in the Pinnacle3 treatment planning system has proven to be a robust planning solution for VMAT."
Philips SmartArc advanced treatment planning technology allows single or multiple user-definable arcs and supports both constant- and variable- dose rate delivery. Constant-dose rate delivery allows clinicians to explore the benefits of VMAT delivery without the expense and downtime associated with an upgrade to their linear accelerator. SmartArc is the first commercially released inverse planning solution designed for both Elekta and Varian linear accelerators. This flexibility is important to allow clinicians the freedom to choose the delivery device that best fits their needs.
"VMAT is the next iteration of IMRT and conformal arc therapy--capabilities Philips Pinnacle3 has been providing for more than five years. SmartArc seamlessly blends these capabilities in a fully integrated solution that meets the needs of our customers," said Keith Tipton, general manager, Philips Radiation Oncology Solutions. "Clinicians expressed a need for comprehensive tools that allow them to evaluate and implement VMAT in conjunction with various therapies in order to choose the best treatment option for patients. SmartArc answers these needs and is yet another example of how Philips is committed to developing innovative, flexible products for radiation therapy."
Related Links:
Philips Medical Systems
Available as a module in the Philips Medical Systems' (Best, The Netherlands) Pinnacle3 version 9 radiation treatment planning (RTP) software, the new SmartArc planning option can be used with any VMAT-capable delivery system on the market.
VMAT is an advanced form of intensity-modulated radiation therapy (IMRT) in which the treatment machine rotates around the patient while the treatment beam is on. The basic promise of VMAT delivery is to significantly reduce treatment time per patient compared with traditional IMRT. VMAT can benefit the patient by offering shorter treatment times, increased accuracy and better sparing of healthy tissue. Reduced treatment time results in decreased stress for patients and increased capacity for providers.
"Volumetric-modulated arc therapy provides the ability to combine the dosimetric benefits of rotational therapy with the dose painting capabilities of IMRT. In addition to improved plan quality, VMAT results in more efficient plan deliveries--using VMAT for complex head-and-neck cases can result in a seven minute reduction in our average treatment time," said Dave Shepard, Ph.D., DABR, director of medical physics radiation oncology at the Swedish Cancer Institute (Seattle, WA, USA). "The SmartArc module in the Pinnacle3 treatment planning system has proven to be a robust planning solution for VMAT."
Philips SmartArc advanced treatment planning technology allows single or multiple user-definable arcs and supports both constant- and variable- dose rate delivery. Constant-dose rate delivery allows clinicians to explore the benefits of VMAT delivery without the expense and downtime associated with an upgrade to their linear accelerator. SmartArc is the first commercially released inverse planning solution designed for both Elekta and Varian linear accelerators. This flexibility is important to allow clinicians the freedom to choose the delivery device that best fits their needs.
"VMAT is the next iteration of IMRT and conformal arc therapy--capabilities Philips Pinnacle3 has been providing for more than five years. SmartArc seamlessly blends these capabilities in a fully integrated solution that meets the needs of our customers," said Keith Tipton, general manager, Philips Radiation Oncology Solutions. "Clinicians expressed a need for comprehensive tools that allow them to evaluate and implement VMAT in conjunction with various therapies in order to choose the best treatment option for patients. SmartArc answers these needs and is yet another example of how Philips is committed to developing innovative, flexible products for radiation therapy."
Related Links:
Philips Medical Systems
Latest Nuclear Medicine News
- Novel Radiolabeled Antibody Improves Diagnosis and Treatment of Solid Tumors
- Novel PET Imaging Approach Offers Never-Before-Seen View of Neuroinflammation
- Novel Radiotracer Identifies Biomarker for Triple-Negative Breast Cancer
- Innovative PET Imaging Technique to Help Diagnose Neurodegeneration
- New Molecular Imaging Test to Improve Lung Cancer Diagnosis
- Novel PET Technique Visualizes Spinal Cord Injuries to Predict Recovery
- Next-Gen Tau Radiotracers Outperform FDA-Approved Imaging Agents in Detecting Alzheimer’s
- Breakthrough Method Detects Inflammation in Body Using PET Imaging
- Advanced Imaging Reveals Hidden Metastases in High-Risk Prostate Cancer Patients
- Combining Advanced Imaging Technologies Offers Breakthrough in Glioblastoma Treatment
- New Molecular Imaging Agent Accurately Identifies Crucial Cancer Biomarker
- New Scans Light Up Aggressive Tumors for Better Treatment
- AI Stroke Brain Scan Readings Twice as Accurate as Current Method
- AI Analysis of PET/CT Images Predicts Side Effects of Immunotherapy in Lung Cancer
- New Imaging Agent to Drive Step-Change for Brain Cancer Imaging
- Portable PET Scanner to Detect Earliest Stages of Alzheimer’s Disease
Channels
Radiography
view channel
AI Improves Early Detection of Interval Breast Cancers
Interval breast cancers, which occur between routine screenings, are easier to treat when detected earlier. Early detection can reduce the need for aggressive treatments and improve the chances of better outcomes.... Read more
World's Largest Class Single Crystal Diamond Radiation Detector Opens New Possibilities for Diagnostic Imaging
Diamonds possess ideal physical properties for radiation detection, such as exceptional thermal and chemical stability along with a quick response time. Made of carbon with an atomic number of six, diamonds... Read moreMRI
view channel
New MRI Technique Reveals True Heart Age to Prevent Attacks and Strokes
Heart disease remains one of the leading causes of death worldwide. Individuals with conditions such as diabetes or obesity often experience accelerated aging of their hearts, sometimes by decades.... Read more
AI Tool Predicts Relapse of Pediatric Brain Cancer from Brain MRI Scans
Many pediatric gliomas are treatable with surgery alone, but relapses can be catastrophic. Predicting which patients are at risk for recurrence remains challenging, leading to frequent follow-ups with... Read more
AI Tool Tracks Effectiveness of Multiple Sclerosis Treatments Using Brain MRI Scans
Multiple sclerosis (MS) is a condition in which the immune system attacks the brain and spinal cord, leading to impairments in movement, sensation, and cognition. Magnetic Resonance Imaging (MRI) markers... Read more
Ultra-Powerful MRI Scans Enable Life-Changing Surgery in Treatment-Resistant Epileptic Patients
Approximately 360,000 individuals in the UK suffer from focal epilepsy, a condition in which seizures spread from one part of the brain. Around a third of these patients experience persistent seizures... Read moreUltrasound
view channel.jpeg)
AI-Powered Lung Ultrasound Outperforms Human Experts in Tuberculosis Diagnosis
Despite global declines in tuberculosis (TB) rates in previous years, the incidence of TB rose by 4.6% from 2020 to 2023. Early screening and rapid diagnosis are essential elements of the World Health... Read more
AI Identifies Heart Valve Disease from Common Imaging Test
Tricuspid regurgitation is a condition where the heart's tricuspid valve does not close completely during contraction, leading to backward blood flow, which can result in heart failure. A new artificial... Read moreGeneral/Advanced Imaging
view channel
CT-Based Deep Learning-Driven Tool to Enhance Liver Cancer Diagnosis
Medical imaging, such as computed tomography (CT) scans, plays a crucial role in oncology, offering essential data for cancer detection, treatment planning, and monitoring of response to therapies.... Read more
AI-Powered Imaging System Improves Lung Cancer Diagnosis
Given the need to detect lung cancer at earlier stages, there is an increasing need for a definitive diagnostic pathway for patients with suspicious pulmonary nodules. However, obtaining tissue samples... Read moreImaging IT
view channel
New Google Cloud Medical Imaging Suite Makes Imaging Healthcare Data More Accessible
Medical imaging is a critical tool used to diagnose patients, and there are billions of medical images scanned globally each year. Imaging data accounts for about 90% of all healthcare data1 and, until... Read more
Global AI in Medical Diagnostics Market to Be Driven by Demand for Image Recognition in Radiology
The global artificial intelligence (AI) in medical diagnostics market is expanding with early disease detection being one of its key applications and image recognition becoming a compelling consumer proposition... Read moreIndustry News
view channel
GE HealthCare and NVIDIA Collaboration to Reimagine Diagnostic Imaging
GE HealthCare (Chicago, IL, USA) has entered into a collaboration with NVIDIA (Santa Clara, CA, USA), expanding the existing relationship between the two companies to focus on pioneering innovation in... Read more
Patient-Specific 3D-Printed Phantoms Transform CT Imaging
New research has highlighted how anatomically precise, patient-specific 3D-printed phantoms are proving to be scalable, cost-effective, and efficient tools in the development of new CT scan algorithms... Read more
Siemens and Sectra Collaborate on Enhancing Radiology Workflows
Siemens Healthineers (Forchheim, Germany) and Sectra (Linköping, Sweden) have entered into a collaboration aimed at enhancing radiologists' diagnostic capabilities and, in turn, improving patient care... Read more