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




PET Scans Help Change Treatment Options in Majority of Colorectal Cancer Patients

By MedImaging International staff writers
Posted on 13 Oct 2008
A new, powerful imaging tool has been shown to be valuable in detecting recurrence and progression of colorectal disease.

In the largest multi-institutional study to date evaluating the impact of positron emission tomography (PET) imaging in changing disease management of individuals with suspected recurrent colorectal cancer, researchers discovered that treatment plans were changed for more than half of the patients, according to their findings, published in the September 2008 issue of the Journal of Nuclear Medicine (JNM).

The study was conducted at four sites throughout Australia and made up of 191 patients who were divided into two groups. Group A consisted of symptomatic patients who had residual structural lesions suspicious for recurrent tumor after initial therapy. Group B was comprised of patients with pulmonary or hepatic metastases that were potentially operable. These results were compared with findings from conventional imaging (such as computed tomography [CT]), and participants were followed for 12 months.

"Designed with an evidence-based approach, this study confirmed the important role PET plays in the decision-making process of patients with colorectal cancer and the impact of PET on both the management and outcome of disease,” said Andrew M. Scott, M.D., director of the Center for PET and the Ludwig Institute for Cancer Research, Austin Hospital (Melbourne, VIC, Australia). "These results are compelling and indicate that PET should be made more widely available to patients.”

Based on the extent and progression of disease revealed by the scans, treating physicians altered the planned management in more than 65% of patients in group A and almost 50% in group B. The researchers also found additional disease sites in 48% of group A and 44% in group B, providing valuable prognostic information about patients that allowed their stratification into curative or palliative groups.

"PET was able to identify those patients who had potential for long-term, progression-free survival and even a potential cure,” said Dr. Scott. "Just as important, it identified those patients with aggressive disease, enabling them to avoid unnecessary treatment, such as surgery.”

In the United States, imaging results from PET scans have also changed clinicians' decisions in the treatment and care of more than one in three cancer patients, according to data collected by the U.S. National Oncologic PET Registry (NOPR).

The registry, which was formed at the request of the U.S. Centers for Medicare and Medicaid Services (CMS), has found that PET prompted changes in care decisions in 36.5% of patient cases. The study has to date included over 23,000 patients in more than 1,200 PET facilities in the United States.

"These data should encourage molecular imaging practitioners to engage with referring physicians early in the process of cancer treatment,” added Dr. Scott. "It is clear that PET had a significant impact for these patients, and could be an indispensable part of the standards of care for oncologists.”

Related Links:

Ludwig Institute for Cancer Research

Half Apron
Demi
Ultrasound Table
Women’s Ultrasound EA Table
Floor‑Mounted Digital X‑Ray System
MasteRad MX30+
Digital Radiography System
DR-300

Channels

General/Advanced Imaging

view channel
Image: Example snapshots of the photon energy density at t = 0.5, 0.7, 0.9, 1.1 nanoseconds (ns) on the y = 2.0 cm plane (Horie, S., Yajima, H., Abe, M. et al., Biomedical Engineering Letters (2026). DOI: 10.1007/s13534-026-00578-9)

AI Tool Enables Real-Time Diffuse Optical Tomography for Brain Lesion Detection

Diffuse optical tomography is a noninvasive imaging technique that uses near-infrared light to detect internal abnormalities such as cerebral hemorrhage and tumors. Its clinical utility for real-time ... Read more

Industry News

view channel
Image: MIM KineticID is 510(k)-pending software for dynamic PET imaging and kinetic modeling, enabling time-based radiotracer analysis for clinical and research decisions (Photo courtesy of GE Healthcare)

GE HealthCare Showcases AI-Enabled Nuclear Medicine Portfolio at SNMMI 2026

Nuclear medicine is expanding rapidly as health systems adopt theranostics and broaden access to radiopharmaceuticals, increasing demand for scalable operations and consistent diagnostic confidence.... Read more
Copyright © 2000-2026 Globetech Media. All rights reserved.