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
GLOBETECH PUBLISHING LLC

Download Mobile App




Image Reconstruction Technology Utilizes GPUs to Speed Up CT Scanner Workflows

By MedImaging staff writers
Posted on 23 Apr 2008
Print article
Advanced image reconstruction technology has recently been developed for the medical imaging, security, and nondestructive testing markets.

Image reconstruction for computed tomography (CT) scanners frequently takes hours of processing time and represents a major obstacle to efficiency for many organizations. The AxRecon system reduces the time required to complete this work from hours to minutes to speed up imaging workflow. Acceleware Corp. (Calgary,AB,Canada), a leading developer of acceleration solution for high-performance computing, developed the system. AxRecon was recently presented at the European Congress of Radiology (ECR) in March 2008, held in Vienna, Austria.

"Our entry into the medical and commercial imaging market space represents a significant growth opportunity for Acceleware, and is consistent with Acceleware's long-term growth strategy to tackle new markets,” said Sean Krakiwsky, CEO of Acceleware. "The benefits of higher throughput and image quality that are already being realized by early customers of AxRecon will help us drive adoption of this product within the broader imaging market.”

The long processing time required for CT image reconstruction limits throughput and quality for companies, clinicians, and researchers. To meet the demands of their workload, these users frequently forfeit image quality to save on processing time. AxRecon works with existing cone beam CT scanners to eliminate the bottleneck by significantly speeding up filtered back projection computations. This enables medical and commercial users to accelerate the reconstruction of their data and improve the quality of their images without disrupting their current workflow.

The AxRecon system combines Acceleware's proprietary software acceleration libraries with the massive parallel processing power of NVIDIA (Santa Clara, CA, USA) graphic processing units (GPUs) to dramatically increase the speed of sophisticated computations. AxRecon integrates with existing CT scanners with minimal setup. By accelerating algorithms such as filtered back-projection image reconstruction, clients are able to increase the speed of their operations and quality of their end results, while reducing the energy use and physical footprint of their high performance computing systems.

"In biomedical micro-computed tomography applications, the volume dimensions of our reconstructions have increased dramatically over the past few years,” said David Holdsworth of Robarts Imaging. "During the same period, scan times have also been reduced; this makes cone-beam CT reconstruction time the bottleneck that limits workflow in some situations. GPU-based reconstruction is a cost-effective solution for this task, and we have found that Acceleware's AxRecon product can provide 3D [three-dimensional] reconstructions up to 50 times faster than a single-CPU [central processing unit].”

Acceleware develops and markets systems that enable software vendors to leverage heterogeneous, multi-core hardware environments without having to rewrite their applications for parallel processing. This acceleration abstraction technology results in end-users achieving significant computing speed-ups and migrating vendor applications from single-core processing to multiple-core CPUs, GPUs or other acceleration products.

Acceleware's third-generation multi-board GPU solutions can accelerate simulation and processing algorithms by over 35 times, reducing data processing from multiple hours to minutes.


Related Links:
Acceleware
New
Gold Member
X-Ray QA Meter
T3 AD Pro
Radiation Therapy Treatment Software Application
Elekta ONE
New
Gold Member
X-Ray QA Meter
T3 RG Pro
New
Wall Fixtures
MRI SERIES

Print article

Channels

MRI

view channel
Image: The AI algorithm analyzes MRI scans to better understand how rectal tumors respond to treatment (Photo courtesy of 123RF)

AI Algorithm Analyzes MRI Scans to Determine Best Rectal Cancer Treatment Strategy

Rectal cancer patients typically follow a standardized treatment protocol that often requires surgery, which carries risks and potential complications, including a reduced quality of life.... Read more

Ultrasound

view channel
Image: The composite hydrogel enables sustained and consistent drug release, triggered by ultrasound (Photo courtesy of Journal of Controlled Release; DOI: 10.1016/j.jconrel.2024.08.001)

Ultrasound-Activated Hydrogel Could Revolutionize Drug Delivery for Medical Applications

Researchers have created a composite hydrogel that enables sustained and consistent drug release, triggered by ultrasound. This breakthrough could transform drug delivery for numerous medical applications... Read more

Nuclear Medicine

view channel
Image: A new biomarker makes it easier to distinguish between Alzheimer’s and primary tauopathy (Photo courtesy of Shutterstock)

Diagnostic Algorithm Distinguishes Between Alzheimer’s and Primary Tauopathy Using PET Scans

Patients often present at university hospitals with diseases so rare and specific that they are scarcely recognized by physicians in private practice. Primary 4-repeat tauopathies are a notable example.... Read more

Industry News

view channel
Image: Focused ultrasound therapy is poised to become an essential tool in every hospital, cancer care center and physician office (Photo courtesy of Arrayus)

Bracco Collaborates with Arrayus on Microbubble-Assisted Focused Ultrasound Therapy for Pancreatic Cancer

Pancreatic cancer remains one of the most difficult cancers to treat due to its dense tissue structure, which limits the effectiveness of traditional drug therapies. Bracco Imaging S.A. (Milan, Italy)... Read more
Copyright © 2000-2024 Globetech Media. All rights reserved.