Advanced 3D Imaging Platform Accelerates Lung Cancer Treatment
By MedImaging International staff writers Posted on 30 Sep 2020 |

Image: The Azurion Lung Edition combines CBCT 3D images with live IGT X-ray guidance (Photo courtesy of Philips)
An advanced 3D imaging and navigation platform supports high precision diagnosis and minimally invasive treatment of lung cancer in one room.
The Royal Philips (Philips; Amsterdam, The Netherlands) Azurion Lung Edition suite combines cone beam computerized tomography (CBCT) 3D images acquired at the tableside with live X-ray guidance and advanced tools to support image-guided lung procedures. The CBCT is used to confirm placement of the biopsy needle during minimally invasive endobronchial biopsies, allowing surgeons to perform lesion ablations during the same procedure.
The Azurion image guided therapy (IGT) system integrates control of imaging, physiology, hemodynamic, and informatics applications, as well as fully automatic, intuitive, position control of the gantry and table, including a wide range of stored parameters. This allows control of all compatible applications from a single touch screen interface, eliminating the need for clinicians to leave the sterile field and step into an adjacent control room, as well as supporting faster and better informed decision making.
“This is a very exciting time in the world of interventional pulmonology and advanced bronchoscopy. One of the things that we’re particularly excited about is being able to diagnose patients, stage their cancer and treat them, all in a single procedure,” said Michael Pritchett, MD, director of the chest center at FirstHealth Moore Regional Hospital (Pinehurst, NC, USA). “As a diagnostic bronchoscopist it’s exciting and rewarding to be able not only to diagnose patients, but to go on to treat them as well.”
“Image-guided minimally invasive procedures continue to expand into new treatment areas, enabled by sophisticated, procedure-oriented solutions like Azurion Lung Edition,” said interventional radiologist Atul Gupta, MD, chief medical officer of Philips IGT. “With lung cancer increasingly being detected at an earlier stage, new minimally invasive treatment strategies like ablation have the potential to significantly improve outcomes for patients.”
During CBCT, the region of interest is centered in the field of view. A single 200 degree rotation acquires a volumetric data set which is used to produce a digital volume composed of 3D voxels of anatomical data that can then be manipulated and visualized. CBCT has only recently become practical with the introduction of large-area high-speed digital X-ray imagers, such as hydrogenated amorphous silicon (a-Si:H) based flat-panel detectors.
The Royal Philips (Philips; Amsterdam, The Netherlands) Azurion Lung Edition suite combines cone beam computerized tomography (CBCT) 3D images acquired at the tableside with live X-ray guidance and advanced tools to support image-guided lung procedures. The CBCT is used to confirm placement of the biopsy needle during minimally invasive endobronchial biopsies, allowing surgeons to perform lesion ablations during the same procedure.
The Azurion image guided therapy (IGT) system integrates control of imaging, physiology, hemodynamic, and informatics applications, as well as fully automatic, intuitive, position control of the gantry and table, including a wide range of stored parameters. This allows control of all compatible applications from a single touch screen interface, eliminating the need for clinicians to leave the sterile field and step into an adjacent control room, as well as supporting faster and better informed decision making.
“This is a very exciting time in the world of interventional pulmonology and advanced bronchoscopy. One of the things that we’re particularly excited about is being able to diagnose patients, stage their cancer and treat them, all in a single procedure,” said Michael Pritchett, MD, director of the chest center at FirstHealth Moore Regional Hospital (Pinehurst, NC, USA). “As a diagnostic bronchoscopist it’s exciting and rewarding to be able not only to diagnose patients, but to go on to treat them as well.”
“Image-guided minimally invasive procedures continue to expand into new treatment areas, enabled by sophisticated, procedure-oriented solutions like Azurion Lung Edition,” said interventional radiologist Atul Gupta, MD, chief medical officer of Philips IGT. “With lung cancer increasingly being detected at an earlier stage, new minimally invasive treatment strategies like ablation have the potential to significantly improve outcomes for patients.”
During CBCT, the region of interest is centered in the field of view. A single 200 degree rotation acquires a volumetric data set which is used to produce a digital volume composed of 3D voxels of anatomical data that can then be manipulated and visualized. CBCT has only recently become practical with the introduction of large-area high-speed digital X-ray imagers, such as hydrogenated amorphous silicon (a-Si:H) based flat-panel detectors.
Latest General/Advanced Imaging News
- AI-Powered Imaging System Improves Lung Cancer Diagnosis
- AI Model Significantly Enhances Low-Dose CT Capabilities
- Ultra-Low Dose CT Aids Pneumonia Diagnosis in Immunocompromised Patients
- AI Reduces CT Lung Cancer Screening Workload by Almost 80%
- Cutting-Edge Technology Combines Light and Sound for Real-Time Stroke Monitoring
- AI System Detects Subtle Changes in Series of Medical Images Over Time
- New CT Scan Technique to Improve Prognosis and Treatments for Head and Neck Cancers
- World’s First Mobile Whole-Body CT Scanner to Provide Diagnostics at POC
- Comprehensive CT Scans Could Identify Atherosclerosis Among Lung Cancer Patients
- AI Improves Detection of Colorectal Cancer on Routine Abdominopelvic CT Scans
- Super-Resolution Technology Enhances Clinical Bone Imaging to Predict Osteoporotic Fracture Risk
- AI-Powered Abdomen Map Enables Early Cancer Detection
- Deep Learning Model Detects Lung Tumors on CT
- AI Predicts Cardiovascular Risk from CT Scans
- Deep Learning Based Algorithms Improve Tumor Detection in PET/CT Scans
- New Technology Provides Coronary Artery Calcification Scoring on Ungated Chest CT Scans
Channels
Radiography
view channel
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 more
AI-Powered Imaging Technique Shows Promise in Evaluating Patients for PCI
Percutaneous coronary intervention (PCI), also known as coronary angioplasty, is a minimally invasive procedure where small metal tubes called stents are inserted into partially blocked coronary arteries... Read moreMRI
view channel
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 more
AI-Powered MRI Technology Improves Parkinson’s Diagnoses
Current research shows that the accuracy of diagnosing Parkinson’s disease typically ranges from 55% to 78% within the first five years of assessment. This is partly due to the similarities shared by Parkinson’s... Read more
Biparametric MRI Combined with AI Enhances Detection of Clinically Significant Prostate Cancer
Artificial intelligence (AI) technologies are transforming the way medical images are analyzed, offering unprecedented capabilities in quantitatively extracting features that go beyond traditional visual... 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 moreNuclear Medicine
view channel
Novel PET Imaging Approach Offers Never-Before-Seen View of Neuroinflammation
COX-2, an enzyme that plays a key role in brain inflammation, can be significantly upregulated by inflammatory stimuli and neuroexcitation. Researchers suggest that COX-2 density in the brain could serve... Read more
Novel Radiotracer Identifies Biomarker for Triple-Negative Breast Cancer
Triple-negative breast cancer (TNBC), which represents 15-20% of all breast cancer cases, is one of the most aggressive subtypes, with a five-year survival rate of about 40%. Due to its significant heterogeneity... 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