Coverage: Type (Product and Services), Application (Breast Cancer, Lung Cancer, Gastrointestinal Cancer, Prostrate Cancer, Gynecological Cancers, Head and Neck Cancer, and Others), Imaging Type (Magnetic Resonance Imaging (MRI), Positron Emission Tomography, Computed Tomography Imaging, and Others), End Users (Hospitals, Oncology Centers, and Radiotherapy Centers), and Geography (North America, Europe, Asia Pacific, South & Central America, and Middle East & Africa)
According to our new research study on “Image Guided Radiotherapy Market Forecast to 2030 – Global Analysis – by Type, Application, Imaging Type, and End User,” the market was valued at US$ 1,814.25 million in 2022 and is projected to reach US$ 5,650.72 million by 2030; it is estimated to register a CAGR of 15.3% during 2022–2030. The market’s growth is due to the rising prevalence of cancer worldwide and the introduction of technologically advanced systems. Further, cancer screening programs and the implementation of standard guidelines are expected to provide growth opportunities for the market growth. However, the high cost of image-guided radiotherapy treatment will hinder market growth.
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Health systems across the globe are witnessing a substantial increase in the prevalence of cancer. According to the World Health Organization (WHO), in 2019, ~9.6 million deaths were due to cancer across the globe. According to the same source, colorectal, liver, prostate, lung, and stomach cancer are most observed in men, while breast, colorectal, and cervical cancer are the most common among women.
Introduction of Technologically Advanced Systems Fuels Image-Guided Radiotherapy Market Growth
Imaging is a fundamental part of the diagnostic process. From ultrasounds to MRIs and CT scans, radiologists use medical imaging to diagnose and treat diseases properly. Also, doctors use imaging technologies to determine whether a particular therapy has effectively treated a patient. Over the past couple of decades, the capabilities of imaging have radically increased. Numerous advancements in imaging technologies have occurred. This progress is important in providing accurate diagnoses and bettering patient care. These advancements and the power of AI and digital technology raise better procedural efficiency in providing and accomplishing patient care. Artificial intelligence (AI) helps improve various parts of the healthcare industry, medical imaging technology being one of the fields benefiting greatly. AI is being used in advanced imaging devices, which can help detect diseases earlier and guide them during diagnosis and early treatment.
In August 2021, Manipal Hospitals, India’s second largest multi-specialty hospital, launched an advanced Radixact system equipped with Synchrony Automatic, real-time motion synchronization technology for precisely treating cancer patients. Philips expanded the company’s mobile C-arm portfolio through Zenition 10 in 2023. In 2023, GE Healthcare expanded PET/MR capabilities with AIR technologies to improve diagnostic precision, treatment evaluation, and patient comfort. In 2023, the launch of Pixxoscan expanded GE Healthcare’s MRI contrast agent portfolio. In February 2022, the Department of Radiation Oncology at Max Institute of Cancer Care (MICC), Saket, India, launched Radixact X9 Tomotherapy, combined with the 2nd Generation Synchronized Respiratory Motion Management System. This radiation therapy treatment for cancer patients uses artificial intelligence (AI)-based real-time tracking and treatment delivery to ensure that the tumor is not missed due to chest or abdominal breathing movement during radiation treatment. In September 2021, SkinCure Oncology announced positive clinical trial results, demonstrating positive data (99.3% cure rate) for image-guided superficial radiotherapy (IGSRT) in the treatment of basal cell carcinoma (BCC) and squamous cell carcinoma (SCC). Therefore, such technological advancements are expected to drive the growth of the image-guided radiotherapy market.
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