Dual and Multi-Energy Computed Tomography Market By Offering (CT Scanner Hardware, Imaging Software & Applications, Upgrades & Retrofit Kits, Services), By Technology (Dual-Source CT, Fast kVp Switching CT, Dual-Layer Detector CT, Photon-Counting CT), By Device Class (Low-slice ≤16, Mid-range 32–128, High-end ≥128, Photon-counting premium systems), By Clinical Application (Oncology, Cardiology, Neurology, Musculoskeletal, Emergency, Others), By End-User (Hospitals, Diagnostic Imaging Centers, Ambulatory Surgical Centers (ASCs), Research Institutes & Academic Centers, Others), Global Market Size, Segmental Analysis, Regional Overview, Company Share Analysis, Leading Company Profiles and Market Forecast, 2025–2035.

Published Date: Sep 2025 | Report ID: MI3631 | 220 Pages


What trends will shape the Dual and Multi-Energy Computed Tomography Market in the coming years?

The Dual and Multi-Energy Computed Tomography Market accounted for USD 987.20 Million in 2024 and USD 1065.39 Million in 2025 is expected to reach USD 2283.11 Million by 2035, growing at a CAGR of around 7.92% between 2025 and 2035. During the next few years, a number of trends are likely to influence the Dual and Multi-Energy Computed Tomography (DECT/MECT) market. An increase in the use of photon-counting CT will result in the improvement of image quality, a reduction in the radiation dose, and better differentiation of the material. AI-based software and more sophisticated spectral reconstruction systems will increase the accuracy of diagnoses and the efficiency of workflow. New upgrades and new installations will be driven by the growing demand in oncology and cardiology imaging.

PACS and remote analysis and teleradiology will be enabled by integration with cloud-based solutions. Hospitals and imaging centers will be keen on retrofitting the current scanners into the spectral capabilities. The emerging markets will grow faster owing to the development of health care facilities. Adoption rates will be impacted by regulatory approvals and reimbursement policies. Lastly, competition among the vendors and the bundled software will encourage innovation and market penetration.

What do industry experts say about the Dual & Multi-Energy Computed Tomography market trends?

“Siemens Healthineers continues to pioneer dual-energy CT technology with solutions like the SOMATOM Pro. Pulse, enabling high-quality imaging even for patients with high or irregular heart rates, reflects our commitment to delivering exceptional imaging solutions across diverse patient populations.”

  • Dr. Bernd Montag, CEO of Siemens Healthineers.

“Innovation in medical imaging is central to GE HealthCare. With systems like the Revolution™ Vibe CT, we provide consistent, high-quality cardiac imaging even in challenging conditions, enhancing diagnostic capabilities through advanced CT technologies.”

  • “Peter J. Arduini, CEO of GE HealthCare.

Which segments and geographies does the report analyze?

ParameterDetails
Largest MarketNorth America
Fastest Growing MarketAsia Pacific
Base Year2024
Market Size in 2024USD 987.20 Million
CAGR (2025-2035)7.92%
Forecast Years2025-2035
Historical Data2018-2024
Market Size in 2035USD 2283.11 Million
Countries CoveredU.S., Canada, Mexico, U.K., Germany, France, Italy, Spain, Switzerland, Sweden, Finland, Netherlands, Poland, Russia, China, India, Australia, Japan, South Korea, Singapore, Indonesia, Malaysia, Philippines, Brazil, Argentina, GCC Countries, and South Africa
What We CoverMarket growth drivers, restraints, opportunities, Porter’s five forces analysis, PESTLE analysis, value chain analysis, regulatory landscape, pricing analysis by segments and region, company Market share analysis, and 10 companies.
Segments CoveredOffering, Technology, Device Class, Clinical Application, End User, and Region

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What are the key drivers and challenges shaping the Dual & Multi-Energy Computed Tomography market?

How is growing oncology imaging demand accelerating the adoption of dual-energy computed tomography systems globally?

The increasing utilization of oncology imaging is driving the global shift towards dual- and multi-energy computed tomography (CT) systems because these new technologies deliver more accurate tumor characterization and superior treatment planning. The use of dual-energy CT allows tracking therapeutic reaction more effectively with a high quality of tissue distinction and material fragmentation, which highlights malignancies at the earliest stage. Timely detection and proper staging play a key role in oncology to enable proper treatment mechanisms, and as such, hospitals and imaging centers are adopting such systems. The aspect of dual- and multi-energy CT integration can be said to be in line with personalized medicine, which enables the individualization of the treatment in accordance with complete imaging information.

The increasing cancer rates in the world further highlight the importance of the development of imaging technologies in clinical practice. The investments in healthcare and the constant technological improvement contribute to the further increase of these systems. The need to have greater diagnostic accuracy and better patient outcomes of oncology care also drives the adoption. Dual-energy CT helps radiologists to distinguish more complex tissue structures and increase confidence in the diagnosis. Moreover, AI and sophisticated software can be combined with CT systems to streamline the workflows and clinical decisions. Altogether, the increasing demand in oncology imaging is a leading force behind the worldwide growth of the dual- and multi-energy computed tomography market.

In what ways does AI integration improve diagnostic accuracy and workflow efficiency in hospitals?

Artificial Intelligence (AI) integration into the Dual and Multi-Energy Computed Tomography Market is positively influencing the market by enhancing the precision of the diagnosis and the efficiency of the working process in hospitals. AI algorithms are highly precise when analyzing medical images and detecting trends and anomalies that even a regular clinician could not observe. This leads to proper and timely diagnosis, especially those that are intricate oncology, cardiology, and neurology cases. Radiologists can also use AI to analyze CT scans, MRI images, and X-rays, which can reduce the risk of error and boost clinical confidence.

Besides diagnostics, AI makes management, including scheduling, patient data, and billing, easier, which allows healthcare specialists to pay more focus to patients. Automation of the routine processes helps in the reduction of cognitive workload, thereby reducing burnout and improving job satisfaction among clinicians. Another advantage of AI is that it allows planning treatment on a case-by-case basis, as a significant amount of patient data is processed to create a customized intervention. Patient outcomes, complications, as well as resource allocation and hospital efficiency can be predicted with the help of artificial intelligence (AI). Training and decision-making of junior clinicians is also supported by the integration of AI to give real-time insights. Altogether, the use of AI in dual- and multi-energy CT systems contributes to the improvement of quality care and efficiency in the work of modern healthcare organizations.

What impact do high acquisition and maintenance costs have on the widespread deployment of DECT scanners?

The Dual and Multi-Energy Computed Tomography Market is also limited in its wide adoption because of the high costs of acquisition and maintenance of the DECT scanners. The cost of these systems is quite expensive upfront, and hence, small hospitals and diagnostic centers find it hard to acquire these systems. Maintenance and calibration are also expensive and will increase the overall cost of ownership in the long term. The high operational cost may discourage the use of these advanced imaging systems in the emerging markets by healthcare providers.

Instead, a lack of funds might prompt institutions to use the old single-energy CT scanners instead. The technology is also complicated, which requires special personnel training, raising indirect costs. Some areas have limited insurance reimbursement on advanced CT procedures, which is an additional discouragement. Smaller clinics might prefer to use cheaper alternatives to the high-end dual-energy systems. This has limited market penetration in the low- and middle-income areas. Although technology is beneficial, the cost is a major obstacle to the implementation and availability of DECT scanners in many countries around the world.

How can the adoption of emerging markets drive significant growth for dual and multi-energy CT systems?

The Dual and Multi-Energy Computed Tomography Market has a massive growth potential by virtue of the fact that more people are adopting it in the emerging market, where the sophisticated imaging technology is revolutionizing the provision of healthcare. These systems also offer greater diagnostic solutions, which facilitate the early detection and proper characterization of various diseases like cancer and cardiovascular disorders. Deployment of DECT systems in developing nations enhances patient care because more accurate and timely diagnoses are provided.

The National Institutes of Health state that the imaging diagnostic process of patients aged 65 and above is performed more than twice as frequently as in younger patients, which speaks to the increasing demand. The adoption in these areas is also developing local expertise and training programs, as well as creating trained radiology workers. The investments by the government and the private sector are also hastening the use of these technologies in hospitals and diagnostic centers. Clinical and operational advantages of the DECT systems continue to be appreciated by healthcare providers in the emerging markets. Dual- and multi-energy CT provides advantages to the workflow and diagnostic accuracy that enable improved management of the patient. Market growth is largely due to the continuous technological changes and the increased knowledge of healthcare. All in all, DECT penetration in the emerging markets is a crucial aspect that contributes to the overall scene in the global market and enhances worldwide healthcare accessibility.

What potential exists for software upgrades enhancing existing single-energy CT scanners to spectral capabilities?

The dual- and multi-energy computed tomography market is fruitful due to the opportunities of the software upgrade turning the current single-energy CT scanners into spectral imaging systems, allowing the use of a single-energy CT scanner as a more cost-effective variant of the more advanced diagnostics. These software advancements take advantage of deep learning algorithms and artificial intelligence to emulate dual-energy imaging to enable the differentiation of tissues and materials by their atomic composition. The virtual monochromatic images, effective atomic number maps, and relative electron density maps can be produced by hospitals without the need to purchase new, costly hardware. These improvements ensure spectral imaging is more affordable to facilities with limited budgets, particularly in the emerging markets.

These solutions increase the accuracy of the diagnosis and help in personalized treatment planning by improving the quality of the available scanners. They also facilitate the identification of latent pathologies, especially in oncology, cardiology, and musculoskeletal imaging. The computer upgrades improve the workflow because they can shorten scan times, and repeat imaging is minimized. They also allow clinicians to make the most out of the existing infrastructure and embrace the new innovative imaging methods. The developments add to better patient results and clinical decision-making. In sum, computerized upgrades are a viable and cost-effective measure to enhance the use of dual- and multi-energy CT in the world.

What are the key market segments in the Dual & Multi-Energy Computed Tomography industry?

Based on the component, the Dual and Multi-Energy Computed Tomography Market is classified into CT Scanner Hardware, Imaging Software & Applications, Upgrades & Retrofit Kits, and Services. CT scanner hardware encompasses high-performance, high-quality imaging equipment and devices such as the dual-energy and multifarious-energy systems that offer higher quality and accuracy in the imaging results. Software & Applications Imaging software solutions concentrate on spectral reconstruction, decomposition of materials, iodine mapping, and analytics through AI in order to enhance the efficiency of the workflow.

Market Summary Dashboard

Market Summary Dashboard

 

Upgrades & Retrofit Kits enable healthcare facilities to upgrade and improve the existing single-energy CT scanners to multi-energy without having to replace the entire system. Services include installation, maintenance, training, and support in order to have the best system functioning. All these elements are contributing forces towards adoption in hospitals, diagnostic imaging centers, and research centers. All of them are essential elements to extend clinical use, including oncology and cardiology, neurology, and emergency imaging. Their united efforts are involved in the development, innovation, and improvement of the global dual- and multi-energy computed tomography market.

Based on the clinical application, the Dual and Multi-Energy Computed Tomography Market is classified into Oncology, Cardiology, Neurology, Musculoskeletal, Emergency, and Others. These systems in oncology assist in detecting tumors accurately, staging them, and monitoring treatment. They allow for accurately assessing the coronary arteries, the composition of the plaque, and myocardial perfusion in cardiology.

The neurology applications are geared towards detecting strokes, assessing brain hemorrhage, and enhancing neuroimaging diagnostics. Bone, joint, and soft tissue assessment, along with the identification of crystalline arthropathies, are other musculoskeletal applications. The emergency applications can be used to diagnose trauma, internal bleeding, and critical conditions quickly. The other segment includes urology, pulmonary imaging, and other special diagnostic requirements. In general, clinical application segmentation will promote the development of the dual- and multi-energy CT use in different healthcare facilities. These applications increase the accuracy of diagnoses, patient outcomes, and clinical workflow speed on a global scale.

Which regions are leading the Dual & Multi-Energy Computed Tomography market, and why?

The North America Dual and Multi-Energy Computed Tomography Market is leading due to the presence of a well-developed healthcare system and the popularity of new imaging technology. The United States is at the top of the region, as it has made a lot of investments in the modernization of hospitals and the increasing demand for correct/efficient diagnostic solutions in oncology and cardiology. Canada plays its role in increasing healthcare spending and building specialized imaging facilities. Market growth is further supported by the strong presence of key players in the market, such as Siemens Healthineers, GE HealthCare, and Philips Healthcare.

Reimbursement policies and regulation schemes should be favorable to ensure that dual- and multi-energy CTs are implemented quickly. Demand is also increased because of more awareness of the benefits of early disease detection and preventive health care. Moreover, spectral CT and AI integration research and development improve clinical functions. Altogether, North America is a leader in this area, where technological progress, strategic alliances, and strong healthcare expenditure are all combined in order to stimulate market growth.

The Asia Pacific Dual and Multi-Energy Computed Tomography Market is growing due to the booming growth of the healthcare infrastructure and increased medical tourism. China, India, and Japan are experiencing the emergence of the use of modern imaging systems in hospitals and diagnostic centers. Increasing the presence of chronic illnesses, such as cancer and heart diseases, leads to the need to diagnose with precision and early. The increase in government spending on healthcare modernization and positive reimbursement programs only provides more fuel for the growth of the market.

The growth of the private healthcare industry and specialty imaging centers favors the purchase of dual- and multi-energy CT devices. Also, the penetration of technology is boosted by the presence of international competitors, including Siemens Healthineers, GE HealthCare, and Philips Healthcare. Prevention, healthcare awareness, and routine screening programs are increasing the use of the system. In general, the Asia-Pacific is a market with high potential and good CAGR, which is propelled by the growth of infrastructure and rising healthcare awareness.

What does the competitive landscape of the Dual & Multi-Energy Computed Tomography market look like?

Dual- and multi-energy computed tomography is a very competitive market, with Siemens Healthineers, GE HealthCare, Philips Healthcare, and Canon Medical Systems being the worldwide market leaders. These businesses are constantly engaging in research and development to improve the quality of images, minimize radiation, and bring in artificial intelligence to produce improved diagnostic results. Product differentiation is being driven by innovation in dual-source, rapid switching-kVp, dual-layer detector, and new photon-counting technologies. They are usually strategic collaborations, acquisitions, and alliances as part of the geographic expansion and product portfolio. Siemens Healthineers has recently introduced its AI-based CT 5300 in India, providing high-quality imaging solutions to a wide range of clinical needs.

GE HealthCare has launched the Revolution Ascend platform with spectral imaging and a quick switching of kV to maximize scan efficiency. Smaller players and regional manufacturers make a contribution to the market with their cost-effective solutions. Regulatory approvals and good reimbursement policies determine the adoption rates in hospitals and diagnostic centers. Increased competition is also caused by increasing demand in specific cancer diagnostics, heart diagnostics, and emergency diagnostics. In general, the competition in the global market of DECT/MECT is predetermined by continuous innovations, strategic projects, and the utilization of the latest technologies.

Dual and Multi-Energy Computed Tomography Market, Company Shares Analysis, 2024

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Which recent mergers, acquisitions, or product launches are shaping the Dual & Multi-Energy Computed Tomography industry?

  • In August 2025, the National Institutes of Health (NIH) awarded the UC Davis Department of Radiology a $2.5 million, four-year Research Project Grant (R01) to develop and advance PET-enabled dual-energy CT. This hybrid imaging technology aims to combine positron emission tomography (PET)'s metabolic insights with computed tomography (CT)'s anatomical detail and material-specific imaging to improve the detection and understanding of cancers, bone, and heart diseases. 
  • In January 2025, Philips officially launched its AI-enabled CT 5300 in India at the 23rd Asian Oceanian Congress of Radiology (AOCR) held in Chennai. The system features advanced AI capabilities, a nano-panel detector, and is designed for various clinical applications, including cardiology, oncology, neurology, and emergency care. The AI-driven features enhance diagnostic confidence, improve workflow efficiency, and aim to increase diagnostic accuracy and reduce radiation dosage. 

Report Coverage:

By Offering

  • CT Scanner Hardware
  • Imaging Software & Applications
  • Upgrades & Retrofit Kits
  • Services

By Technology

  • Dual-Source CT
  • Fast kVp Switching CT
  • Dual-Layer Detector CT
  • Photon-Counting CT

By Device Class

  • Low-slice (≤16)
  • Mid-range (32–128)
  • High-end (≥128)
  • Photon-counting premium systems

By Clinical Application

  • Oncology
  • Cardiology
  • Neurology
  • Musculoskeletal
  • Emergency
  • Others

By End-User

  • Hospitals
  • Diagnostic Imaging Centers
  • Ambulatory Surgical Centers (ASCs)
  • Research Institutes & Academic Centers
  • Others

By Region

North America

  • U.S.
  • Canada

Europe

  • U.K.
  • France
  • Germany
  • Italy
  • Spain
  • Rest of Europe

Asia Pacific

  • China
  • Japan
  • India
  • Australia
  • South Korea
  • Singapore
  • Rest of Asia Pacific

Latin America

  • Brazil
  • Argentina
  • Mexico
  • Rest of Latin America

Middle East & Africa

  • GCC Countries
  • South Africa
  • Rest of Middle East & Africa

List of Companies:

  • Siemens Healthineers AG
  • GE HealthCare
  • Philips Healthcare NV
  • Canon Medical Systems Corporation
  • Hitachi Medical Systems Co., Ltd.
  • Toshiba Medical Systems Corporation
  • Shimadzu Corporation
  • Carestream Health, Inc.
  • Fujifilm Holdings Corporation
  • Samsung Medison Co., Ltd.
  • NeuroLogica Corporation
  • Hologic, Inc.
  • Planmeca Oy
  • Konica Minolta, Inc.
  • Varian Medical Systems, Inc.

Frequently Asked Questions (FAQs)

The Dual and Multi-Energy Computed Tomography Market accounted for USD 987.20 Million in 2024 and USD 1065.39 Million in 2025 is expected to reach USD 2283.11 Million by 2035, growing at a CAGR of around 7.92% between 2025 and 2035.

Key growth opportunities in the Dual and Multi-Energy Computed Tomography Market include emerging markets adoption, which drives substantial growth by increasing accessibility and demand for advanced CT systems, software upgrades enable existing single-energy CT scanners to achieve full spectral imaging capabilities efficiently, and AI-enabled predictive analytics expands clinical applications, improving diagnostics, workflow efficiency, and patient outcomes globally.

CT Scanner Hardware is the largest, while AI-enabled Imaging Software & Photon-Counting CT are the fastest-growing segments globally.

North America leads in market share, while Asia-Pacific is the fastest-growing region for the Dual and Multi-Energy Computed Tomography Market.

Key operating players in the Dual and Multi-Energy Computed Tomography Market are Siemens Healthineers, GE HealthCare, Philips Healthcare, Canon Medical Systems, and Hitachi Medical Systems.

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