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Global Radiation Dose Management Market Size By Type Of Solution, By Deployment Mode, By Service Type, By Geographic Scope And Forecast


Published on: 2024-08-02 | No of Pages : 320 | Industry : latest updates trending Report

Publisher : MIR | Format : PDF&Excel

Global Radiation Dose Management Market Size By Type Of Solution, By Deployment Mode, By Service Type, By Geographic Scope And Forecast

Radiation Dose Management Market Size And Forecast

Radiation Dose Management Market size was valued at USD 286.94 Million in 2023 and is projected to reach USD 973.64 Million by 2030, growing at a CAGR of 16.50% during the forecast period 2024-2031.

Global Radiation Dose Management Market Drivers

The market drivers for the Radiation Dose Management Market can be influenced by various factors. These may include

  • Regulatory Compliance and Standards The monitoring and management of radiation doses is required by strict regulations and standards from healthcare authorities and regulatory agencies, such as the European Commission and the FDA in the United States. Radiation dose management technologies are adopted primarily in response to compliance with these criteria.
  • Growing Use of Diagnostic Imaging There is an increase in ionising radiation exposure due to the growing use of diagnostic imaging methods like CT scans, X-rays, and nuclear medicine. Radiation dose management solutions are in high demand since it’s necessary to monitor and control radiation doses in order to reduce exposure and guarantee patient safety.
  • Growing Awareness of Radiation Safety The possible hazards of radiation exposure are becoming more widely known to patients, regulatory bodies, and healthcare professionals. In order to guarantee radiation safety and safeguard patients and healthcare personnel, this knowledge motivates the implementation of dose management systems.
  • Technological Developments in Imaging Modalities If radiation doses are not appropriately controlled, advances in imaging technology, such as digital radiography and high-resolution CT scans, can result in increased radiation exposure. The optimisation of radiation doses while maintaining image quality is made possible by technological developments in dose management software and technology.
  • Prioritise Patient Safety and High-Quality Care Medical facilities place a high priority on patient safety and high-quality care. As a result, radiation dose control systems are used to reduce needless radiation exposure and enhance diagnostic precision. This emphasis is in line with larger programmes aimed at improving the quality of healthcare.
  • Hospital Certification and Accreditation Requirements Healthcare institutions are frequently required to have radiation dose monitoring and management systems in place by accrediting agencies, such as The Joint Commission in the United States. Radiation dose management methods are adopted primarily to meet these needs.
  • Data Analytics and Reporting Capabilities Healthcare practitioners may track, analyse, and compare radiation doses across various modalities and institutions with the help of advanced radiation dose management tools, which include data analytics, reporting, and benchmarking capabilities. Both regulatory compliance and ongoing improvement are supported by these capabilities.
  • Integration with Health Information Systems By streamlining processes and improving data accessibility, the integration of radiation dose management technologies with electronic health records (EHRs), picture archiving and communication systems (PACS), and radiology information systems (RIS) encourages adoption in healthcare facilities.
  • Radiation Safety Initiatives and Programmes Best practices for radiation dose optimisation are promoted by both national and international radiation safety initiatives, such as the Image Wisely and Image Gently campaigns. Healthcare providers are encouraged to use dosage management systems by these programmes.
  • Growing Rate of Cancer and Other Chronic Diseases Regular diagnostic imaging is required for early detection, treatment planning, and monitoring due to the rising rate of cancer and other chronic diseases. The demand for dose management technologies is driven by the need to control the cumulative radiation exposure of these patients.

Global Radiation Dose Management Market Restraints

Several factors can act as restraints or challenges for the Radiation Dose Management Market. These may include

  • High Implementation expenses The initial expenses of implementing radiation dose management systems are high and include the purchase of hardware and software as well as the integration of these systems with already-existing hospital and radiology information systems. Expensive prices may be a deterrent, particularly for smaller medical facilities with tighter funds.
  • Complicated Integration Processes It can be difficult and time-consuming to integrate radiation dose management systems with the current healthcare IT infrastructure, which includes Electronic Health Records (EHR), Radiology Information Systems (RIS), and Picture Archiving and Communication Systems (PACS). Compatibility problems and the requirement for customisation may make things more difficult.
  • Lack of Knowledge and Training Administrators and healthcare professionals frequently lack knowledge regarding the advantages and significance of radiation dose management. Furthermore, opposition to embracing new technology might impede deployment, and staff members would need training in order to use these systems efficiently.
  • Standards and Regulatory Compliance It might be difficult to follow the many national and international laws and guidelines pertaining to radiation dosage management. These include directives from agencies such as the International Commission on Radiological Protection (ICRP) and laws such as the Basic Safety Standards Directive of the European Union. It can take a lot of resources to comply with these regulations.
  • Data Security and Privacy IssuesOne of the most important aspects of radiation dose management is handling and safeguarding patient data. More complexity and expense are added when ensuring adherence to data privacy laws, such as HIPAA in the US and GDPR in Europe.
  • Variability in Radiation dosage regulations varying nations and areas have varying radiation dosage recommendations and regulations. For international healthcare providers and manufacturers, this lack of standardisation might make the deployment of dosage control systems more difficult.
  • Tight Budget Restrictions Tight budgets are a problem for many healthcare facilities, particularly in underdeveloped nations. It might be challenging to allocate money for radiation dose management systems when there are conflicting demands, like expanding or buying new medical equipment.
  • Restricted Reimbursement regulations Radiation dose management techniques may have restricted or nonexistent reimbursement regulations in some areas. Healthcare facilities may be dissuaded from investing in these systems if there are no financial incentives.
  • Technical Difficulties and System Performance Radiation dose management systems’ dependability and efficacy may be impacted by technical difficulties such software bugs, downtime, and system performance problems. Gaining user trust and acceptance requires minimising technical difficulties and ensuring solid performance.
  • Absence of Standardised Protocols Inconsistent practices may result from a lack of standardised protocols for managing radiation doses across various modalities and institutions. The creation and implementation of standardised procedures are necessary for efficient dose administration and cross-facility comparison of dose data.

 

Global Radiation Dose Management Market Segmentation Analysis

The Global Radiation Dose Management Market is Segmented on the basis of Type of Solution, Deployment Mode, Service Type, and Geography.

Radiation Dose Management Market, By Product Type

  • Radiation Dose Management Solutions Software solutions designed to monitor, track, and manage radiation exposure to patients and healthcare staff.
  • Radiation Dose Management Services Services including implementation, training, consulting, and support related to radiation dose management systems.

Radiation Dose Management Market, By Component

  • Software Includes standalone dose management software, integrated dose management software, and cloud-based solutions for tracking and managing radiation doses.
  • Hardware Includes dosimeters, badge readers, and other hardware devices used in conjunction with software to monitor radiation exposure levels.

Radiation Dose Management Market, By Application

  • Patient Dose Tracking Monitoring and managing radiation doses received by patients during diagnostic and therapeutic procedures.
  • Staff Dose Tracking Monitoring and managing radiation exposure levels for healthcare workers who are regularly exposed to radiation.
  • Image Quality Optimization Ensuring that the lowest possible radiation dose is used to achieve optimal image quality.
  • Regulatory Compliance Helping healthcare providers comply with regulations and guidelines related to radiation safety and dose limits.

Radiation Dose Management Market, By Geography

  • North America Market conditions and demand in the United States, Canada, and Mexico.
  • Europe Analysis of the Radiation Dose Management Market in European countries.
  • Asia-Pacific Focusing on countries like China, India, Japan, South Korea, and others.
  • Middle East and Africa Examining market dynamics in the Middle East and African regions.
  • Latin America Covering market trends and developments in countries across Latin America.

Key Players

The major players in the Radiation Dose Management Market are

  • Canon Medical Systems Corporation
  • Guerbet
  • INFINITT Healthcare Co. Ltd.
  • Koninklijke Philips N.V.
  • Landauer
  • Bayer AG
  • GE Healthcare
  • Pacshealth LLC
  • Sectra AB Corporation
  • Novarad Corporation
  • Bracco Imaging S.P.A

Report Scope

REPORT ATTRIBUTESDETAILS
STUDY PERIOD

2020-2030

BASE YEAR

2023

FORECAST PERIOD

2024-2030

HISTORICAL PERIOD

2020-2022

UNIT

Value (USD Million)

KEY COMPANIES PROFILED

Canon Medical Systems Corporation, Guerbet, INFINITT Healthcare Co. Ltd., Koninklijke Philips N.V., Landauer, GE Healthcare, Pacshealth LLC, Sectra AB Corporation, Novarad Corporation.

SEGMENTS COVERED

By Type of Solution, By Deployment Mode, By Service Type, and By Geography.

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