市场调查报告书
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2030 年辐射剂量计市场预测:按产品类型、应用和地区分類的全球分析Radiation Dosimeter Market Forecasts to 2030 - Global Analysis By Product Type (TLD, MOSFET Dosimeters, EPDs and Other Product Types), Type, Application and By Geography |
根据 Stratistics MRC 的数据,2023 年全球辐射剂量计市场规模为 23 亿美元,预计在预测期内将以 8.1% 的复合年增长率成长,到 2030 年达到 39 亿美元。
辐射剂量计市场涵盖涉及测量和监测电离辐射暴露的设备的开发、生产和分销的行业。这些剂量计在确保核能设施、医疗场所、工业场所和实验室等存在辐射的环境中工作人员的安全方面发挥着重要作用。这些剂量计可用于职业辐射监测,以保护在辐射暴露有潜在风险的核能设施、医疗保健和工业环境中工作的人员的安全。
根据国际癌症研究机构的数据,2020年全球新诊断癌症人数为19,292,789人,同年死亡人数为9,958,133人。
提高辐射安全意识
随着工业越来越多地在各种应用中使用电离辐射,人们越来越意识到与长期或过度暴露相关的潜在健康风险。有关职业安全的严格法规和准则,特别是在核能发电、医疗保健和製造等领域,强调了有效辐射监测的必要性。雇主、监管机构和工人的意识不断增强,推动了对辐射剂量计的需求。此外,这些剂量计还提供辐射暴露的即时或定期测量,使个人能够主动管理和限制暴露水平。
先进剂量测定技术高成本
虽然电子个人剂量计 (EPD) 和即时监测系统等先进技术提供了更先进的功能和性能,但其采用可能会因所需的高额前期投资而受到阻碍。特别是对于规模较小的组织或预算有限的组织来说,成本挑战限制了最先进的辐射监测解决方案的实施。然而,持续校准、维护和软体更新的成本增加了财务负担。
在医学影像和治疗中越来越多地使用电离辐射
随着 X 光和电脑断层扫描等诊断影像的普及,以及放射治疗在癌症治疗中的广泛使用,对准确监测辐射暴露的需求不断增加。医疗保健专业人员,包括放射科医生、放射技术专家和放射肿瘤学家,依靠剂量计来确保准确提供治疗剂量并监测自己的职业暴露。此外,随着医疗技术的进步和更先进的放射治疗的出现,对可靠的剂量测定解决方案的需求持续增长。
缺乏熟练人才
正确使用和解释剂量测定资料需要辐射安全和监测方面的专业知识。在一些地区和行业,缺乏接受过剂量学培训的合格专业人员可能会阻碍辐射监测计画的有效实施和管理。熟练的人员对于校准剂量计、分析资料和准确评估暴露剂量至关重要。缺乏训练有素的人员可能会导致剂量测定技术的利用不足并损害职场安全标准。
对医学影像和放射治疗的需求不断增长,特别是对呼吸系统疾病的诊断和治疗,这增加了医疗机构对辐射剂量计的需求。医疗保健活动的激增对市场产生了积极影响。全球供应链的中断、非必要活动的限制以及经济的不确定性正在影响其他行业辐射剂量计的製造、分销和部署。封锁期间对远距工作的重视和工业活动的减少可能会暂时推迟剂量计解决方案在某些行业的实施。
在预测期内,EPD(电子个人剂量计)领域预计将是最大的。
由于其先进的功能和技术能力,EPD(电子个人剂量计)领域预计将在预测期内占据市场的最大份额。 EPD 提供即时监测、即时剂量显示和使用者友善的介面,与传统剂量计相比,提供更动态、更灵敏的解决方案。此外,紧凑且可穿戴的设计增加了使用者的便利性和舒适度,使其特别适合医疗保健、核能和工业环境中的应用。
预计袖珍剂量计细分市场在预测期内复合年增长率最高。
由于紧凑的设计、便携性和成本效益,袖珍剂量计领域预计将在预测期内实现盈利增长。这些剂量计为在可能暴露于辐射的环境中工作的人员(例如医疗保健专业人员、核能工作人员和紧急人员)提供了方便实用的解决方案。袖珍剂量计易于携带,因此即使外出也可以连续测量辐射剂量,并且可以快速评估辐射计量。简单可靠的袖珍剂量计非常适合各种行业的日常使用。
在可行期间,亚太地区占据最大的市场份额。中国、印度和韩国等国家工业活动的增加、都市化的快速发展以及核能发电电的扩大正在推动对辐射剂量计的需求,以确保工人和公众的安全。此外,该地区辐射风险意识的提高和法律规范的收紧正在推动剂量计解决方案在医疗保健和製造业等各个行业的采用。
由于人们对职业安全和公共卫生的担忧日益增加,以及对潜在辐射危害的认识不断提高,推动了对辐射剂量计作为合规重要工具的需求,亚太地区的盈利在预测期内将继续增长。它将实现高性生长。该地区各国政府正积极执行规定使用剂量计的法规,并培养辐射安全和降低风险的文化。
According to Stratistics MRC, the Global Radiation Dosimeter Market is accounted for $2.3 billion in 2023 and is expected to reach $3.9 billion by 2030 growing at a CAGR of 8.1% during the forecast period. The radiation dosimeter market encompasses the industry involved in the development, production, and distribution of devices designed to measure and monitor exposure to ionizing radiation. These dosimeters play a critical role in ensuring the safety of individuals working in environments where radiation is present, such as nuclear facilities, medical settings, industrial sites, and research laboratories. These dosimeters are instrumental in occupational radiation monitoring, safeguarding workers in nuclear facilities, healthcare, and industrial environments, where exposure to radiation is a potential risk.
According to the International Agency for Research on Cancer in 2020, globally 19,292,789 new cancer cases were diagnosed with 9,958,133 deaths in the same year.
Rising awareness of radiation safety
As industries increasingly utilize ionizing radiation in various applications, there is a growing recognition of the potential health risks associated with prolonged or excessive exposure. Stringent regulations and guidelines governing occupational safety, particularly in sectors like nuclear power, healthcare, and manufacturing, emphasize the need for effective radiation monitoring. This heightened awareness among employers, regulatory bodies, and workers fuels the demand for radiation dosimeters. Additionally, these dosimeters provide real-time or periodic measurements of radiation exposure, empowering individuals to actively manage and limit their exposure levels.
High Cost of advanced dosimetry technologies
While these advanced technologies, such as electronic personal dosimeters (EPDs) and real-time monitoring systems, offer enhanced features and capabilities, their adoption can be hindered by the substantial upfront investment required. The cost implications pose challenges, especially for smaller organizations or those operating on limited budgets, limiting their ability to deploy state-of-the-art radiation monitoring solutions. However, the expense associated with ongoing calibration, maintenance, and software updates further contributes to the financial burden.
Growing use of ionizing radiation in medical imaging and therapy
With the increasing prevalence of diagnostic imaging procedures like X-rays and CT scans, as well as the expanding applications of radiation therapy in cancer treatment, there is a heightened demand for accurate monitoring of radiation exposure. Healthcare professionals, including radiologists, radiologic technologists, and radiation oncologists, rely on dosimeters to ensure precise delivery of therapeutic doses and to monitor their own occupational exposure. Moreover, as medical technology advances and more sophisticated radiation-based treatments emerge, the demand for reliable dosimetry solutions intensifies.
Limited availability of skilled personnel
The proper use and interpretation of dosimetry data require expertise in radiation safety and monitoring. In some regions or industries, a shortage of qualified professionals trained in dosimetry practices can hinder the effective implementation and management of radiation monitoring programs. Skilled personnel are essential for calibrating dosimeters, analyzing data, and providing accurate assessments of radiation exposure. The shortage of trained individuals may result in inadequate utilization of dosimetry technologies, potentially compromising workplace safety standards.
The increased demand for medical imaging and radiation therapy, especially in the diagnosis and treatment of respiratory illnesses, has driven the need for radiation dosimeters in healthcare settings. The surge in healthcare activities has positively influenced the market. Disruptions in the global supply chain, restrictions on non-essential activities, and economic uncertainties have affected the manufacturing, distribution, and adoption of radiation dosimeters across other industries. The emphasis on remote work and decreased industrial activities during lockdowns might have temporarily slowed the implementation of dosimetry solutions in certain sectors.
The EPDs (Electronic Personal Dosimeters) segment is expected to be the largest during the forecast period
EPDs (Electronic Personal Dosimeters) segment is expected to hold the largest share of the market throughout the projection period due to their advanced features and technological capabilities. EPDs offer real-time monitoring, immediate dose readouts, and user-friendly interfaces, providing a more dynamic and responsive solution compared to traditional dosimeters. Furthermore, their compact and wearable design enhances user convenience and comfort, making them particularly well-suited for applications in healthcare, nuclear power, and industrial settings.
The Pocket Dosimeters segment is expected to have the highest CAGR during the forecast period
Pocket Dosimeters segment is estimated to witness profitable growth during the projection period which is driven by its compact design, portability, and cost-effectiveness. These dosimeters provide a convenient and practical solution for individuals working in environments with potential radiation exposure, such as healthcare professionals, nuclear workers, and first responders. The ease of carrying pocket dosimeters allows for continuous, on-the-go monitoring of radiation levels, enabling users to quickly assess their exposure. Their simplicity and reliability make them ideal for routine use in various industries.
Asia Pacific region commanded the largest share of the market over the feasible period. Increasing industrial activities, rapid urbanization, and the expansion of nuclear power generation in countries like China, India, and South Korea are driving the demand for radiation dosimeters to ensure the safety of workers and the public. Furthermore, the rising awareness of radiation hazards and stringent regulatory frameworks in the region are fostering the adoption of dosimetry solutions across various industries, including healthcare and manufacturing.
Asia Pacific region is estimated to witness profitable growth throughout the extrapolated period due to the increased focus on occupational safety and public health, coupled with the awareness of potential radiation hazards, has led to a growing demand for radiation dosimeters as essential tools for compliance. Governments in the region are actively enforcing regulations that necessitate the use of dosimetry solutions, fostering a culture of radiation safety and risk mitigation.
Key players in the market
Some of the key players in Radiation Dosimeter market include Ametek, Inc, Biodex Medical Systems, Inc, FujiFilm Holdings Corporation, Hitachi Aloka Medical, Ltd, Ludlum Measurements, Inc, Mirion Technologies, Inc, Polimaster Ltd, Radiation Detection Company Inc, Rados Technology, Teledyne Brown Engineering, Inc, Thermo Fisher Scientific Inc, Troxler Electronic Laboratories, Inc and Ultra Electronics Holding plc.
In April 2022, Ultra Electronics Holdings plc (ULE) and Sparton DLS, LLC announce the award of a contract valued at $11.6 million to their ERAPSCO joint venture, against the $222 million competitive Indefinite Delivery Indefinite Quantity (IDIQ) production contract for the manufacture of next-generation sonobuoys for the United States Navy.