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日本外照射放射治疗医学物理学工作量的全国性调查†。

A national survey on the medical physics workload of external beam radiotherapy in Japan†.

机构信息

Division of Medical Physics, Tokyo Bay Makuhari Clinic for Advanced Imaging, Cancer Screening, and High-Precision Radiotherapy, 1-17 Toyosuna, Mihama-ku, Chiba-shi, Chiba 261-0024, Japan.

Division of Radiation Safety and Quality Assurance, National Cancer Center Hospital, 5-1-1 Tsukiji, Chuo-ku, Tokyo 104-0045, Japan.

出版信息

J Radiat Res. 2023 Nov 21;64(6):911-925. doi: 10.1093/jrr/rrad070.

Abstract

Several staffing models are used to determine the required medical physics staffing, including radiotherapy technologists, of radiation oncology departments. However, since Japanese facilities tend to be smaller in scale than foreign ones, those models might not apply to Japan. Therefore, in this study, we surveyed workloads in Japan to estimate the optimal medical physics staffing in external beam radiotherapy. A total of 837 facilities were surveyed to collect information regarding radiotherapy techniques and medical physics specialists (RTMPs). The survey covered facility information, staffing, patient volume, equipment volume, workload and quality assurance (QA) status. Full-time equivalent (FTE) factors were estimated from the workload and compared with several models. Responses were received from 579 facilities (69.2%). The median annual patient volume was 369 at designated cancer care hospitals (DCCHs) and 252 across all facilities. In addition, the median FTE of RTMPs was 4.6 at DCCHs and 3.0 at all sites, and the average QA implementation rate for radiotherapy equipment was 69.4%. Furthermore, advanced treatment technologies have increased workloads, particularly in computed tomography simulations and treatment planning tasks. Compared to published models, larger facilities (over 500 annual patients) had a shortage of medical physics staff. In very small facilities (about 140 annual patients), the medical physics staffing requirement was estimated to be 0.5 FTE, implying that employing a full-time medical physicist would be inefficient. However, ensuring the quality of radiotherapy is an important issue, given the limited number of RTMPs. Our study provides insights into optimizing staffing and resource allocation in radiotherapy departments.

摘要

有几种人员配备模式可用于确定放射肿瘤学部门所需的医学物理人员配备,包括放射治疗技术员。然而,由于日本的设施规模往往比国外的小,这些模式可能不适用于日本。因此,在这项研究中,我们调查了日本的工作量,以估计外照射放射治疗中医学物理人员配备的最佳数量。共调查了 837 个设施,以收集有关放射治疗技术和医学物理专家(RTMP)的信息。该调查涵盖了设施信息、人员配备、患者数量、设备数量、工作量和质量保证(QA)状况。从工作量中估算出了全职等效(FTE)因素,并与几种模型进行了比较。从 579 个设施(69.2%)收到了回复。指定癌症护理医院(DCCH)的年平均患者数量为 369 人,所有设施的年平均患者数量为 252 人。此外,DCCH 的 RTMP 的中位数 FTE 为 4.6,所有站点的中位数 FTE 为 3.0,放射治疗设备的平均 QA 实施率为 69.4%。此外,先进的治疗技术增加了工作量,特别是在计算机断层扫描模拟和治疗计划任务中。与已发表的模型相比,较大的设施(每年超过 500 名患者)医学物理人员配备不足。在非常小的设施(每年约 140 名患者)中,医学物理人员配备需求估计为 0.5 FTE,这意味着雇用全职医学物理学家效率不高。然而,鉴于 RTMP 的数量有限,确保放射治疗的质量是一个重要问题。我们的研究为放射治疗部门的人员配备和资源分配优化提供了思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d1/10665301/5bdcb55ba422/rrad070f1.jpg

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