Assessing of a Radiation Therapy Sessionʼs Duration at the Stage of Pre-Radiation Preparation

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION Devices and Methods of Measurements Pub Date : 2022-04-04 DOI:10.21122/2220-9506-2022-13-1-68-73
M. Piatkevich, E. Titovich
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Abstract

The treatment planning process includes a review of the radiation treatment plan which leads to a decision on the patientʼs treatment technique. The scope of this study was to create a mathematical model for calculating of a radiation therapy session duration during the pre-radiation planning stage.For dosimetric planning of radiation treatment the authors provided a formula and an algorithm for determining of a patientʼs irradiation session duration. Radiation therapy session parameters such as radiation technique, number of monitor units, characteristics of radiotherapy equipment, number of radiation fields, radiation field parameters (angles of rotation of the radiotherapy coach, collimator, gantry), presence / absence of dose-modulating devices, dose rate, and duration of patient position verification procedures have all been taken into account during the development of software. The developed application explains how to define typical timing characteristics for various items as well as how to select a template from a built-in drop-down menu. If the dosimetric plan does not match for one of the templates, the program provides a space for defining of all parameters manually.The anticipated deviations of the true indicators from the expected indicators of the duration of the radiation therapy session were assessed. A total of 300 cases have been completely measured, with 100 cases studied for each irradiation technique (IMRT, VMAT, 3D). The maximum detection confidence value for the 3DCRT irradiation technique is 2.3 %, while the deviation for the IMRT and VMAT irradiation techniques is less than 1 %. The magnitude and degree of the deviation of the measured value from the expected one for a variety of characteristics and features have been revealed to depend on the actions of the personnel.The program developed allows medical physicists to analyze the timing parameters of the specified dosimetric planning methodologies directly on the treatment planning workstation. Evaluation of the duration of a radiation therapy session during the treatment planning stage, selection of various radiation treatment modalities, and consideration of the characteristics of the radiation session in each clinical case are available for analysis and further justified action. 
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放射前准备阶段放射治疗疗程持续时间的评估
治疗计划过程包括对放射治疗计划的回顾,从而决定患者的治疗技术。本研究的范围是建立一个数学模型,用于计算放射治疗前计划阶段的放射治疗时间。对于放射治疗的剂量学计划,作者提供了一个公式和算法来确定病人的照射时间。在软件开发过程中,放射治疗过程参数,如放射技术、监测单元数量、放射设备特性、放射场数量、放射场参数(放射教练、准直器、龙门的旋转角度)、是否存在剂量调节装置、剂量率、患者体位验证程序的持续时间等都被考虑在内。开发的应用程序解释了如何为各种项目定义典型的时序特征,以及如何从内置的下拉菜单中选择模板。如果剂量计计划与其中一个模板不匹配,该程序提供了手动定义所有参数的空间。评估放射治疗期间真实指标与预期指标的预期偏差。总共测量了300例,每种辐照技术(IMRT、VMAT、3D)研究了100例。3DCRT照射技术的最大检测置信值为2.3%,而IMRT和VMAT照射技术的偏差小于1%。各种特性和特征的测量值与预期值的偏差的大小和程度取决于人员的行动。开发的程序允许医学物理学家直接在治疗计划工作站上分析指定剂量计计划方法的时间参数。在治疗计划阶段评估放射治疗疗程的持续时间,选择各种放射治疗方式,并考虑每个临床病例的放射治疗特征,可用于分析和进一步合理的行动。
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来源期刊
Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
自引率
25.00%
发文量
18
审稿时长
8 weeks
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