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首页> 外文期刊>Physics in medicine and biology. >Assessment of new small-field detectors against standard-field detectors for practical stereotactic beam data acquisition.
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Assessment of new small-field detectors against standard-field detectors for practical stereotactic beam data acquisition.

机译:针对实际的立体定向波束数据采集,针对标准场检测器评估新的小场检测器。

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摘要

Two new detectors (0.015 cm3 ion chamber from PTW, 0.6 mm diameter diode from Scanditronix AB) designed specifically for use in small stereotactic fields were compared against similar, more routine, detectors (0.125 cm3 ion chamber, parallel plate chamber, shielded and unshielded diodes and film). Percentage depth doses, tissue maximum ratios, off-axis ratios and relative output factors were compared for circular fields in the 40-12.5 mm diameter range, with a view to identifying the optimum detector for stereotactic beam data acquisition. Practical suggestions for beam data collection and analysis are made, with an emphasis on what is achievable practically in radiotherapy departments where the primary demand is to provide a routine service. No single detector was found to be ideal, and neither of the two new measurement devices had any significant advantages over more routine devices, in the situations measured. Although the new 0.015 cm3 ion chamber was an improvement on a 0.125 cm3 ion chamber in the measurement of profiles, it was still too large when compared with a diode. The new small diode had a low signal to noise ratio which made reliable data difficult to extract and its only advantage is possibly improved resolution in fields smaller than the range tested. The use of a larger unshielded diode is recommended for all measurements, with the additional cross-checking of data against at least one small ion chamber and film. A simple method of obtaining reliable output data from the detectors used is explained.
机译:将两个专门设计用于小型立体定向领域的新型检测器(PTW提供0.015 cm3离子室,Scanditronix AB制造0.6mm直径的二极管)与类似的,更常规的检测器(0.125 cm3离子室,平行板室,屏蔽和非屏蔽二极管)进行了比较。和电影)。比较了直径在40-12.5 mm范围内的圆形场的深度剂量百分比,组织最大比率,离轴比率和相对输出因子,目的是确定用于立体定向光束数据采集的最佳检测器。提出了有关束数据收集和分析的实用建议,重点放在了放射治疗部门的实际需求中,这些需求主要是提供常规服务。没有一个检测器是理想的,并且在测量情况下,两个新的测量设备都没有比常规设备更明显的优势。尽管新的0.015 cm3离子室在轮廓测量方面比0.125 cm3离子室有所改进,但与二极管相比仍然太大。新的小型二极管具有较低的信噪比,这使得难以提取可靠的数据,其唯一的优势可能是在小于测试范围的领域中提高了分辨率。建议所有测量均使用较大的非屏蔽二极管,并针对至少一个小离子室和薄膜进行额外的交叉检查数据。说明了一种从所使用的检测器获取可靠输出数据的简单方法。

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