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首页> 外文期刊>Medical dosimetry: official journal of the American Association of Medical Dosimetrists >A highly reproducible bolus immobilization technique for the treatment of scalp malignancies.
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A highly reproducible bolus immobilization technique for the treatment of scalp malignancies.

机译:一种高度可重复的推注固定化技术,用于治疗头皮恶性肿瘤。

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摘要

Radiation treatment of scalp malignancies can be a challenge due to the multiple curved surfaces to which homogenous dose must be delivered. The most readily available techniques utilize linear accelerator-based technique of opposed lateral electron field abutting opposed lateral photon field with central blocking. Bolus material is used to achieve adequate skin dose. Although plans to add bolus material often occur in the virtual setting during treatment planning, the practical aspects of reproducibly maintain the bolus material along curved surfaces during the day-to-day patient setup can be a challenge. We present a case of a patient with squamous cell carcinoma of the scalp with neck node involvement treated with surgery followed by adjuvant radiotherapy. We demonstrate a unique immobilization technique that maintains the bolus material on the aquaplast((R)) mesh adherent to the patient's scalp as well as the neck. TomoTherapy((R)) with daily megavoltage computed tomography (CT) scan was utilized to verify the daily bolus position. We were able to maintain a 95% reproducibility rate. This technique reliably maintains the bolus material on the desired locations with minimum adjustments and manipulation by the therapist and is a technique that can be universally adapatable for conventional radiotherapy or intensity modulated radiation therapy (IMRT) techniques.
机译:由于必须向其递送均匀剂量的多个弯曲表面,头皮恶性肿瘤的放射治疗可能是一个挑战。最容易获得的技术是利用基于线性加速器的反向横向电子场,该反向电子场与具有中心阻挡的反向横向光子场邻接。团块材料用于获得足够的皮肤剂量。尽管在治疗计划期间虚拟环境中经常会出现添加推注材料的计划,但是在日常患者设置过程中沿曲面可重复地保持推注材料的实际情况可能是一个挑战。我们介绍了一例头皮鳞状细胞癌伴颈部淋巴结受累的患者,接受手术治疗,然后进行辅助放疗。我们展示了一种独特的固定技术,该技术可以使推注材料保持粘附在患者头皮以及颈部上的aquaplast(R)网上。每日进行兆伏计算机断层扫描(CT)扫描的TomoTherapy(R)用于验证每日推注位置。我们能够保持95%的再现率。该技术通过治疗师的最小调整和操纵将推注材料可靠地保持在所需位置,并且是可普遍适用于常规放射疗法或调强放射疗法(IMRT)的技术。

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