Hsu Eric J, Parsons David, Chiu Tsuicheng, Godley Andrew R, Sher David J, Vo Dat T
Department of Radiation Oncology, Division of Clinical Radiation Oncology, UT Southwestern Medical Center, Dallas, TX, 75390, USA.
Department of Radiation Oncology, Division of Medical Physics and Engineering, UT Southwestern Medical Center, Dallas, TX, 75390, USA.
3D Print Med. 2022 Jul 18;8(1):22. doi: 10.1186/s41205-022-00152-w.
Malignancies of the head and neck region, encompassing cutaneous, mucosal, and sarcomatous histologies, are complex entities to manage, comprising of coordination between surgery, radiation therapy, and systemic therapy. Malignancies of the posterior scalp are particular challenging to treat with radiation therapy, given its irregular contours and anatomy as well as the superficial location of the target volume. Bolus material is commonly used in radiation therapy to ensure that the dose to the skin and subcutaneous tissue is appropriate and adequate, accounting for the buildup effect of megavoltage photon treatment. The use of commercially available bolus material on the posterior scalp potentially creates air gaps between the bolus and posterior scalp.
In this report, we created and utilized a custom 3D-printed integrated bolus and headrest for 5 patients to irradiate malignancies involving the posterior scalp, including those with cutaneous squamous cell carcinoma, melanoma, malignant peripheral nerve sheath tumor, and dermal sarcoma. Treatment setup was consistently reproducible, and patients tolerated treatment well without any unexpected adverse effects.
We found that the use of this custom 3D-printed integrated bolus/headrest allowed for comfortable, consistent, and reproducible treatment set up while minimizing the risk of creating significant air gaps and should be considered in the radiotherapeutic management of patients with posterior scalp malignancies.
头颈部恶性肿瘤,包括皮肤、黏膜和肉瘤组织学类型,是复杂的治疗实体,需要手术、放射治疗和全身治疗之间相互协调。后头皮恶性肿瘤尤其具有放射治疗挑战性,因其轮廓和解剖结构不规则,且靶区位置表浅。在放射治疗中通常使用填充物材料,以确保皮肤和皮下组织的剂量合适且充足,同时考虑兆伏级光子治疗的剂量建成效应。在后头皮使用市售的填充物材料可能会在填充物与后头皮之间产生气隙。
在本报告中,我们为5例患者制作并使用了定制的3D打印一体式填充物和头枕,用于照射累及后头皮的恶性肿瘤,包括皮肤鳞状细胞癌、黑色素瘤、恶性外周神经鞘瘤和皮肤肉瘤患者。治疗摆位始终可重复,患者对治疗耐受性良好,未出现任何意外不良反应。
我们发现,使用这种定制的3D打印一体式填充物/头枕可实现舒适、一致且可重复的治疗摆位,同时将产生明显气隙的风险降至最低,对于后头皮恶性肿瘤患者的放射治疗管理应予以考虑。