Page 46 - 《中国医疗器械杂志》2025年第2期
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Chinese Journal of Medical Instrumentation 2025 年 第49卷 第2期
综 合 评 述
and HDR surface brachytherapy applications[J]. Phys Eng arc therapy[J]. Cancer Med, 2022, 11(4): 1037-1047.
Sci Med, 2021, 44(2): 457-471. [33] OBEID J P, GUTKIN P M, LEWIS J, et al. Volumetric
[19] LECOMPTE M C, CHUNG S A, MCKEE M M, et al. modulated arc therapy and 3-dimensional printed bolus in
Simple and rapid creation of customized 3-dimensional the treatment of refractory primary cutaneous Gamma
printed bolus using iPhone X true depth camera[J]. Pract Delta lymphoma of the bilateral legs[J]. Pract Radiat
Radiat Oncol, 2019, 9(4): e417-e421. Oncol, 2019, 9(4): 220-225.
[20] DAI G Y, XU X, WU X H, et al. Application of 3D-print [34] WANG K M, RICKARDS A J, BINGHAM T, et al.
silica bolus for nasal NK/T-cell lymphoma radiation Technical note: evaluation of a silicone-based custom
therapy[J]. J Radiat Res, 2020, 61(6): 920-928. bolus for radiation therapy of a superficial pelvic
[21] BALTZ G C, CHI P M, WONG P F, et al. Development tumor[J]. J Appl Clin Med Phys, 2022, 23(4): e13538.
and validation of a 3D-printed bolus cap for total scalp [35] HSU E J, PARSONS D, CHIU T, et al. 3D printed
irradiation[J]. J Appl Clin Med Phys, 2019, 20(3): 89-96. integrated bolus/headrest for radiation therapy for
[22] 曾彪, 窦钰姣, 谭剑锋, 等. 3D打印个体化补偿物在肛管 malignancies involving the posterior scalp and neck[J].
癌放疗中的研究[J]. 中国医疗设备, 2022, 37(4): 136- 3D Print Med, 2022, 8(1): 22.
139. [36] WANG X, SWANN B, REYHAN M, et al. A novel
[23] PARK S Y, CHOI C H, PARK J M, et al. A patient- approach to embed eye shields in customized bolus on
specific polylactic acid bolus made by a 3D printer for nasal dorsum treatment for electron radiotherapy[J]. Med
breast cancer radiation therapy[J]. PLoS One, 2016, Dosim, 2021, 46(2): 132-135.
11(12): e0168063. [37] 王勇, 周玉玲, 周琼辉, 等. 3D打印补偿膜在乳腺癌即刻
[24] PARK J W, YEA J W. Three-dimensional customized 乳房重建术后放疗中的应用[J]. 中国癌症防治杂志,
bolus for intensity-modulated radiotherapy in a patient 2024, 16(1): 96-100.
with Kimura's disease involving the auricle[J]. Cancer [38] ROBERTSON F M, COUPER M B, KINNIBURGH M,
Radiother, 2016, 20(3): 205-209. et al. Ninjaflex vs Superflab: a comparison of dosimetric
[25] MALONE C, GILL E, LOTT T, et al. Evaluation of the properties, conformity to the skin surface, planning target
quality of fit of flexible bolus material created using 3D volume coverage and positional reproducibility for
printing technology[J]. J Appl Clin Med Phys, 2022, external beam radiotherapy[J]. J Appl Clin Med Phys,
23(3): e13490. 2021, 22(4): 26-33.
[26] ROBAR J L, MORAN K, ALLAN J, et al. Intrapatient [39] GILL A, SMITH W, HIRST A, et al. Comparison of
study comparing 3D printed bolus versus standard vinyl conventional versus customised Eurosil-4 Pink bolus for
gel sheet bolus for postmastectomy chest wall radiation radiotherapy of the chest wall[J]. PLoS One, 2022, 17(5):
therapy[J]. Pract Radiat Oncol, 2018, 8(4): 221-229. e0267741.
[27] 韩卫, 赖万昌, 汤晓斌, 等. 放疗过程中金属植入物入射 [40] EHLER E, STERLING D, DUSENBERY K, et al.
面处剂量扰动影响因素的研究[J]. 中国医学物理学杂 Workload implications for clinic workflow with
志, 2013, 30(5): 4373-4377. implementation of three-dimensional printed customized
[28] HEALY E, ANDERSON S, CUI J, et al. Skin dose bolus for radiation therapy: a pilot study[J]. PLoS One,
effects of postmastectomy chest wall radiation therapy 2018, 13(10): e0204944.
using brass mesh as an alternative to tissue equivalent [41] DURAIVEL S, LAURENT D, RAJON D A, et al. A
bolus[J]. Pract Radiat Oncol, 2013, 3(2): e45-e53. silicone-based support material eliminates interfacial
[29] EHLER E D, STERLING D A. 3D printed copper-plastic instabilities in 3D silicone printing[J]. Science, 2023,
composite material for use as a radiotherapy bolus[J]. 379(6638): 1248-1252.
Phys Med, 2020, 76: 202-206. [42] WANG Y, WILLENBACHER N. Phase-change-enabled,
[30] PARK J M, SON J, AN H J, et al. Bio-compatible rapid, high-resolution direct ink writing of soft silicone[J].
patient-specific elastic bolus for clinical implemen- Adv Mater, 2022, 34(15): e2109240.
tation[J]. Phys Med Biol, 2019, 64(10): 105006. [43] CHÝLEK R, KUDELA L, POSPÍŠIL J, et al. Parameters
[31] FUJIMOTO K, SHIINOKI T, YUASA Y, et al. Efficacy influencing the emission of ultrafine particles during 3D
of patient-specific bolus created using three-dimensional printing[J]. Int J Environ Res Public Health, 2021,
printing technique in photon radiotherapy[J]. Phys Med, 18(21): 11670.
2017, 38: 1-9. [44] VÄISÄNEN A, ALONEN L, YLÖNEN S, et al. Organic
[32] ZHANG Y, HUANG Y L, DING S G, et al. A clinical compound and particle emissions of additive
trial to compare a 3D-printed bolus with a conventional manufacturing with photopolymer resins and chemical
bolus with the aim of reducing cardiopulmonary exposure outgassing of manufactured resin products[J]. J Toxicol
in postmastectomy patients with volumetric modulated Environ Health A, 2022, 85(5): 198-216.
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