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激光间质热疗(LITT)治疗乳腺癌:剂量优化与数值模拟。

Laser interstitial thermotherapy (LITT) for breast cancer: dosimetry optimization and numerical simulation.

机构信息

Univ. Lille, CHU Lille, U 1189, ONCO-THAI- Image Assisted Laser Therapy for Oncology, 1 avenue Oscar Lambret, F-59000, Lille, France.

CHU Lille, Service de chirurgie gynécologique, F-59000, Lille, France.

出版信息

Lasers Med Sci. 2022 Feb;37(1):489-498. doi: 10.1007/s10103-021-03286-1. Epub 2021 Mar 13.

Abstract

Surgical treatment is standard for the treatment of small breast cancers. Due to the pain and esthetic sequelae that can follow surgery, minimally invasive treatments are under investigation. Our aim was to conduct a dosimetry study of laser interstitial thermotherapy. Turkey tissue was used as an ex vivo model, and mammary glands from ewes were used as in vivo models. We used two different wavelength lasers (805 nm and 980 nm). Two types of fiber from two different manufacturers were used: bare fibers with a diameter of 600 μm and diffusing fiber. The diffusing fibers were 5 mm and 10 mm in length. We also used a computerized model to predict thermal damage and to correlate with the ex vivo and in vivo procedures using a constant and variable coefficient. The mathematical model was based on the finite element method for solving light distribution, bio-heat, and thermal damage equations. Based on our ex vivo and in vivo experiments, we found that the optimal configuration for this treatment was the use of the 980-nm laser at 4 W with bare fibers for a minimum treatment time of 150 s. We also developed a predictive mathematical model that showed good predictability of necrosis in line with the experimental data. Laser treatment is a promising therapy for small breast lesions. However, further development of treatment guidance is necessary to support its use in clinical practice.

摘要

手术治疗是治疗小乳腺癌的标准方法。由于手术可能带来的疼痛和美容后遗症,微创治疗正在研究中。我们的目的是进行激光间质热疗的剂量学研究。我们使用土耳其组织作为离体模型,使用绵羊的乳腺作为体内模型。我们使用了两种不同波长的激光(805nm 和 980nm)。使用了来自两个不同制造商的两种光纤:直径为 600μm 的裸光纤和扩散光纤。扩散光纤的长度为 5mm 和 10mm。我们还使用了计算机模型来预测热损伤,并使用恒温和变量系数与离体和体内程序进行关联。数学模型基于有限元方法来解决光分布、生物传热和热损伤方程。基于我们的离体和体内实验,我们发现这种治疗的最佳配置是使用 980nm 激光,功率为 4W,使用裸光纤,治疗时间最短为 150s。我们还开发了一个预测数学模型,该模型显示了与实验数据一致的坏死的良好预测性。激光治疗是一种有前途的小乳房病变治疗方法。然而,需要进一步开发治疗指导,以支持其在临床实践中的应用。

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