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飞秒激光消融骨组织:通往高分辨率骨外科手术之路

Ablation of Bone Tissue by Femtosecond Laser: A Path to High-Resolution Bone Surgery.

作者信息

Gemini Laura, Al-Bourgol Samy, Machinet Guillaume, Bakkali Aboubakr, Faucon Marc, Kling Rainer

机构信息

ALPhANOV, Institut d'optique d'Aquitaine, 33400 Talence, France.

出版信息

Materials (Basel). 2021 May 7;14(9):2429. doi: 10.3390/ma14092429.

Abstract

Femtosecond lasers allow for high-precision, high-quality ablation of biological tissues thanks to their capability of minimizing the thermal loads into the irradiated material. Nevertheless, reported ablation rates remain still too limited to enable their exploitation on a clinical level. This study demonstrates the possibility to upscale the process of fs laser ablation of bone tissue by employing industrially available fs laser sources. A comprehensive parametric study is presented in order to optimize the bone tissue ablation rate while maintaining the tissue health by avoiding excessive thermal loads. Three different absorption regimes are investigated by employing fs laser sources at 1030 nm, 515 nm and 343 nm. The main differences in the three different wavelength regimes are discussed by comparing the evolution of the ablation rate and the calcination degree of the laser ablated tissue. The maximum of the ablation rate is obtained in the visible regime of absorption where a maximum value of 0.66 mm/s is obtained on a non-calcined tissue for the lowest laser repetition rate and the lowest spatial overlap between successive laser pulses. In this regime, the hemoglobin present in the fresh bone tissue is the main chromophore involved in the absorption process. To the best of our knowledge, this is the highest ablation rate obtained on porcine femur upon fs laser ablation.

摘要

飞秒激光能够将施加于被照射材料的热负荷降至最低,从而实现对生物组织的高精度、高质量消融。然而,据报道,其消融速率仍然十分有限,无法在临床层面得到应用。本研究证明,通过使用工业上可用的飞秒激光源,可以扩大飞秒激光对骨组织的消融过程。为了在避免过高热负荷以维持组织健康的同时优化骨组织消融速率,本文进行了全面的参数研究。通过使用波长为1030 nm、515 nm和343 nm的飞秒激光源,研究了三种不同的吸收模式。通过比较消融速率的变化以及激光消融组织的煅烧程度,讨论了三种不同波长模式下的主要差异。在可见吸收模式下获得了最大消融速率,在未煅烧组织上,对于最低的激光重复频率和连续激光脉冲之间最低的空间重叠率,最大消融速率为0.66 mm/s。在此模式下,新鲜骨组织中存在的血红蛋白是吸收过程中主要的发色团。据我们所知,这是飞秒激光消融猪股骨时获得的最高消融速率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef73/8124249/83e6d750f230/materials-14-02429-g001.jpg

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