Su Erica, Sun Hui, Juhasz Tibor, Wong Brian J F
University of California, Beckman Laser Institute and Medical Clinic, Irvine, California 92612, United States.
Chinese Academy of Science, Academy of Opto-Electronics, Beijing 100094, China.
J Biomed Opt. 2014 Sep;19(9):98001. doi: 10.1117/1.JBO.19.9.098001.
Microfracture surgery is a bone marrow stimulation technique for treating cartilage defects and injuriesin the knee. Current methods rely on surgical skill and instrumentation. This study investigates the potential useof laser technology as an alternate means to create the microfracture holes. Lasers investigated in this study include an erbium:YAG laser (λ = 2.94 μm), titanium:sapphire femtosecond laser system (λ = 1700 nm), and Nd:glass femtosecond laser (λ = 1053 nm). Bovine samples were ablated at fluences of 8 to 18 J∕cm2 with the erbium:YAG laser, at a power of 300 ± 15 mW with the titanium:sapphire femtosecond system, and at an energy of 3 μJ∕pulse with the Nd:glass laser. Samples were digitally photographed and histological sections were taken for analysis. The erbium:YAG laser is capable of fast and efficient ablation; specimen treated with fluences of 12 and 18 J∕cm2 experienced significant amounts of bone removal and minimal carbonization with saline hydration. The femtosecond laser systems successfully removed cartilage but not clinically significant amounts of bone. Precise tissue removal was possible but not to substantial depths due to limitations of the systems. With additional studies and development, the use of femtosecond laser systems to ablate bone may be achieved at clinically valuable ablation rates.
微骨折手术是一种用于治疗膝关节软骨缺损和损伤的骨髓刺激技术。目前的方法依赖于手术技巧和器械。本研究调查了激光技术作为制造微骨折孔的替代方法的潜在用途。本研究中所研究的激光包括铒:钇铝石榴石激光(λ = 2.94μm)、钛:蓝宝石飞秒激光系统(λ = 1700nm)和钕玻璃飞秒激光(λ = 1053nm)。使用铒:钇铝石榴石激光以8至18J∕cm²的能量密度对牛样本进行消融,使用钛:蓝宝石飞秒系统以300±15mW的功率进行消融,使用钕玻璃激光以3μJ∕脉冲的能量进行消融。对样本进行数码拍照,并制作组织切片进行分析。铒:钇铝石榴石激光能够快速高效地进行消融;用12和18J∕cm²能量密度处理的样本在盐水水化处理下经历了大量的骨质去除且碳化极少。飞秒激光系统成功去除了软骨,但去除的骨量未达到临床显著水平。由于系统的限制,可以进行精确的组织去除,但深度有限。通过进一步的研究和开发,可能以具有临床价值的消融速率实现使用飞秒激光系统消融骨组织。