Ho:YAG激光消融骨、软骨及关节突关节囊。

M I Hafez, R R H Coombs, S Zhou, I D McCarthy
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引用次数: 15

摘要

目的:本研究的目的是确定钬激光用于骨消融的效率,与腰骶棘椎间孔软骨和软组织相比较。背景资料:钬:YAG (Ho:YAG)激光已被用于椎间盘膨出或脱垂的消融,当有椎间孔狭窄时,也有减压神经根的潜力(椎间孔成形术)。我们认为,采用Ho:YAG激光消融椎间孔骨韧带进行神经根减压,由于其吸收长度短,能够产生足够的骨消融而不会引起周围组织明显的热坏死,具有明显的临床优势。材料与方法:实验采用15脉冲/秒、0.5 ~ 1.5 J/P脉冲能量范围,对椎板骨、关节突关节囊和软骨样品进行定量和定性测定Ho:YAG消融对组织质量损失的影响。结果:质量损失与脉冲能量、质量损失与辐射暴露呈显著的线性相关。电镜和组织学观察显示,Ho:YAG烧蚀后的边界非常清晰,几乎没有炭化。使用光学显微镜和Scion图像分析程序,以15脉冲/秒的速度在两种不同设置(1.5 J/p,高功率和0.5 J/p,低功率)下施加0.01 kj的总能量,测量消融骨的横截面积/mm(2)。高功率和低功率下的消融面积分别为2.28 +/- 0.87和1.16 +/- 0.43 mm(2) (p = 0.008)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ablation of bone, cartilage, and facet joint capsule using Ho:YAG laser.

Objective: The objective of this study was to determine of the efficiency of holmium:YAG laser for bone ablation, compared to cartilage and soft tissue of the intervertebral foramen of the lumbosacral spine.

Background data: The holmium:YAG (Ho:YAG) laser has been used for ablation of bulging or prolapsed discs and also has the potential for decompression of the nerve root when there is narrowing of the foraminae (foraminoplasty). It is proposed that laser ablation of bone and ligament of the intervertebral foramen for nerve root decompression using the Ho:YAG laser is able to produce sufficient bone ablation without inducing significant thermal necrosis in surrounding tissues due to its short absorption length, which could result in significant clinical advantages.

Materials and methods: Experiments were performed on samples of laminar bone, facet joint capsule, and cartilage for quantitative and qualitative determination of the effect of Ho:YAG ablation on tissue mass loss using a range of pulse energies from 0.5 to 1.5 J/P at 15 pulses/sec.

Results: The results showed a significant linear correlation between the mass loss and pulse energy, and between the mass loss and radiant exposure. Electron microscopy and histology showed that the Ho:YAG ablation resulted in a very sharp and clear border with little charring. Applying 0.01 k.J of total energy at two different settings (1.5 J/p, high power, and 0.5 J/p, low power) at 15 pulses/sec, the cross-sectional area/mm(2) of the ablated bone was measured, using light microscopy and the Scion Image analysis program. The ablated areas were 2.28 +/- 0.87 and 1.16 +/- 0.43 mm(2) at high and low power, respectively (p = 0.008).

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