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Low-invasive reconstruction of spine discs under thermo-mechanical effect of fiber laser

机译:纤维激光热机械效应下脊柱椎间盘的低侵袭性重建

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The paper considers physical processes and mechanisms of laser reparation of spine cartilage, presents results of investigations aimed to optimize laser settings and to develop feedback control system for laser reconstruction of spine discs. Possible mechanisms of laser-induced regeneration include: (1) Space and temporary modulated laser beam induces non-homogeneous and pulse repetitive thermal expansion and stress in the irradiated zone of cartilage. Mechanical effect due to controllable thermal expansion of the tissue and micro and nano gas bubbles formation in the course of the moderate (up to 50 °C) heating of the NP activate biological cells (chondrocytes) and promote cartilage regeneration. (2) Non-destructive laser radiation leads to the formation of nano and micro-pores in cartilage matrix in the in the immediate vicinity of chondrocytes. That promotes water permeability and increases the feeding of biological cells. Results provide the scientific and engineering basis for the novel low-invasive laser procedures to be used in neurosurgery and orthopedics for the treatment cartilages of spine. The technology and equipment for laser reconstruction of spine discs have been tested first on animals, and then in a clinical trial. Since 2001 the laser reconstruction of intervertebral discs have been performed (i) for more than 3,200 patients with chronic symptoms of low back or neck pain who failed to improve with non-operative care; and (ii) for 1100 patients underwent hernia removal surgery. Substantial relief of back pain was obtained in 92.5% of patients treated who returned to their daily activities. LRD allowed also todecrease secondary surgeries more than three times. Optical fiber technique based on light scattering measurements have been used to promote safety and efficacy of the laser procedures.
机译:本文考虑了脊柱软骨激光恢复的物理过程和机制,提出了旨在优化激光设置的研究结果,并开发用于激光重建脊柱圆盘的反馈控制系统。激光诱导的再生的可能机制包括:(1)空间和临时调制激光束在辐射的软骨区域中引起非均匀和脉冲重复的热膨胀和应力。由于组织和微型和纳米气泡的可控热膨胀导致的机械效应在NP激活生物细胞(软骨细胞)的中等(最多50℃)加热过程中形成和促进软骨再生。 (2)非破坏性激光辐射导致在软骨基质中形成纳米和微孔的紧邻软骨细胞附近。促进水渗透性并增加生物细胞的饲养。结果为新型低侵入性激光程序提供科学和工程基础,以用于神经外科和整形外科的脊柱治疗软骨。首先在动物上进行了激光重建的技术和设备,然后在临床试验中进行了测试。自2001年以来,已经进行了椎间盘的激光重建(i)超过3,200名患者的慢性或颈部疼痛的慢性症状,患者未能通过非手术护理改善; (ii)1100名患者接受了疝气去除手术。在返回日常活动的患者中获得了92.5%的患者的重大缓解。 LRD允许还有三次进行二次手术。基于光散射测量的光纤技术已被用于促进激光程序的安全性和功效。

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