首页> 美国卫生研究院文献>Biomedical Optics Express >Development of an integrated optical coherence tomography-gas nozzle system for surgical laser ablation applications: preliminary findings of in situ spinal cord deformation due to gas flow effects
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Development of an integrated optical coherence tomography-gas nozzle system for surgical laser ablation applications: preliminary findings of in situ spinal cord deformation due to gas flow effects

机译:开发用于手术激光消融应用的集成光学相干断层扫描-气嘴系统:由于气流影响而引起的原位脊髓变形的初步发现

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摘要

Gas assisted laser machining of materials is a common practice in the manufacturing industry. Advantages in using gas assistance include reducing the likelihood of flare-ups in flammable materials and clearing away ablated material in the cutting path. Current surgical procedures and research do not take advantage of this and in the case for resecting osseous tissue, gas assisted ablation can help minimize charring and clear away debris from the surgical site. In the context of neurosurgery, the objective is to cut through osseous tissue without damaging the underlying neural structures. Different inert gas flow rates used in laser machining could cause deformations in compliant materials. Complications may arise during surgical procedures if the dura and spinal cord are damaged by these deformations. We present preliminary spinal deformation findings for various gas flow rates by using optical coherence tomography to measure the depression depth at the site of gas delivery.
机译:气体辅助材料的激光加工是制造业中的普遍做法。使用气体辅助的优势包括减少易燃材料起火的可能性以及清除切削路径中的烧蚀材料。当前的外科手术程序和研究没有利用此优势,并且在切除骨组织的情况下,气体辅助消融可以帮助最大程度地减少烧焦并清除手术部位的碎屑。在神经外科手术的背景下,目的是切开骨组织而不会损害潜在的神经结构。激光加工中使用的不同惰性气体流速可能会导致柔性材料变形。如果硬脑膜和脊髓因这些变形而受损,可能会在手术过程中引起并发症。我们通过使用光学相干断层扫描术来测量气体输送部位的凹陷深度,介绍了各种气体流速的初步脊柱变形发现。

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