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Spinal needle force monitoring during lumbar puncture using fiber Bragg grating force device

机译:脊柱针力监测在腰部穿刺期间使用纤维布拉格光栅力装置

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摘要

A technique for real-time dynamic monitoring of force experienced by a spinal needle during lumbar puncture using a fiber Bragg grating (FBG) sensor is presented. The proposed FBG force device (FBGFD) evaluates the compressive force on the spinal needle during lumbar puncture, particularly avoiding the bending effect on the needle. The working principle of the FBGFD is based on transduction of force experienced by the spinal needle into strain variations monitored by the FBG sensor. FBGFD facilitates external mounting of a spinal needle for its smooth insertion during lumbar puncture without any intervention. The developed FBGFD assists study and analysis of the force required for the spinal needle to penetrate various tissue layers from skin to the epidural space; this force is indicative of the varied resistance offered by different tissue layers for the spinal needle traversal. Calibration of FBGFD is performed on a micro-universal testing machine for 0 to 20 N range with an obtained resolution of 0.021 N. The experimental trials using spinal needles mounted on FBGFD are carried out on a human cadaver specimen with punctures made in the lumbar region from different directions. Distinct forces are recorded when the needle encounters skin, muscle tissue, and a bone in its traversing path. Real-time spinal needle force monitoring using FBGFD may reduce potentially serious complications during the lumbar puncture, such as overpuncturing of tissue regions, by impeding the spinal needle insertion at epidural space. (C) 2016 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:提出了一种使用光纤布拉格光栅(FBG)传感器的腰针在腰部穿刺期间进行实时动态监测力的实时动态监测。所提出的FBG力装置(FBGFD)在腰椎穿刺期间评估脊髓针上的压缩力,特别是避免对针头上的弯曲效应。 FBGFD的工作原理基于脊针经历的力的转导,以FBG传感器监测的应变变化。 FBGFD促进脊针的外部安装在腰椎穿刺期间的平滑插入,而无需任何干预。开发的FBGFD助攻和分析脊柱针渗入从皮肤到硬膜外空间的各种组织层所需的力;该力指示由不同组织层提供的不同的组织层,用于椎横向遍历。 FBGFD的校准在微观通用试验机上进行0至20 n个系列,获得的分辨率为0.021 n。使用安装在FBGFD上的脊髓针的实验试验在人类尸体标本上进行,具有在腰部区域制作的穿孔从不同的方向。当针堵塞皮肤,肌肉组织和穿过路径中的骨骼时,记录不同的力。使用FBGFD的实时脊柱针力监测可能在腰椎穿刺期间减少潜在的严重并发症,例如通过阻碍硬膜外空间的脊针插入来降低组织区域。 (c)2016年光学仪表工程师协会(SPIE)

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