School of Science and Engineering, University of Dundee, Dundee, UK.
School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai, China.
J Clin Monit Comput. 2022 Apr;36(2):511-519. doi: 10.1007/s10877-021-00680-6. Epub 2021 Mar 11.
Forceful needle-nerve contact and high subepineural pressures and are recognised causes of nerve damage. Pressure and force measurements are necessary to inform the mechanisms of nerve injury, build virtual simulator environments and provide operator feedback during simulation training. However, the range of pressures and forces encountered at tissue layers during targeted needle insertion and fluid injection are not known.
We built a needle that recorded in-line pressure during fluid injection and continuously measured force at the needle tip. Two anaesthetists were randomised to insert a 21 g block needle at 48 nerve sites on both sides of 3 soft embalmed Thiel cadavers. Our objective was to measure pressure and force during the course of targeted nerve injection at epimysium, in perineural tissue, on epineurium and during subepineural injection. At each interface, we infused a 0.5 ml bolus of embalming solution at a rate of 12 ml min and recorded the pressure response. Force was measured continuously in the background throughout the procedure.
Pressure was greater at epineurium and within subepineurium than perineural tissue, geometric ratio (95% CI) 4.7 (3.0-7.3) kPa and 3.8 (2.5-5.7) kPa, respectively, both P < 0.0001. Force on nerve contact and on nerve penetration was greater than force in perineural tissue, geometric ratios (95% CI) 3.0 (1.9-4.7) N and 3.6 (2.2-7.5) N, respectively, both P < 0.0001. On nerve contact, 1 in 6 insertions were ≥ 5 N CONCLUSIONS: Despite valid infusion pressures, anaesthetists exerted excessive force on nerves.
强力的针-神经接触和高亚表皮压力被认为是神经损伤的原因。压力和力的测量对于了解神经损伤的机制、构建虚拟模拟器环境以及在模拟培训期间提供操作人员反馈是必要的。然而,在靶向针插入和液体注射过程中,组织层之间遇到的压力和力的范围尚不清楚。
我们制造了一种能够在液体注射过程中记录在线压力并持续测量针尖力的针。两名麻醉师随机在 3 具软尸检 Thiel 尸体两侧的 48 个神经部位插入 21G 块针。我们的目标是测量靶向神经注射过程中在肌膜、神经周围组织、神经外膜和亚表皮注射时的压力和力。在每个界面,我们以 12ml/min 的速度注入 0.5ml 灌流液的脉冲,并记录压力响应。在整个过程中,背景中连续测量力。
神经外膜和亚表皮内的压力大于神经周围组织,几何比(95%CI)分别为 4.7(3.0-7.3)kPa 和 3.8(2.5-5.7)kPa,均 P<0.0001。神经接触和神经穿透时的力大于神经周围组织的力,几何比(95%CI)分别为 3.0(1.9-4.7)N 和 3.6(2.2-7.5)N,均 P<0.0001。在神经接触时,1/6 的插入操作的力≥5N。
尽管有有效的输注压力,但麻醉师对神经施加了过大的力。