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软固定蒂尔人体标本的物理特性和功能对齐在超声引导区域麻醉模拟中的应用。

Physical properties and functional alignment of soft-embalmed Thiel human cadaver when used as a simulator for ultrasound-guided regional anaesthesia.

机构信息

Manchester Royal Infirmary, Manchester, UK.

Centre for Anatomy and Human Identification, University of Dundee, Dundee, UK.

出版信息

Br J Anaesth. 2016 May;116(5):699-707. doi: 10.1093/bja/aev548.

Abstract

BACKGROUND

We evaluated the physical properties and functional alignment of the soft-embalmed Thiel cadaver as follows: by assessing tissue visibility; by measuring its acoustic, mechanical and elastic properties; by evaluating its durability in response to repeated injection; and by aligning images with humans.

METHODS

In four soft-embalmed Thiel cadavers, we conducted three independent studies. We assessed the following factors: (i) soft tissue visibility in a single cadaver for 28 weeks after embalming; (ii) the displacement of tissues in response to 1 and 5 ml interscalene and femoral nerve blocks in a single cadaver; and (iii) the stiffness of nerves and perineural tissue in two cadavers. We aligned our findings with ultrasound images from three patients and one volunteer. Durability was qualified by assessing B-mode images from repetitive injections during supervised training.

RESULTS

There was no difference in visibility of nerves between 2 and 28 weeks after embalming {geometric mean ratio 1.13 [95% confidence interval (CI): 0.75-1.68], P=1.0}. Mean tissue displacement was similar for cadaver femoral and interscalene blocks [geometric mean ratio 1.02 (95% CI: 0.59-1.78), P=0.86], and for 1 and 5 ml injection volumes [geometric mean ratio 0.84 (95% CI: 0.70-1.01), P=0.19]. Cadavers had higher intraneural than extraneural stiffness [Young's modulus; geometric mean ratio 3.05 (95% CI: 2.98-3.12), P<0.001] and minimal distortion of anatomy when conducting 934 left-sided interscalene blocks on the same cadaver throughout a 10 day period.

CONCLUSIONS

The soft-embalmed Thiel cadaver is a highly durable simulator that has excellent physical and functional properties that allow repeated injection for intensive ultrasound-guided regional anaesthesia training.

摘要

背景

我们对软固定的 Thiel 尸体的物理特性和功能排列进行了如下评估:通过评估组织可见度;通过测量其声学、机械和弹性特性;通过评估其在重复注射时的耐用性;并通过与人体对齐图像。

方法

在四个软固定的 Thiel 尸体中,我们进行了三项独立的研究。我们评估了以下因素:(i)在单个尸体中,在固定后 28 周内软组织的可见度;(ii)在单个尸体中,1 毫升和 5 毫升肌间沟和股神经阻滞时组织的移位;(iii)在两个尸体中神经和神经周围组织的硬度。我们将我们的发现与来自三名患者和一名志愿者的超声图像对齐。通过在监督培训期间评估重复注射的 B 型模式图像来确定耐用性。

结果

在固定后 2 周和 28 周之间,神经的可见度没有差异{几何平均比 1.13 [95%置信区间(CI):0.75-1.68],P=1.0}。尸体股部和肌间沟阻滞的组织移位相似[几何平均比 1.02(95%CI:0.59-1.78),P=0.86],1 毫升和 5 毫升注射量相似[几何平均比 0.84(95%CI:0.70-1.01),P=0.19]。尸体的神经内刚度高于神经外刚度[杨氏模量;几何平均比 3.05(95%CI:2.98-3.12),P<0.001],并且在同一体尸上进行了 934 次左侧肌间沟阻滞的 10 天期间,解剖结构的扭曲最小。

结论

软固定的 Thiel 尸体是一种高度耐用的模拟器,具有出色的物理和功能特性,可进行重复注射,以进行强化超声引导区域麻醉培训。

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