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首页> 外文期刊>Journal of medical ultrasound. >Validation of a Low-cost Optic Nerve Sheath Ultrasound Phantom: An Educational Tool
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Validation of a Low-cost Optic Nerve Sheath Ultrasound Phantom: An Educational Tool

机译:低成本光学神经鞘管超声幻影的验证:一种教育工具

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Objective: To validate an ocular phantom as a realistic educational tool utilizing in vivo and phantom optic nerve sheath (ONS) images obtained by ultrasound. Methods: This prospective study enrolled 51 resident physicians from the Denver Health Residency in Emergency Medicine (EM) and 10 ultrasound fellowship-trained EM attending physicians. Participants performed optic nerve sheath diameter (ONSD) measurements on five in vivo and five phantom ocular ultrasound images and rated the realism of each image on a 5-point Likert scale. Chi-square analysis was performed to evaluate the subjective ''realness'' of in vivo and phantom images. Results: Sixty-one participants performed ONSD measurements. Mean Likert scale values were 3.43 (95% confidence interval: 3.31-3.55) for in vivo images and 3.41 (95% confidence interval: 3.28-3.54) for phantom images. There was no statistical difference in subjective ''realness'' between in vivo and phantom ONSD ultrasound images among EM residents. Ultrasound fellowship-trained EM attending physicians aptly differentiated between in vivo (p<0.01) and phantom (p<0.01) images, as compared with EM residents. Conclusion: Our ocular phantom simulates in vivo posterior ocular anatomy. EM resident physicians found the phantom indistinguishable from in vivo images. Our ONS model provides an inexpensive and realistic educational tool to teach bedside ONSD sonography.
机译:目的:利用在超声中获得的体内和幻影视神经鞘(ONS)图像,验证眼模作为一种现实的教育工具。方法:这项前瞻性研究招募了来自丹佛急诊医学住院医师(EM)的51位住院医师和10位经超声研究培训的EM主治医师。参与者对五张体内和五张幻影眼超声图像进行了视神经鞘管直径(ONSD)测量,并以5点李克特量表对每幅图像的真实性进行了评估。进行卡方分析以评估体内和幻像图像的主观“真实性”。结果:61名参与者进行了ONSD测量。对于体内图像,平均李克特量表的值是3.43(95%置信区间:3.31-3.55),对于幻像,平均Likert标度值是3.41(95%置信区间:3.28-3.54)。 EM居民体内和幻影ONSD超声图像之间的主观“真实性”没有统计学差异。与EM住院医师相比,接受超声波研究金培训的EM主治医师在体内(p <0.01)和幻影(p <0.01)图像之间进行了适当区分。结论:我们的眼模模拟了体内后眼的解剖结构。 EM驻场医师发现该体模与体内图像没有区别。我们的ONS模型提供了一种便宜实用的教育工具来教授床头ONSD超声检查。

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