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一种低成本、高仿真的自制模型用于超声引导下甲状腺细针穿刺住院医师培训
引用本文:吕淑懿,张燕,章美武,张柏松,高立博,白浪涛,李飞.一种低成本、高仿真的自制模型用于超声引导下甲状腺细针穿刺住院医师培训[J].中华临床医师杂志(电子版),2022,16(8):787-791.
作者姓名:吕淑懿  张燕  章美武  张柏松  高立博  白浪涛  李飞
作者单位:1. 315010 浙江宁波,中国科学院大学宁波华美医院
基金项目:浙江省医药卫生科技计划项目(2020KY834); 浙江省医药卫生科技计划项目(2021KY294)
摘    要:目的超声引导下甲状腺细针穿刺是诊断甲状腺结节良恶性的一种准确的方法。因为缺少廉价、高仿真的模型,所以绝大多数住院医师都没有在模型上进行充分的练习。笔者的目的是制作一个低成本、高仿真的模型用于住院医师的培训。 方法魔芋、明胶、玉米淀粉、试管、鱼油胶囊等经过简单的过程制作成一个高仿真的模型。20名超声专业的住院医师参加了甲状腺细针穿刺的培训,并在培训前后填写了问卷调查。 结果该模型成功、逼真地模拟了甲状腺解剖和超声声像图。所有参加训练的住院医师均认为这个培训课程有价值。调查的问题均有显著的提高。对技术的信心显著提高,而焦虑明显降低。 结论这个魔芋-明胶模型是一个用于超声引导下甲状腺结节细针穿刺住院医师培训的低成本、高仿真的模型。

关 键 词:模型  细针穿刺  超声引导  
收稿时间:2022-05-30

A low-cost,high-fidelity self-made simulation model for training radiology residents in ultrasound-guided thyroid fine-needle aspiration
Shuyi Lyu,Yan Zhang,Meiwu Zhang,Baisong Zhang,Libo Gao,Langtao Bai,Fei Li.A low-cost,high-fidelity self-made simulation model for training radiology residents in ultrasound-guided thyroid fine-needle aspiration[J].Chinese Journal of Clinicians(Electronic Version),2022,16(8):787-791.
Authors:Shuyi Lyu  Yan Zhang  Meiwu Zhang  Baisong Zhang  Libo Gao  Langtao Bai  Fei Li
Institution:1. Hwa Mei Hospital, University of Chinese Academy of Sciences, Ningbo 315010, China
Abstract:ObjectiveUltrasound (US)-guided fine needle aspiration is an accurate method for the diagnosis of benign and malignant thyroid nodules. Given the lack of cheap and high-fidelity simulation models, most domestic residents do not practice enough on the models. This study attempted to provide a cost-effective viable and high-fidelity simulation model for training radiology residents in ultrasound-guided thyroid fine-needle aspiration. MethodsA high-fidelity simulation model was made by using konjac, gelatin, cornstarch, tubes (small-sized and medium-sized) and several fish oil capsules. Twenty ultrasound residents participated in the training of thyroid fine needle puncture using our self-made model, and filled in a questionnaire before and after the training. ResultsThe anatomical and ultrasonographic images of the thyroid glands obtained using our simulation model were extremely close to real-world ones. All participants found that the training session was valuable. There was a statistically significant improvement in all surveyed aspects (statistically significant increases in both professional knowledge and technical confidence of residents, and a statistically significant decrease in the residents' anxiety degree related to performing thyroid biopsy). ConclusionThe konjac-gelatin simulation model is a cost-effective, high-fidelity phantom for training residents in ultrasound-guided fine needle thyroid nodule targeting punctures.
Keywords:Phantom  Fine-needle aspiration biopsy  Ultrasound guided  
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