Low-cost simulation model for ultrasound-guided punch biopsy and puncture: Construction manual and photo examples.

IF 3.1 3区 医学 Q1 ACOUSTICS Ultraschall in Der Medizin Pub Date : 2024-04-29 DOI:10.1055/a-2292-0530
Theresa Lüdke, Alexander Paliege, Anne Kluge, Falk-Tony Olesch, Gregor Hilger, Thomas Beleites, Max Kemper
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Abstract

Purpose: Ultrasound-guided puncture and punch biopsy pose a particular challenge in ultrasound examination training. These techniques should be learned and performed several times using a simulation model that is as realistic as possible before being applied to patients. While the use of agar-agar-based models is extensively documented in the literature, there is a discernible gap in publications specifically addressing their use in punch biopsy and puncture. The aim was to develop a cost-effective model for the simulation of ultrasound-guided interventions.

Materials and methods: The developed simulation model is based on the vegetable gelatine agar-agar. The agar-agar powder is boiled in water and colored. Various objects are added to the mass. Blueberries, olives, tomatoes, and cornichons imitate solid structures. Liquid-filled balloons are used to simulate cystic structures. Adding stones can make the exercises more difficult due to hyperechoic reflexes with distal shadowing.

Results: With the model, ultrasound-guided puncture and punch biopsies could be successfully simulated, and ultrasound images can be generated for this purpose. The cost of a single model is about 2 euros. Production takes less than 2 hours, including cooling. The pure processing time is 30 minutes. The durability of the models is limited by mold, which occurs after 5 days when stored at room temperature and after 5 weeks in the refrigerator.

Conclusion: It was shown that it is possible to produce an inexpensive agar-agar-based ultrasound model in a short time and with easily available ingredients to learn ultrasound-guided puncture and punch biopsies.

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超声引导下打孔活检和穿刺的低成本模拟模型:构造手册和图片示例。
目的 超声引导穿刺和打孔活检是超声检查培训中的一项特殊挑战。在使用尽可能逼真的模拟模型对患者进行操作之前,应先学习并多次操作这些技术。虽然文献中广泛记载了琼脂-琼脂模型的使用,但专门针对其在打孔活检和穿刺中的使用的文献明显不足。我们的目的是开发一种具有成本效益的模型,用于模拟超声引导下的介入治疗。材料和方法 所开发的模拟模型以植物明胶琼脂琼脂为基础。琼脂糖粉末在水中煮沸并着色。在粉末中加入各种物体。蓝莓、橄榄、西红柿和玉米粒都是固体结构。充满液体的气球用来模拟囊性结构。加入结石会使练习更加困难,因为会出现高回声反射和远端阴影。结果 使用该模型可成功模拟超声引导下的穿刺和打孔活检,并为此生成超声图像。单个模型的成本约为 2 欧元。包括冷却在内,制作时间不到 2 小时。纯加工时间为 30 分钟。模型的耐久性受到霉菌的限制,在室内空气中存放 5 天后会发霉,在冰箱中存放 5 周后会发霉。结论 研究表明,可以在短时间内利用容易获得的原料制作出一种廉价的琼脂-琼脂超声模型,用于学习超声引导穿刺和打孔活检。目的 超声引导下穿刺和穿刺活检是超声检查培训中的一项特殊挑战。在病人身上使用这些技术之前,最好使用逼真的模拟模型进行学习。迄今为止,使用模型来教授超声引导下穿刺活检和穿刺的方法还鲜有报道。我们的目的是制作一个具有成本效益的模型,用于模拟超声引导下的介入治疗。材料和方法 所开发的模拟模型以植物明胶为基础。明胶粉在水中煮沸并着色。模型成型后,可在其中加入各种物体。固体结构可以用蓝莓、橄榄和西红柿来模拟。充满液体的气球可以模拟囊性结构。加入石头可以增加练习的难度。结果 利用所述模型,可以成功模拟超声引导穿刺和打孔活检,并为此生成超声图像。一个模拟模型的成本约为 2 欧元。制作时间约为 3 小时,包括冷却时间。纯工作时间为 30 分钟。冷却后,模型可立即使用。在室内空气中存放 5 天后会发霉,在冰箱中存放 5 周后会发霉。结论 现已证明,在琼脂琼脂的基础上,可以用容易获得的材料在短时间内制作出一种廉价的超 声波模型,用于学习超声引导穿刺和打孔活检。
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来源期刊
Ultraschall in Der Medizin
Ultraschall in Der Medizin 医学-核医学
CiteScore
5.30
自引率
8.80%
发文量
228
审稿时长
6-12 weeks
期刊介绍: Ultraschall in der Medizin / European Journal of Ultrasound publishes scientific papers and contributions from a variety of disciplines on the diagnostic and therapeutic applications of ultrasound with an emphasis on clinical application. Technical papers with a physiological theme as well as the interaction between ultrasound and biological systems might also occasionally be considered for peer review and publication, provided that the translational relevance is high and the link with clinical applications is tight. The editors and the publishers reserve the right to publish selected articles online only. Authors are welcome to submit supplementary video material. Letters and comments are also accepted, promoting a vivid exchange of opinions and scientific discussions.
期刊最新文献
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