3D-printed neck phantoms with detailed anatomy for ultrasound-guided procedure and device testing

IF 1.6 4区 医学 Q2 OTORHINOLARYNGOLOGY Laryngoscope Investigative Otolaryngology Pub Date : 2024-08-06 DOI:10.1002/lio2.1309
Aida M. Hasson BA, Rahul D. Patel BS, Cheick A. Sissoko BS, Laura Brattain PhD, Gregory R. Dion MD, MS, FACS
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Abstract

Objectives

With rapid advances in ultrasound-guided procedures, there is an unmet need for echogenic phantoms with sufficient anatomical details for artificial intelligence and ultrasound-guided device testing. We developed a method for creating neck phantoms for novel otolaryngology-related device testing. To achieve accurate representation of the anatomy, we utilized CT scans and 3D printing technology to create customized agar molds, thus providing high-fidelity yet cost-effective tools.

Methods

Based on previous studies, the key components in our neck phantom include the cervical vertebrae, trachea, common carotid arteries, internal jugular veins, thyroid gland, and surrounding soft tissue. Open-source image analysis software were employed to process CT data to generate high fidelity 3D models of the target structures. Resin molds were 3D printed and filled with various agar mixtures to mimic anatomical echogenicity.

Results

Following the method proposed, we successfully assembled the neck phantom which provided a detailed representation of the target structures. To evaluate the results, ultrasound data was collected on the phantom and living tissue and analyzed with ImageJ. We were able to demonstrate echogenicity comparable to that of living tissue.

Conclusion

The proposed method for building neck phantoms with detailed anatomical features offers a valuable, detailed, low-cost tool for medical training and device testing in otolaryngology, particularly for novel devices that involve artificial intelligence (AI) guidance and robotic-based needle insertion. Additional anatomical refinements and validation studies could further enhance the consistency and accuracy, thus paving the way for future advancements in ultrasound training and research, and ultimately benefiting patient care and safety.

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具有详细解剖结构的 3D 打印颈部模型,用于超声引导手术和设备测试。
目的:随着超声引导手术的快速发展,人工智能和超声引导设备测试对具有足够解剖细节的回声模型的需求尚未得到满足。我们开发了一种创建颈部模型的方法,用于新型耳鼻喉科相关设备测试。为了准确呈现解剖结构,我们利用 CT 扫描和 3D 打印技术创建了定制的琼脂模具,从而提供了高保真且经济高效的工具:根据以往的研究,我们的颈部模型的主要组成部分包括颈椎、气管、颈总动脉、颈内静脉、甲状腺和周围软组织。我们采用开源图像分析软件处理 CT 数据,生成目标结构的高保真三维模型。三维打印出树脂模具,并填充各种琼脂混合物,以模拟解剖回声:结果:按照所提出的方法,我们成功地组装了颈部模型,该模型详细再现了目标结构。为了评估结果,我们收集了模型和活体组织的超声波数据,并用 ImageJ 进行了分析。我们能够展示与活体组织相当的回声:结论:所提出的建立具有详细解剖特征的颈部模型的方法为耳鼻喉科的医疗培训和设备测试提供了一种有价值的、详细的、低成本的工具,特别是对于涉及人工智能(AI)引导和基于机器人的针插入的新型设备。进一步的解剖学改进和验证研究可进一步提高一致性和准确性,从而为超声培训和研究的未来发展铺平道路,并最终惠及患者护理和安全。
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来源期刊
CiteScore
3.00
自引率
0.00%
发文量
245
审稿时长
11 weeks
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