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成像测试体综述。

Review of imaging test phantoms.

机构信息

State University of New York at Buffalo, Sensors and MicroActuators Learning Lab, Electrical Engineering, Buffalo, New York, United States.

State University of New York at Buffalo, Optical and Ultrasonic Imaging Laboratory, Biomedical Engineering, Buffalo, New York, United States.

出版信息

J Biomed Opt. 2023 Aug;28(8):080903. doi: 10.1117/1.JBO.28.8.080903. Epub 2023 Aug 22.

Abstract

SIGNIFICANCE

Photoacoustic tomography has emerged as a prominent medical imaging technique that leverages its hybrid nature to provide deep penetration, high resolution, and exceptional optical contrast with notable applications in early cancer detection, functional brain imaging, drug delivery monitoring, and guiding interventional procedures. Test phantoms are pivotal in accelerating technology development and commercialization, specifically in photoacoustic (PA) imaging, and can be optimized to achieve significant advancements in PA imaging capabilities.

AIM

The analysis of material properties, structural characteristics, and manufacturing methodologies of test phantoms from existing imaging technologies provides valuable insights into their applicability to PA imaging. This investigation enables a deeper understanding of how phantoms can be effectively employed in the context of PA imaging.

APPROACH

Three primary categories of test phantoms (simple, intermediate, and advanced) have been developed to differentiate complexity and manufacturing requirements. In addition, four sub-categories (tube/channel, block, test target, and naturally occurring phantoms) have been identified to encompass the structural variations within these categories, resulting in a comprehensive classification system for test phantoms.

RESULTS

Based on a thorough examination of literature and studies on phantoms in various imaging modalities, proposals have been put forth for the development of multiple PA-capable phantoms, encompassing considerations related to the material composition, structural design, and specific applications within each sub-category.

CONCLUSIONS

The advancement of novel and sophisticated test phantoms within each sub-category is poised to foster substantial progress in both the commercialization and development of PA imaging. Moreover, the continued refinement of test phantoms will enable the exploration of new applications and use cases for PA imaging.

摘要

意义

光声断层扫描已成为一种重要的医学成像技术,利用其混合特性提供深度穿透、高分辨率和卓越的光学对比度,在早期癌症检测、功能脑成像、药物输送监测和指导介入性手术等方面有显著的应用。测试体模在加速技术发展和商业化方面起着关键作用,特别是在光声(PA)成像中,并且可以进行优化以实现 PA 成像能力的重大进步。

目的

分析现有成像技术的测试体模的材料特性、结构特征和制造方法,为其在 PA 成像中的适用性提供有价值的见解。这项研究使我们能够更深入地了解如何有效地将体模应用于 PA 成像中。

方法

开发了三种主要类型的测试体模(简单、中级和高级)来区分复杂性和制造要求。此外,还确定了四个子类(管/通道、块、测试目标和天然体模)来包含这些类别中的结构变化,从而形成了测试体模的全面分类系统。

结果

通过对各种成像模式中的体模文献和研究的全面检查,提出了开发多个具有 PA 能力的体模的建议,其中包括与材料组成、结构设计以及每个子类中特定应用相关的考虑因素。

结论

每个子类中新型和复杂测试体模的发展有望促进 PA 成像的商业化和发展取得重大进展。此外,测试体模的不断改进将能够探索 PA 成像的新应用和用例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3188/10442662/588154cdb9cf/JBO-028-080903-g001.jpg

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