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采用多段式探测器的脉冲-回波超声与多谱段光声断层成像技术。

Combined Pulse-Echo Ultrasound and Multispectral Optoacoustic Tomography With a Multi-Segment Detector Array.

出版信息

IEEE Trans Med Imaging. 2017 Oct;36(10):2129-2137. doi: 10.1109/TMI.2017.2706200. Epub 2017 May 18.

Abstract

The high complementarity of ultrasonography and optoacoustic tomography has prompted the development of combined approaches that utilize the same transducer array for detecting both optoacoustic and pulse-echo ultrasound responses from tissues. Yet, due to the fundamentally different physical contrast and image formation mechanisms, the development of detection technology optimally suited for image acquisition in both modalities remains a major challenge. Herein, we introduce a multi-segment detector array approach incorporating array segments of linear and concave geometry to optimally support both ultrasound and optoacoustic image acquisition. The various image rendering strategies are tested and optimized in numerical simulations and calibrated tissue-mimicking phantom experiments. We subsequently demonstrate real-time hybrid optoacoustic ultrasound image acquisition in a healthy volunteer. The new approach enables the acquisition of high-quality anatomical data by both modalities complemented by functional information on blood oxygenation status provided by the multispectral optoacoustic tomography.

摘要

超声和光声断层扫描具有高度互补性,促使人们开发出了结合方法,该方法利用相同的换能器阵列来检测组织的光声和脉冲回波超声响应。然而,由于物理对比度和成像机制基本不同,开发最适合两种模式图像采集的检测技术仍然是一个主要挑战。在这里,我们引入了一种多段探测器阵列方法,该方法结合了线性和凹面几何形状的阵列段,以最佳地支持超声和光声图像采集。在数值模拟和校准的组织模拟体实验中对各种图像渲染策略进行了测试和优化。随后,我们在健康志愿者中演示了实时混合光声超声图像采集。新方法通过两种模式采集高质量的解剖数据,并通过多光谱光声断层扫描提供有关血氧状态的功能信息进行补充。

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