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环形阵列作为一种体声波光声超声手持探头的理论特性研究。

Theoretical characterization of annular array as a volumetric optoacoustic ultrasound handheld probe.

机构信息

Université de Lyon, Université Claude Bernard Lyon 1, CREATIS, CNRS UMR5220, Inserm U1044, INSA-Lyon, France.

出版信息

J Biomed Opt. 2018 Feb;23(2):1-9. doi: 10.1117/1.JBO.23.2.025004.

DOI:10.1117/1.JBO.23.2.025004
PMID:29488361
Abstract

Optoacoustic ultrasound (OPUS) is a promising hybridized technique for simultaneous acquisition of functional and morphological data. The optical specificity of optoacoustic leverages the diagnostic aptitude of ultrasonography beyond anatomy. However, this integration has been rarely practiced for volumetric imaging. The challenge lies in the effective imaging probes that preserve the functionality of both modalities. The potentials of a sparse annular array for volumetric OPUS imaging are theoretically investigated. In order to evaluate and optimize the performance characteristics of the probe, series of analysis in the framework of system model matrix was carried out. The two criteria of voxel crosstalk and eigenanalysis have been employed to unveil information about the spatial sensitivity, aliasing, and number of definable spatial frequency components. Based on these benchmarks, the optimal parameters for volumetric handheld probe are determined. In particular, the number, size, and the arrangement of the elements and overall aperture dimension were investigated. The result of the numerical simulation suggests that the segmented-annular array of 128 negatively focused elements with 1λ  ×  20λ size, operating at 5-MHz central frequency showcases a good agreement with the physical requirement of both imaging systems. We hypothesize that these features enable a high-throughput volumetric passive/active ultrasonic imaging system with great potential for clinical applications.

摘要

光声超声(OPUS)是一种很有前途的混合技术,可同时获取功能和形态数据。光声的光学特异性利用超声的诊断能力超越了解剖学。然而,这种融合在容积成像中很少实践。挑战在于保留两种模式功能的有效成像探头。稀疏环形阵列在容积 OPUS 成像中的潜力在理论上进行了研究。为了评估和优化探头的性能特征,在系统模型矩阵的框架内进行了一系列分析。使用体素串扰和特征分析这两个标准来揭示有关空间灵敏度、混叠和可定义空间频率分量数量的信息。基于这些基准,确定了用于容积手持式探头的最佳参数。特别地,研究了元件的数量、大小和排列以及总孔径尺寸。数值模拟的结果表明,具有 1λ × 20λ 尺寸的 128 个负聚焦元件的分段环形阵列,工作在 5MHz 中心频率,与两种成像系统的物理要求非常吻合。我们假设这些特性可以实现高通量的容积被动/主动超声成像系统,具有很大的临床应用潜力。

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引用本文的文献

1
Sparse sampling and reconstruction for an optoacoustic ultrasound volumetric hand-held probe.用于光声超声容积式手持探头的稀疏采样与重建
Biomed Opt Express. 2019 Mar 4;10(4):1545-1556. doi: 10.1364/BOE.10.001545. eCollection 2019 Apr 1.