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一种用于促进分子成像的经济型便携式基于发光二极管的光声成像系统的特性描述。

The characterization of an economic and portable LED-based photoacoustic imaging system to facilitate molecular imaging.

作者信息

Hariri Ali, Lemaster Jeanne, Wang Junxin, Jeevarathinam AnanthaKrishnan S, Chao Daniel L, Jokerst Jesse V

机构信息

Department of NanoEngineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92092, United States.

Shiley Eye Institute, Department of Ophthalmology, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92092, United States.

出版信息

Photoacoustics. 2017 Nov 26;9:10-20. doi: 10.1016/j.pacs.2017.11.001. eCollection 2018 Mar.

Abstract

Photoacoustic imaging (PAI) is a non-invasive, high-resolution hybrid imaging modality that combines optical excitation and ultrasound detection. PAI can image endogenous chromophores (melanin, hemoglobin, etc.) and exogenous contrast agents in different medical applications. However, most current equipment uses sophisticated and complicated OPO lasers with tuning and stability features inconsistent with broad clinical deployment. As the number of applications of PAI in medicine increases, there is an urgent need to make the imaging equipment more compact, portable, and affordable. Here, portable light emitting diode - based photoacoustic imaging (PLED-PAI) was introduced and characterized in terms of system specifications, light source characterizations, photoacoustic spatial/temporal resolution, and penetration. The system uses two LED arrays attached to the sides of a conventional ultrasound transducer. The LED pulse repetition rate is tunable between 1 K Hz, 2 K Hz, 3 K Hz, and 4 K Hz. The axial resolution was 0.268 mm, and the lateral resolution was between 0.55 and 0.59 mm. The system could detect optical absorber (pencil lead) at a depth of 3.2 cm and the detection limits of indocyanine green (ICG) and methylene blue (MB) were 9 μM and 0.78 mM. imaging of labeled human mesenchymal stem cells was achieved to confirm compatibility with small animal imaging. The characterization we report here may have value to other groups evaluating commercially available photoacoustic imaging equipment.

摘要

光声成像(PAI)是一种非侵入性的高分辨率混合成像方式,它结合了光学激发和超声检测。在不同的医学应用中,PAI能够对内源性发色团(黑色素、血红蛋白等)和外源性造影剂进行成像。然而,目前大多数设备使用的是复杂且精密的光参量振荡(OPO)激光器,其调谐和稳定性特性与广泛的临床应用不匹配。随着PAI在医学领域应用数量的增加,迫切需要使成像设备更加紧凑、便携且价格合理。在此,介绍了基于便携式发光二极管的光声成像(PLED-PAI),并从系统规格、光源特性、光声空间/时间分辨率以及穿透深度等方面对其进行了表征。该系统使用两个附着在传统超声换能器两侧的发光二极管阵列。发光二极管的脉冲重复频率可在1千赫兹、2千赫兹、3千赫兹和4千赫兹之间调节。轴向分辨率为0.268毫米,横向分辨率在0.55至0.59毫米之间。该系统能够检测到深度为3.2厘米处的光学吸收体(铅笔芯),吲哚菁绿(ICG)和亚甲蓝(MB)的检测限分别为9微摩尔和0.78毫摩尔。实现了对标记的人间充质干细胞的成像,以确认其与小动物成像的兼容性。我们在此报告的表征可能对其他评估市售光声成像设备的团队具有参考价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3fd/5723278/098e8a5a7254/fx1.jpg

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