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手持式光声探头的血管可视化:体模和体内验证。

Visualization of vasculature using a hand-held photoacoustic probe: phantom and in vivo validation.

机构信息

Eindhoven University of Technology, Cardiovascular Biomechanics Group, Department of Biomedical Engineering, The Netherlands.

出版信息

J Biomed Opt. 2017 Apr 1;22(4):41013. doi: 10.1117/1.JBO.22.4.041013.

Abstract

Assessment of microvasculature and tissue perfusion can provide diagnostic information on local or systemic diseases. Photoacoustic (PA) imaging has strong clinical potential because of its sensitivity to hemoglobin. We used a hand-held PA probe with integrated diode lasers and examined its feasibility and validity in the detection of increasing blood volume and (sub) dermal vascularization. Blood volume detection was tested in custom-made perfusion phantoms. Results showed that an increase of blood volume in a physiological range of 1.3% to 5.4% could be detected. The results were validated with power Doppler sonography. Using a motorized scanning setup, areas of the skin were imaged at relatively short scanning times ( < 10 ?? s / cm 2 ) with PA. Three-dimensional visualization of these structures was achieved by combining the consecutively acquired cross-sectional images. Images revealed the epidermis and submillimeter vasculature up to depth of 5 mm. The geometries of imaged vasculature were validated with segmentation of the vasculature in high-frequency ultrasound imaging. This study proves the feasibility of PA imaging in its current implementation for the detection of perfusion-related parameters in skin and subdermal tissue and underlines its potential as a diagnostic tool in vascular or dermal pathologies.

摘要

微血管和组织灌注的评估可以提供局部或全身疾病的诊断信息。光声(PA)成像是一种很有临床应用潜力的方法,因为它对血红蛋白很敏感。我们使用了一种带有集成二极管激光器的手持式 PA 探头,并检验了它在检测逐渐增加的血管容量和(亚)皮肤血管化方面的可行性和有效性。在定制的灌注体模中对血管容量检测进行了测试。结果表明,可以检测到生理范围内 1.3%至 5.4%的血管容量增加。使用功率多普勒超声对结果进行了验证。使用带电机的扫描装置,在相对较短的扫描时间(<10 μs/cm 2 )下使用 PA 对皮肤区域进行成像。通过组合连续获取的横截面图像实现了这些结构的三维可视化。这些图像显示了表皮和亚毫米级血管,深度可达 5 毫米。使用高频超声成像对血管进行分割,验证了所成像血管的几何形状。这项研究证明了当前 PA 成像在检测皮肤和皮下组织中的灌注相关参数方面的可行性,并强调了其作为血管或皮肤病变诊断工具的潜力。

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