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Improvement of signal-to-noise ratio of optoacoustic signals from double-walled carbon nanotubes by using an array of dual-wavelength high-power diode lasers

机译:通过使用双波长高功率二极管激光器阵列提高来自双壁碳纳米管的光声信号的信噪比

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Optoacoustic (OA) imaging is a rising biomedical technique that has attracted much interest over the last 15 years. This technique permits to visualize the internal soft tissues in depth by using short laser pulses, able to generate ultrasonic signals in a large frequency range. It combines the high contrast of optical imaging with the high resolution of ultrasound systems. The OA signals detected from the whole surface of the body serve to reconstruct in detail the image of the internal tissues, where the absorbed optical energy distribution outlines the regions of interest. In fact, the use of contrast agents could improve the detection of growing anomalies in soft tissues, such as carcinomas. This work proposes the use of double-walled carbon nanotubes (DWCNTs) as a potential nontoxic biodegradable contrast agent applicable in OA to reveal the presence of malignant in-depth tissues in near-infrared (NIR) wavelength range (0.75-1.4 μm), where the biological tissues are fairly transparent to optical radiation. A dual-wavelength (870 and 905 nm) OA system is presented, based on arrays of high power diode lasers (HPDLs) that generate ultrasound signals from a DWCNT solution embedded within a biological phantom. The OA signals generated by DWCNTs are compared with those obtained using black ink, considered to be a very good absorber at these wavelengths. The experiments prove that DWCNTs are a potential contrast agent for optoacoustic spectroscopy (OAS).
机译:光声(OA)成像是一种新兴的生物医学技术,在过去的15年中引起了人们的极大兴趣。该技术允许通过使用短激光脉冲可视化内部软组织的深度,能够产生较大频率范围内的超声信号。它结合了光学成像的高对比度和超声系统的高分辨率。从人体整个表面检测到的OA信号用于详细重建内部组织的图像,其中吸收的光能分布勾勒出了感兴趣的区域。实际上,使用造影剂可以改善对软组织(例如癌)中生长异常的检测。这项工作建议使用双壁碳纳米管(DWCNT)作为可用于OA的潜在无毒生物可降解造影剂,以揭示在近红外(NIR)波长范围(0.75-1.4μm)中存在恶性深度组织,生物组织对光辐射相当透明的地方。基于高功率二极管激光器(HPDL)阵列,提出了一种双波长(870和905 nm)OA系统,该阵列从嵌入在生物体模中的DWCNT解决方案生成超声信号。将DWCNT生成的OA信号与使用黑色墨水获得的OA信号进行比较,黑色墨水在这些波长下被认为是非常好的吸收剂。实验证明DWCNT是光声光谱(OAS)的潜在对比剂。

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