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Photoacoustic and Thermoacoustic Imaging Application in Cancer Early Detection and Treatment Monitoring

机译:癌症早期检测和治疗监测中的光声和热声成像应用

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Laser-based photoacoustic imaging and microwave-based thermoacoustic imaging, combining the advantages of both the high image contrast that results from electromagnetic absorption and the high resolution of ultrasound imaging, could be the next successful generation imaging techniques in biomedical application. It can provide an effective approach of tissue structure and functional images to study the architectures, physiological and pathological properties and metabolisms of biological tissues. This paper is focused on photoacoustic and thermoacoustic imaging application in cancer early detection and treatment monitoring. A unique photoacoustic imaging system was used to detect tumors neovascularization associated with angiogenesis in a rat animal model. We also developed the imaging system to monitor the vascular damage during photodynamic therapy treatment. This method could be potentially used to guide PDT and other phototherapies using vascular changes during treatment to optimize treatment protocols, by choosing appropriate types and doses of photosensitizers, and doses of light. Potentially development of photoacoustic imaging and thermoacoustic imaging to employing in functional and molecular imaging also has been discussed. Especially, these imaging modalities can be further developed by using the contrast agents which modified with tumor-targeting antibodies to realize cancer early detection and cancer target treatment monitoring.
机译:基于激光的光声成像和基于微波的热声成像,结合两者的高图像对比度,从电磁吸收和超声成像的高分辨率的结果,可能是在生物医学应用的下一个成功产生成像技术的优点。它可以提供组织结构和功能图像的有效方法,以研究生物组织的架构,生理和病理特性和代谢。本文集中于癌症早期检测和治疗监测中的光声和热声成像应用。使用独特的光声成像系统用于检测与大鼠动物模型中血管生成相关的肿瘤新血管形成。我们还开发了在光动力治疗过程中监测血管损伤的成像系统。该方法可能用于通过在治疗过程中使用血管变化来引导PDT和其他光疗法,以通过选择适当的类型和剂量的光敏剂和剂量的光敏剂来优化治疗方案。已经讨论了光声成像和热声成像对使用功能和分子成像的热声成像的潜在发展。特别是,这些成像模式可以进一步通过使用与肿瘤靶向抗体实现癌症的早期检测和癌症靶治疗监测改性造影剂显影。

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