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Comparison of the optoacoustic signal generation efficiency of different nanoparticular contrast agents

机译:不同纳米颗粒造影剂的光声信号产生效率比较

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Optoacoustic imaging represents a new modality that allows noninvasive in vivo molecular imaging with optical contrast and acoustical resolution. Whereas structural or functional imaging applications such as imaging of vasculature do not require contrast enhancing agents, nanoprobes with defined biochemical binding behavior are needed for molecular imaging tasks. Since the contrast of this modality is based on the local optical absorption coefficient, all particle or molecule types that show significant absorption cross sections in the spectral range of the laser wavelength used for signal generation are suitable contrast agents. Currently, several particle types such as gold nanospheres, nanoshells, nanorods, or polymer particles are used as optoacoustic contrast agents. These particles have specific advantages with respect to their absorption properties, or in terms of biologically relevant features (biodegradability, binding to molecular markers). In the present study, a comparative analysis of the signal generation efficiency of gold nanorods, polymeric particles, and magnetite particles using a 1064 nm Nd:YAG laser for signal generation is described.
机译:光声成像代表了一种新的形式,它允许具有光学对比度和声学分辨率的无创体内分子成像。尽管结构或功能成像应用(例如脉管系统成像)不需要造影剂,但是分子成像任务需要具有确定的生化结合行为的纳米探针。由于这种模态的对比度基于局部光吸收系数,因此在用于信号生成的激光波长的光谱范围内显示出明显吸收截面的所有粒子或分子类型都是合适的造影剂。当前,几种颗粒类型,例如金纳米球,纳米壳,纳米棒或聚合物颗粒用作光声造影剂。这些颗粒就其吸收性质或生物学相关特征(生物可降解性,与分子标记物的结合)而言具有特定的优势。在本研究中,描述了使用1064 nm Nd:YAG激光器产生信号的金纳米棒,聚合物颗粒和磁铁矿颗粒的信号产生效率的比较分析。

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