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Automatic Echographic Detection of Halloysite Clay Nanotubes in a Low Concentration Range

机译:低浓度范围内埃洛石粘土纳米管的自动电子照相检测

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摘要

Aim of this work was to investigate the automatic echographic detection of an experimental drug delivery agent, halloysite clay nanotubes (HNTs), by employing an innovative method based on advanced spectral analysis of the corresponding “raw” radiofrequency backscatter signals. Different HNT concentrations in a low range (5.5–66 × 1010 part/mL, equivalent to 0.25–3.00 mg/mL) were dispersed in custom-designed tissue-mimicking phantoms and imaged through a clinically-available echographic device at a conventional ultrasound diagnostic frequency (10 MHz). The most effective response (sensitivity = 60%, specificity = 95%), was found at a concentration of 33 × 1010 part/mL (1.5 mg/mL), representing a kind of best compromise between the need of enough particles to introduce detectable spectral modifications in the backscattered signal and the necessity to avoid the losses of spectral peculiarity associated to higher HNT concentrations. Based on theoretical considerations and quantitative comparisons with literature-available results, this concentration could also represent an optimal concentration level for the automatic echographic detection of different solid nanoparticles when employing a similar ultrasound frequency. Future dedicated studies will assess the actual clinical usefulness of the proposed approach and the potential of HNTs for effective theranostic applications.
机译:这项工作的目的是通过采用基于相应“原始”射频反向散射信号的高级频谱分析的创新方法,研究实验性药物释放剂埃洛石粘土纳米管(HNT)的自动回波成像检测。将低范围(5.5–66×10 10 份/ mL,相当于0.25–3.00 mg / mL)中的不同HNT浓度分散在定制设计的组织模拟体模中,并通过临床上在常规超声诊断频率(10 MHz)下可用的超声成像设备。在浓度为33×10 10 份/ mL(1.5 mg / mL)时,发现了最有效的响应(灵敏度= 60%,特异性= 95%),代表了一种最佳的折衷方案。需要足够的粒子在后向散射信号中引入可检测的光谱修改,并且有必要避免与更高的HNT浓度相关的光谱特性的损失。基于理论上的考虑和与文献可得结果的定量比较,当采用相似的超声频率时,该浓度也可以代表自动回波检测不同固体纳米颗粒的最佳浓度水平。未来的专门研究将评估所提出方法的实际临床实用性以及HNT在有效治疗学应用中的潜力。

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