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A Dual Frequency Ultrasound Technique for the Improved Detection of Bimodal Nanosized Contrast Agents

机译:改进双峰纳米造影剂检测的双频超声技术。

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Every biomedical imaging technique exploits different physical principles and can provide peculiar information, which is often unachievable with different techniques and can be further enhanced by the employment of suitable contrast agents (CAs). However, each imaging technique typically requires its own specific CAs, with corresponding increments of procedure duration, costs and invasiveness for the patients, who should undergo two injections. In the last years, great effort has been addressed toward the development of multimodal CAs that can be real-time detected by different techniques. In this context, we developed a new type of bimodal nanoparticles (NPs), consisting of silica nanospheres (NSs) covered by an outer shell of smaller superparamagnetic NPs, to be used as dual-mode imaging CAs for ultrasound and magnetic resonance imaging techniques. Aim of the present study was to evaluate the echographic detectability of these bimodal NPs through a recently developed algorithm that was originally implemented to detect pure silica NSs. In particular, we performed a series of “in vitro” experiments on custom-designed tissue- mimicking phantoms, focused on a specific objective of direct clinical interest: the detection of multimodal NPs with a diameter of about 330 nm at a low and biocompatible volume concentration (0.2 %). The obtained results demonstrated the possibility of deleting the US echoes coming from structures other than NPs with high effectiveness, therefore enhancing the brightness of nanosized contrast agents in the final diagnostic images. The effectiveness of the proposed method shows very promising perspectives for future clinical applications.
机译:每种生物医学成像技术都利用不同的物理原理,并且可以提供特殊的信息,而这通常是使用不同技术无法实现的,并且可以通过使用合适的造影剂(CA)来进一步增强。但是,每种成像技术通常需要其自己的特定CA,对于需要两次注射的患者,其手术时间,成本和侵入性都有相应的增加。在过去的几年中,人们致力于开发可通过不同技术实时检测的多模式CA。在这种情况下,我们开发了一种新型的双峰纳米颗粒(NPs),它由被较小的超顺磁性NPs的外壳覆盖的二氧化硅纳米球(NSs)组成,可用作超声和磁共振成像技术的双模成像CA。本研究的目的是通过最近开发的算法来评估这些双峰NP的回波成像可检测性,该算法最初用于检测纯二氧化硅NS。尤其是,我们针对定制设计的组织模拟体模进行了一系列“体外”实验,着眼于直接临床关注的特定目标:以低且生物相容的体积检测直径约为330 nm的多峰NP浓度(0.2%)。获得的结果表明,可以高效删除来自NP以外结构的US回波,从而提高最终诊断图像中纳米级造影剂的亮度。所提出的方法的有效性为未来的临床应用显示了非常有前途的前景。

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