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Multiple emulsion microbubbles for ultrasound imaging

机译:用于超声成像的多个乳剂微泡

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In order to improve the sensitivity of ultrasound imaging, the contrast agents, a powerful non-invasive and real-time medical imaging technique, are used. However, air or N_2 or perfluorocarbon only encapsulated microbubbles which are currently used have lower efficiency and short imaging time. So the novel contrast agents with a higher efficiency are required. To achieve this objective, the strategy that we have explored involves the use of superparamagnetic iron oxide (SPIO) Fe_3O_4 nanoparticles multilayer emulsion microbubbles. This multilayer structure consists of three layers. The core is poly-D, L-lactide (PLA) encapsulated N_2 nanobubble with the SPIO nanoparticles forming oil-in-water (W/O) layer. The outermost is water-in-oil-in-water ((W/O)/W) emulsion layer with PVA solution. Herein we describe the synthesis and characterization of ultrasound imaging microstructure with an overall diameter of around 2μm-8μm. On the one hand, the stable gas encapsulated microstructure can provide a high scattering intensity resulting in high echogenicity, On the other hand, SPIO nanoparticles have shown the potential of high-resolution sonography. So the multiple emulsion microbubbles with SPIO can have double action to enhance the ultrasound imaging. Besides, because SPIO can also serve as magnetic resonance imaging (MRI) contrast agents, such microstructure may be useful for multimodality imaging studies in ultrasound imaging and MRI.
机译:为了提高超声成像的灵敏度,使用了一种强大的无创实时医学成像技术-造影剂。然而,目前使用的仅空气或N_2或全氟化碳的包封微泡具有较低的效率和较短的成像时间。因此,需要具有更高效率的新型造影剂。为了实现此目标,我们探索的策略涉及使用超顺磁性氧化铁(SPIO)Fe_3O_4纳米颗粒多层乳液微泡。该多层结构由三层组成。核心是聚D,L-丙交酯(PLA)包裹的N_2纳米气泡,其中SPIO纳米颗粒形成水包油(W / O)层。最外层是带有PVA溶液的水包油包水型((W / O)/ W)乳剂层。在这里,我们描述了超声成像微观结构的合成和表征,其总直径约为2μm-8μm。一方面,稳定的气体封装微结构可提供高散射强度,从而产生高回声性;另一方面,SPIO纳米粒子已显示出高分辨率超声检查的潜力。因此,带有SPIO的多重乳剂微气泡可以起双重作用,以增强超声成像。此外,由于SPIO还可以用作磁共振成像(MRI)造影剂,因此这种微结构可能对超声成像和MRI中的多模态成像研究有用。

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