首页> 外文期刊>Ultrasound in Medicine and Biology >ASSESSMENT OF THE VISCOELASTIC AND OSCILLATION PROPERTIES OF A NANO-ENGINEERED MULTIMODALITY CONTRAST AGENT
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ASSESSMENT OF THE VISCOELASTIC AND OSCILLATION PROPERTIES OF A NANO-ENGINEERED MULTIMODALITY CONTRAST AGENT

机译:纳米工程多模态对比剂的粘弹性和振动特性评估

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摘要

Combinations of microbubbles (MBs) and superparamagnetic iron oxide nanoparticles (SPIONs) are used to fabricate dual contrast agents for ultrasound and MRI. This study examines the viscoelastic and oscillation characteristics of two MB types that are manufactured with SPIONs and either anchored chemically on the surface (MBs-chem) or physically embedded (MBs-phys) into a polymer shell. A linearized Church model was employed to simultaneously fit attenuation coefficients and phase velocity spectra that were acquired experimentally. The model predicted lower viscoelastic modulus values, undamped resonance frequencies and total damping ratios for MBs-chem. MBs-chem had a resonance frequency of approximately 13 MHz and a damping ratio of approximately 0.9; thus, MBs-chem can potentially be used as a conventional ultrasound contrast agent with the combined functionality of MRI detection. In contrast, MBs-phys had a resonance frequency and damping of 28 MHz and 1.2, respectively, and requires further modification of clinically available contrast pulse sequences to be visualized.
机译:微泡(MBs)和超顺磁性氧化铁纳米颗粒(SPIONs)的组合用于制造超声和MRI的双重造影剂。这项研究检查了两种用SPIONs制造的MB类型的粘弹性和振动特性,这些MB类型是化学锚固在表面(MBs-chem)或物理嵌入(MBs-phys)到聚合物壳中的。采用线性教堂模型同时拟合通过实验获得的衰减系数和相速度谱。该模型预测了MBs-chem的较低的粘弹性模量值,未阻尼的共振频率和总阻尼比。 MBs-chem的共振频率约为13 MHz,阻尼比约为0.9;因此,MBs-chem可以潜在地用作具有MRI检测功能的常规超声造影剂。相比之下,MBs-phys的共振频率和阻尼分别为28 MHz和1.2,并且需要进一步修改临床上可用的对比脉冲序列以使其可视化。

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