نتایج جستجو برای: ultrasound microbubble

تعداد نتایج: 109355  

2011
Zhaoxia Pu Xiangdong You Qiyuan Xu Feng Gao Xiaojie Xie Hong Zhang Wang Jian'an

Ultrasound-targeted microbubble destruction (UTMD) has been proposed as a new technique for organ-specific gene transfer and drug delivery. This study was performed to investigate the effect of UTMD on marrow mesenchymal stem cells (MSCs) transfected with pcDNA3.1⁻-hVEGF₁₆₅.pcDNA3.1⁻-hVEGF₁₆₅ were transfected into the third passage of MSCs, with or without UTMD under different ultrasound condit...

Journal: :Medical ultrasonography 2014
Zeno Spârchez Pompilia Radu

The introduction of microbubble contrast agents (CA), which act as blood pool tracers, has overcome the limitations of conventional B-Mode, colour or power Doppler ultrasound, enabling the display of parenchymal microvasculature. Initially, the use of CA was accepted for hepatic lesions. In the following years, experts have expanded recommendations, as a result of the method's efficiency in ext...

2015
Nathan McDannold

Background/introduction The combination of focused ultrasound and an intravenously-injected microbubble ultrasound contrast agent offers the ability to reduce the power needed to ablate tissue, which is particularly important for targets in the brain since it can eliminate skull heating. When applied at a low duty cycle so that bulk tissue heating does not occur, the mechanical effects induced ...

Journal: :Journal of the Royal Society, Interface 2014
Xian Chen Ruen Shan Leow Yaxin Hu Jennifer M F Wan Alfred C H Yu

Sonoporation is based upon an ultrasound-microbubble cavitation routine that physically punctures the plasma membrane on a transient basis. During such a process, the actin cytoskeleton may be disrupted in tandem because this network of subcellular filaments is physically interconnected with the plasma membrane. Here, by performing confocal fluorescence imaging of single-site sonoporation episo...

2016
Jinlong Zhang Shengzheng Wu Yongliang Liu Lu Qiao Wenhong Gao Weiguo Zhang Zheng Liu

Previous studies have shown a unique method to disrupt tumor vasculature using pulsed, high-pressure amplitude therapeutic ultrasound combined with microbubbles. In this study, we attempted to destroy the prostate vasculature of canine prostates using microbubble-enhanced ultrasound (MEUS) and prothrombin. The prostates of 43 male mongrel canines were surgically exposed. Twenty-two prostates we...

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