Dual-modal photoacoustic (PA) and ultrasound (US) contrast agents are becoming increasingly popular in recent years. Here, a flow-focusing junction based microfluidic device is used for the generation of nitrogen microbubbles (<7 μm) in two photoacoustic contrast agents: methylene blue (MB) and black ink (BI). The microbubble diameter and production rate could be precisely controlled in both MB and BI solutions. Microbubbles were collected from the outlet of the microfluidic device and optical microscope was used to study the size distributions in both solutions. Next, the microbubbles in both solutions were injected into tubes for phantom imaging experiments. Signal to noise ratio (SNR) of both US, PA imaging experiments were calculated to be 51âdB, 58âdB in MBâ+âmicrobubbles and 56âdB, 61âdB in BIâ+âmicrobubbles, respectively. Finally, the microbubbles were injected into the urinary bladder of rats for in vivo animal imaging. The SNR in US imaging with MBâ+âmicrobubbles and BIâ+âmicrobubbles were 41âdB and 48âdB, respectively. Similarly, the SNR in PA imaging with the same solutions were 32âdB and 36âdB, respectively. The effect of size and concentration of microbubbles in both MB and BI solutions, on the US and PA signals, has been examined.
On-chip generation of microbubbles in photoacoustic contrast agents for dual modal ultrasound/photoacoustic in vivo animal imaging.
用于双模态超声/光声体内动物成像的光声造影剂中微泡的芯片上生成
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作者:Das Dhiman, Sivasubramanian Kathyayini, Yang Chun, Pramanik Manojit
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2018 | 起止号: | 2018 Apr 23; 8(1):6401 |
| doi: | 10.1038/s41598-018-24713-4 | 研究方向: | 其它 |
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