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In vivo imaging of blood flow in murine brain using angular coherence methods

机译:使用角相干方法对鼠脑中的血流进行体内成像

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Recently, ultrafast Doppler techniques have been proposed for imaging brain and other slow flow targets. These techniques rely on synthetic focusing and the use of large ensemble lengths to separate slow-flow signal from the stationary clutter, but are susceptible to high acoustic and thermal noise. We have recently developed the short-lag angular coherence (SLAC) method, which suppresses the incoherent portion of the beam-summed signals and utilizes fast beamforming techniques for processing large Doppler ensembles. Here, we demonstrate SLAC-based PD by imaging blood flow in the brain of a mouse through the intact skull and show improved sensitivity compared to conventional PD.
机译:近来,已经提出了用于对大脑和其他慢流量目标成像的超快多普勒技术。这些技术依靠合成聚焦和使用大的合奏长度来将缓慢流动的信号与静止的杂波分开,但是容易受到高声和热噪声的影响。最近,我们开发了短时滞角相干(SLAC)方法,该方法可抑制波束求和信号的非相干部分,并利用快速波束成形技术来处理大型多普勒合奏。在这里,我们通过成像通过完整的颅骨的小鼠大脑中的血流来证明基于SLAC的PD,并且与传统的PD相比,它显示出更高的灵敏度。

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