首页> 外文会议>Dynamics and fluctuations in biomedical photonics XV >Laser speckle imaging of brain blood flow through a transparent nanocrystalline yttria-stabilized-zirconia cranial implant
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Laser speckle imaging of brain blood flow through a transparent nanocrystalline yttria-stabilized-zirconia cranial implant

机译:通过透明的纳米晶氧化钇稳定氧化锆颅骨植入物对脑血流的激光散斑成像

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The laser speckle flowmetry methods based on laser speckle imaging (LSI) have attracted extensive attention recently because they can image brain blood flow with high spatiotemporal resolution. However, the poor transparency of the cranial bone limits the spatial resolution and the imaging depth. This problem has previously been addressed in animal studies by removing or thinning the skull to transparency. Nevertheless, a permanent and reliable solution has not yet been developed. Our study demonstrates a new method to address this challenge in biomedical imaging research, through the use of novel transparent cranial implants made from nanocrystalline yttria-stabilized zirconia (nc-YSZ). By applying LSI to underlying brain in an acute murine model, we show that spatial resolution and quantitative accuracy of blood flow measurement are improved when imaging through transparent nc-YSZ implants relative to native cranium. As such, these results provide the initial evidence supporting the feasibility of nc-YSZ transparent cranial implant as a clinically-viable long-term optical access for LSI on a chronically-recurring basis, thereby suppressing the need for repeated craniotomies. Successful development of this method has the potential to advance the study of neuropathologies or novel neuro-procedures in animal models where measurement of cerebral blood flow is of interest, such as blood flow changes during stroke, changes in blood flow due to functional activation, and spreading depolarization and its role in brain injuries, pathophysiology of migraine, and subarachnoid hemorrhage.
机译:最近,基于激光散斑成像(LSI)的激光散斑流量计方法吸引了广泛的关注,因为它们可以以高时空分辨率成像脑血流。但是,颅骨的透明度差限制了空间分辨率和成像深度。以前在动物研究中已经解决了此问题,方法是将头骨切除或变薄为透明。然而,尚未开发出永久且可靠的解决方案。我们的研究表明,通过使用由纳米晶氧化钇稳定的氧化锆(nc-YSZ)制成的新型透明颅骨植入物,可以解决生物医学成像研究中的这一挑战的新方法。通过将LSI应用于急性小鼠模型中的基础大脑,我们表明,相对于天然颅骨,通过透明nc-YSZ植入物成像时,血流测量的空间分辨率和定量准确性得到了改善。因此,这些结果提供了初步证据,证明nc-YSZ透明颅骨植入物可作为长期复发的LSI的临床可行的长期光学通路,从而抑制了重复进行颅骨切开术的需要。这种方法的成功开发可能会促进对动物模型中神经病理学或新型神经程序的研究,在这些模型中,需要测量脑血流,例如中风期间的血流变化,由于功能激活引起的血流变化以及扩散去极化及其在脑损伤,偏头痛的病理生理学和蛛网膜下腔出血中的作用。

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