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首页> 外文期刊>Journal of Neuroscience Methods >In vivo detection of experimentally induced cortical dysgenesis in the adult rat neocortex using optical coherence tomography.
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In vivo detection of experimentally induced cortical dysgenesis in the adult rat neocortex using optical coherence tomography.

机译:使用光学相干层析成像技术在体内检测成年大鼠新皮层中实验诱导的皮质发育不全。

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摘要

Imaging cerebral structure in vivo can be accomplished by many methods, including MRI, ultrasound, and computed tomography. Each offers advantages and disadvantages with respect to the others, but all are limited in spatial resolution to millimeter-scale features when used in routine applications. Optical coherence tomography (OCT) is a new, high resolution imaging technique which uses light to directly image living tissue. Here, we investigate the potential use of OCT for structural imaging of the fully developed mammalian cerebral cortex. In particular, we show that OCT can perform in vivo detection of neocortex and differentiate normal and abnormal cortical anatomy. We present the results of detailed optical coherence tomographic (OCT) observations of both normal and abnormal rat neocortex obtained in vivo. Comparative histologic analysis shows excellent correlation with the OCT tomograms.
机译:体内大脑结构成像可通过多种方法完成,包括MRI,超声和计算机断层扫描。每种方法相对于其他方法都有优点和缺点,但是当在常规应用中使用时,所有方法在空间分辨率上都限于毫米级特征。光学相干断层扫描(OCT)是一种新的高分辨率成像技术,该技术使用光直接对活组织成像。在这里,我们调查OCT潜在用途的充分发展的哺乳动物大脑皮质的结构成像。特别是,我们显示OCT可以在体内执行新皮质的检测,并区分正常和异常的皮质解剖结构。我们介绍了体内获得的正常和异常大鼠新皮层的详细光学相干断层扫描(OCT)观察结果。比较的组织学分析显示与OCT断层图非常相关。

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