首页> 外文会议>Conference on wavelets and sparsity XVI >Investigating the impact of blood pressure increase to the brain using high resolution serial histology and image processing
【24h】

Investigating the impact of blood pressure increase to the brain using high resolution serial histology and image processing

机译:使用高分辨率序列组织学和图像处理来研究血压增加到大脑的影响

获取原文

摘要

A combined serial OCT/confocal scanner was designed to image large sections of biological tissues at microscopic resolution. Serial imaging of organs embedded in agarose blocks is performed by cutting through tissue using a vibratome which sequentially cuts slices in order to reveal new tissue to image, overcoming limited light penetration encountered in microscopy. Two linear stages allow moving the tissue with respect to the microscope objective, acquiring a 2D grid of volumes (1×1×0.3 mm) with OCT and a 2D grid of images (1×1mm) with the confocal arm. This process is repeated automatically, until the entire sample is imaged. Raw data is then post-processed to re-stitch each individual acquisition and obtain a reconstructed volume of the imaged tissue. This design is being used to investigate correlations between white matter and microvasculature changes with aging and with increase in pulse pressure following transaortic constriction in mice. The dual imaging capability of the system allowed to reveal different contrast information: OCT imaging reveals changes in refractive indices giving contrast between white and grey matter in the mouse brain, while transcardial perfusion of FITC or pre-sacrifice injection of Evans Blue shows microsvasculature properties in the brain with confocal imaging.
机译:组合的串行OCT / Confocal扫描仪被设计为在微观分辨率下映像大截面的生物组织。嵌入琼脂糖嵌段的器官的连续成像通过使用vibriaTome切割组织来进行,所述振动术通过依次切割切片以揭示对图像的新组织,克服显微镜中遇到的有限的光渗透。两个线性级允许将组织相对于显微镜物镜移动,从CONC和2D图像(1×1mm)与共焦臂获取2D栅格(1×1×0.3mm)的2D网格。此过程自动重复,直到整个样本被成像。然后后处理原始数据以重新缝合每个单独的获取并获得成像组织的重建量。这种设计用于研究白质和微血管结构之间的相关性与老化的变化,并随着小鼠横向收缩后的脉冲压力的增加。系统的双重成像能力允许揭示不同的对比信息:OCT成像显示折射率的变化,在小鼠脑中具有对比的折射率,而FITC或牺牲预牺牲的转型灌注埃文斯蓝色显示微象性质大脑与共聚焦成像。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号