4.3 Article Proceedings Paper

High-contrast differentiation resolution 3D imaging of rodent brain by X-ray computed microtomography

Journal

JOURNAL OF INSTRUMENTATION
Volume 13, Issue -, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1748-0221/13/02/C02039

Keywords

Computerized Tomography (CT) and Computed Radiography (CR); MRI (whole body, cardiovascular breast others), MR-angiography (MRA)

Funding

  1. Ministry of Education, Youth and Sports of the Czech Republic under the National Sustainability Programme II [LQ1601]
  2. CEITEC Nano Research Infrastructure (MEYS CR)
  3. Brno University of Technology [FSI-S-17-4506]
  4. Czech-BioImaging infrastructure grant [LM2015062]
  5. NSP II grant [LO1212]
  6. Ministry of Education, Youth and Sports of the Czech Republic [CZ.02.1.01/0.0/0.0/15_003/0000460]
  7. Czech Science Foundation [14-37368G]
  8. SSMF fellowship

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The biomedically focused brain research is largely performed on laboratory mice considering a high homology between the human and mouse genomes. A brain has an intricate and highly complex geometrical structure that is hard to display and analyse using only 2D methods. Applying some fast and efficient methods of brain visualization in 3D will be crucial for the neurobiology in the future. A post-mortem analysis of experimental animals' brains usually involves techniques such as magnetic resonance and computed tomography. These techniques are employed to visualize abnormalities in the brains' morphology or reparation processes. The X-ray computed microtomography (micro CT) plays an important role in the 3D imaging of internal structures of a large variety of soft and hard tissues. This non-destructive technique is applied in biological studies because the lab-based CT devices enable to obtain a several-micrometer resolution. However, this technique is always used along with some visualization methods, which are based on the tissue staining and thus differentiate soft tissues in biological samples. Here, a modified chemical contrasting protocol of tissues for a micro CT usage is introduced as the best tool for ex vivo 3D imaging of a post-mortem mouse brain. This way, the micro CT provides a high spatial resolution of the brain microscopic anatomy together with a high tissue differentiation contrast enabling to identify more anatomical details in the brain. As the micro CT allows a consequent reconstruction of the brain structures into a coherent 3D model, some small morphological changes can be given into context of their mutual spatial relationships.

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