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A stereotaxic atlas of the grey lesser mouse lemur brain (Microcebus murinus)
1Neuromorphologie Fonctionelle, Ecole Pratique des Hautes Etudes, Université de Montpellier 2, France. ephemcb@crit.univ-montp2.fr
Abstract:
In response to the growing interest in the prosimian Microcebus murinus for studies on cerebral aging, the stereotaxic atlas of its brain was carried out in view of further anatomical, biochemical, electrophysiological, and behavioral investigations as well as for therapeutic experiments. This primate, which could be a valuable model for neuroscientific studies in various domains, presents numerous physiological advantages (e.g., size, cost, and ability to breed) compared to rodents, which can be used as nonprimate models, and simians. The atlas, valid for adult microcebes of every age and both sexes, consists of 54 frontal plates and 28 sagittal plates. For the establishment of stereotaxic coordinates and for drawings and photographs, 10 adult specimens of Microcebus murinus were used. The brains were frozen, cut into sections of 50 microm thickness, every fourth section being stained with Nissl. First, sections were projected and the outlines of the different structures, nuclei, and fibers were drawn. Then, the accuracy of the analysis was improved by detailed observation directly by microscope and also by computer analysis. Finally, the photographs of the sections were scanned and processed using the software Photoshop and Illustrator. For testing coordinates, several verifications were made. Experiments on lesions and injections of different substances were carried out in specific regions of the brain and brains implanted with needles were fixed in formol and embedded in paraffin wax.
Insights
A new stereotaxic atlas for the gray mouse lemur (Microcebus murinus) brain is now available. This resource supports neuroscience research, offering advantages over rodent and simian models for studying brain aging.
Area of Science:
- Neuroscience
- Comparative Anatomy
- Primate Research
Background:
- Growing interest in Microcebus murinus as a model for cerebral aging studies.
- Need for precise anatomical reference for advanced research.
- Microcebus murinus offers physiological advantages over rodents and simians.
Purpose of the Study:
- To create a comprehensive stereotaxic atlas of the Microcebus murinus brain.
- To facilitate anatomical, biochemical, electrophysiological, and behavioral investigations.
- To support therapeutic experiments and neuroscientific studies.
Main Methods:
- Utilized 10 adult Microcebus murinus specimens.
- Brains were sectioned at 50 microm thickness, with Nissl staining.
- Combined microscopic and computer-assisted analysis for accuracy.
- Photographs processed using Photoshop and Illustrator software.
Main Results:
- Developed a stereotaxic atlas comprising 54 frontal and 28 sagittal plates.
- Established accurate stereotaxic coordinates for brain structures.
- Verified coordinate accuracy through lesion and injection experiments.
Conclusions:
- The atlas is a valuable tool for Microcebus murinus neuroscience research.
- It aids in understanding cerebral aging and other brain functions.
- Provides a crucial reference for future anatomical and experimental studies.