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Cerebellum tissue, light micrograph
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Cerebellum tissue, light micrograph
Cerebellum tissue. Confocal light micrograph of a section through the cerebellum of the brain showing two types of glial cells (support cells); astrocytes (star-shaped) and radial glial cells (elongated cells). Glial cells provide structural support, and nutrients and oxygen for the neurons (nerve cells). The cerebellum controls balance, posture and muscle coordination
Science Photo Library features Science and Medical images including photos and illustrations
Media ID 1697855
© C.J.GUERIN, PhD, MRC TOXICOLOGY UNIT/SCIENCE PHOTO LIBRARY
Astrocyte Central Nervous System Cerebellar Cerebellum Confocal Light Micrograph Dendrite Dendrites Fluorescence Fluorescent Glia Grey Matter Histological Histology Immunofluorescence Immunofluorescent Nerve Cell Nervous Nuclei Stain Support Cell System Brain Cells Light Micrograph Light Microscope Neurological Neurology Section Sectioned
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This print showcases the intricate beauty of cerebellum tissue, as captured through a confocal light micrograph. The image reveals two distinct types of glial cells that play vital roles in supporting brain function. First, we see astrocytes, characterized by their star-shaped appearance, which provide structural support and ensure the neurons receive essential nutrients and oxygen. Alongside them are radial glial cells, elongated in shape, further contributing to the complex network within the cerebellum. The cerebellum itself is responsible for crucial functions such as balance control, posture maintenance, and muscle coordination. This microscopic view offers a glimpse into the remarkable complexity underlying these abilities. Through advanced staining techniques and fluorescent imaging methods employed in histology research, this photograph provides an insight into both the anatomical structure and cellular composition of this region within our central nervous system. The grey matter is clearly visible alongside dendrites extending from nerve cells. Immunofluorescent labeling highlights specific nuclei within these glial cells while maintaining an overall focus on their role in neurological processes. This visually striking print serves as a testament to the wonders of biology and neuroscience while reminding us of how intricately interconnected our bodies truly are.
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