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Fine Art Print : Cerebellum tissue, light micrograph
Fine Art Prints From Science Photo Library
Cerebellum tissue, light micrograph
Cerebellum tissue. Confocal light micrograph of a section through the cerebellum of the brain. Purkinje cells, a type of neuron (nerve cell), are red. Radial glial cells, a type of support cell, are yellow, and cell nuclei are purple. Purkinje cells consist of a flask-shaped cell body with many branching processes (dendrites) that receive impulses from other cells. Purkinje cells form the junction between the granular and molecular layers of the grey matter of the cerebellum. The radial glial cells provide structural support, and nutrients and oxygen for the Purkinje cells. The cerebellum controls balance, posture and muscle coordination
Science Photo Library features Science and Medical images including photos and illustrations
Media ID 1698351
© C.J.GUERIN, PhD, MRC TOXICOLOGY UNIT/SCIENCE PHOTO LIBRARY
Central Nervous System Cerebellar Cerebellum Confocal Light Micrograph Dendrite Dendrites Fluorescence Fluorescent Glia Grey Matter Histological Histology Immunofluorescence Immunofluorescent Magnified Image Microscopic Subjects Nerve Cell Nervous Neuron Nuclei Nucleus Purkinje Cell Stain System Brain Cells Light Micrograph Light Microscope Neurological Neurology Section Sectioned
20"x20" (+3" Border) Fine Art Print
Discover the intricacies of the human body with our Fine Art Prints from Media Storehouse. This captivating image showcases a confocal light micrograph of the cerebellum tissue, captured by Science Photo Library. Witness the vibrant red hues of Purkinje cells, a type of neuron, against the intricate network of surrounding tissue. A stunning addition to any scientific or medical workspace, or for those with a passion for anatomy and biology. Appreciate the beauty of science in your home or office with our high-quality, museum-grade prints.
20x20 image printed on 26x26 Fine Art Rag Paper with 3" (76mm) white border. Our Fine Art Prints are printed on 300gsm 100% acid free, PH neutral paper with archival properties. This printing method is used by museums and art collections to exhibit photographs and art reproductions.
Our fine art prints are high-quality prints made using a paper called Photo Rag. This 100% cotton rag fibre paper is known for its exceptional image sharpness, rich colors, and high level of detail, making it a popular choice for professional photographers and artists. Photo rag paper is our clear recommendation for a fine art paper print. If you can afford to spend more on a higher quality paper, then Photo Rag is our clear recommendation for a fine art paper print.
Estimated Image Size (if not cropped) is 50.8cm x 50.8cm (20" x 20")
Estimated Product Size is 66cm x 66cm (26" x 26")
These are individually made so all sizes are approximate
Artwork printed orientated as per the preview above, with landscape (horizontal) or portrait (vertical) orientation to match the source image.
FEATURES IN THESE COLLECTIONS
> Science Photo Library
> Graphics and Patterns
EDITORS COMMENTS
This print showcases the intricate beauty of cerebellum tissue, as captured through a confocal light micrograph. The cerebellum, a vital part of the brain responsible for balance, posture, and muscle coordination, is depicted in stunning detail. Purkinje cells steal the spotlight with their vibrant red hue. These specialized neurons possess a unique flask-shaped cell body adorned with numerous branching processes called dendrites that receive signals from other cells. The granular and molecular layers of the cerebellar grey matter find their junction within these remarkable Purkinje cells. Supporting this delicate network are radial glial cells, portrayed in striking yellow tones. These support cells play an essential role by providing structural support to the Purkinje cells while also supplying them with nutrients and oxygen. Immersed in this microscopic world are countless purple-hued cell nuclei representing the core of cellular activity within this complex system. This magnified image offers insight into the intricate architecture and interconnectedness found within our central nervous system. With its blend of biology, anatomy, and neurology expertise on display, this histological masterpiece serves as a testament to both scientific discovery and artistic appreciation for nature's wonders.
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