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Framed Print : Purkinje nerve cells in the cerebellum

Purkinje nerve cells in the cerebellum



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Purkinje nerve cells in the cerebellum

Purkinje cells in the cerebellum. Fluorescent light micrograph of Purkinje cells (green) in the cerebellum of the brain. Purkinje nerve cells have a flask-like body from which numerous highly branched dendrites extend. They are found in the grey matter (cortex) of the cerebellum, at the boundary between the granular layer (blue red) and the molecular layer (red green). The dendrites relay signals to the cell body, which passes them on through its single axon (green) in the granular layer. The cerebellum is a structure at the base of the brain that plays an important role in motor control, sensory perception and learning. Magnification: x380 when printed 10cm wide

Science Photo Library features Science and Medical images including photos and illustrations

Media ID 6448951

© THOMAS DEERINCK, NCMIR/SCIENCE PHOTO LIBRARY

Cerebellar Cerebellum Cortex Dendrite Dendrites Fluorescent Light Micrograph Granular Layer Gray Grey Matter Histological Histology Molecular Layer Nerve Cell Neuron Purkinje Cell Brain Light Microscope Nervous System Neurological Neurology


13.5"x11.5" (34x29cm) Premium Frame

Introducing the Media Storehouse Framed Prints featuring the captivating image of "Purkinje Nerve Cells in the Cerebellum" by Science Photo Library. This stunning fluorescent light micrograph showcases the intricate beauty of Purkinje cells in the cerebellum of the brain. With their distinctive flask-like bodies and numerous highly branched processes, these nerve cells play a crucial role in motor coordination and cognition. Bring the wonders of neuroscience into your home or office with this educational and aesthetically pleasing addition to your space. Each print is meticulously framed and ready to hang, making it a perfect gift for the science enthusiast in your life.

Framed and mounted 9x7 print. Professionally handmade full timber moulded frames are finished off with framers tape and come with a hanging solution on the back. Outer dimensions are 13.5x11.5 inches (34x29cm). Quality timber frame frame moulding (20mm wide and 30mm deep) with frame colours in your choice of black, white, or raw oak and a choice of black or white card mounts. Frames have a perspex front providing a virtually unbreakable glass-like finish which is easily cleaned with a damp cloth.

Contemporary Framed and Mounted Prints - Professionally Made and Ready to Hang

Estimated Image Size (if not cropped) is 21.4cm x 21.4cm (8.4" x 8.4")

Estimated Product Size is 34cm x 29.2cm (13.4" x 11.5")

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.


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> Animals > Mammals > Muridae > Blue-grey Mouse

> Arts > Artists > G > Thomas Gray

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> Science Photo Library > Specialist Imaging


EDITORS COMMENTS
This print showcases the intricate beauty of Purkinje nerve cells in the cerebellum. The fluorescent light micrograph reveals these remarkable cells, with their distinct flask-like bodies and highly branched dendrites extending outwards. Positioned at the boundary between the granular layer and molecular layer in the grey matter of the cerebellum, these green-hued Purkinje cells play a crucial role in relaying signals. The image provides a glimpse into the complex inner workings of our brain's structure. With its single axon visible amidst the granular layer, this photograph highlights how these nerve cells transmit information from their dendrites to their cell body before passing it on further. The cerebellum itself holds immense significance as a vital component responsible for motor control, sensory perception, and learning. This microscopic view emphasizes its importance within our nervous system. With a magnification of x380 when printed 10cm wide, this print offers an up-close exploration into neurology and histology. It serves as a reminder of both our biological intricacies and the wonders that lie within us all.

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