Cushion : Cultured nerve cells
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Cultured nerve cells
Cultured nerve cells. Coloured scanning electron micrograph (SEM) of a cultured piece of spinal cord (centre). Each nerve cell (neuron) in the cord has an axon (long thin strand) growing from it. An axon carries nerve signals away from the neuron. Magnification: x55 at 6x4.5cm size
Science Photo Library features Science and Medical images including photos and illustrations
Media ID 6421908
© STEVE GSCHMEISSNER/SCIENCE PHOTO LIBRARY
Axon Axons Cell Culture Cultured Growing Growth Nerve Nerve Cell Nervous Neuron Neurone Neurones Neurons Spinal Cord System Cells
Cushion
Refresh your home decor with a beautiful full photo 16"x16" (40x40cm) cushion, complete with cushion pad insert. Printed on both sides and made from 100% polyester with a zipper on the bottom back edge of the cushion cover. Care Instructions: Warm machine wash, do not bleach, do not tumble dry. Warm iron inside out. Do not dry clean.
Accessorise your space with decorative, soft cushions
Estimated Product Size is 40cm x 40cm (15.7" x 15.7")
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.
EDITORS COMMENTS
This print captures the intricate beauty of cultured nerve cells, offering a glimpse into the complex world of our nervous system. The coloured scanning electron micrograph showcases a piece of spinal cord at its center, where each individual nerve cell or neuron is prominently displayed. These neurons are seen with their long, thin strands called axons growing from them. Axons play a crucial role in transmitting nerve signals away from the neuron, allowing for communication within the vast network of our nervous system. This image provides an up-close view of this growth process and highlights the remarkable intricacy and organization present within our bodies. The magnification level used to capture this image was x55, revealing even the tiniest details with precision. At 6x4.5cm in size, it offers a compact yet powerful representation of these vital components of human anatomy. Such images hold immense value in research and medicine as they provide valuable insights into how nerve cells develop and function. They contribute to advancing our understanding of neurological disorders and aid scientists in developing potential treatments that target specific areas within this complex system. Overall, this stunning photograph serves as a testament to both the beauty and complexity found within our own bodies while showcasing the incredible progress made through scientific exploration and imaging techniques like scanning electron microscopy.
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