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Photographic Print : Rough endoplasmic reticulum, TEM

Rough endoplasmic reticulum, TEM




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Rough endoplasmic reticulum, TEM

Rough endoplasmic reticulum, coloured transmission electron micrograph (TEM). This section shows the rough endoplasmic reticulum (ER, folds, centre), a membranous structure that occurs in cells. The cell nucleus is partially seen at left. Rough ER has ribosomes on its surface where protein synthesis occurs. The instructions for the protein synthesis come from the DNA (deoxyribonucleic acid) in the nucleus. The rounded structures may be vesicles that have broken off the rough ER to transport the proteins elsewhere in the cell. That would mean that this is the Golgi apparatus. Magnification: x20, 000 when printed 10cm wide

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

Media ID 6403199

© BIOMEDICAL IMAGING UNIT, SOUTHAMPTON GENERAL HOSPITAL/SCIENCE PHOTO LIBRARY

Cellular Cross Section Cytological Cytology Endoplasmic Reticulum False Colour Golgi Apparatus Histological Histology Membrane Nucleus Organelle Organelles Physiological Physiology Protein Synthesis Ribosome Ribosomes Rough Transmission Electron Microscope Vesicle Vesicles False Coloured Section Sectioned


10"x8" (25x20cm) Photo Print

Discover the intricacies of cellular structures with our Media Storehouse range of Photographic Prints featuring the captivating image of "Rough Endoplasmic Reticulum, TEM" by Science Photo Library. This coloured transmission electron micrograph (TEM) offers a mesmerizing glimpse into the world of biology. Witness the intricate folding of the rough endoplasmic reticulum (ER), a membranous structure that plays a crucial role in cellular metabolism. Bring the beauty of scientific discovery into your home or office with our high-quality prints, perfect for inspiring curiosity and igniting conversation.

Printed on archival quality paper for unrivalled stable artwork permanence and brilliant colour reproduction with accurate colour rendition and smooth tones. Printed on professional 234gsm Fujifilm Crystal Archive DP II paper. 10x8 for landscape images, 8x10 for portrait images.

Our Photo Prints are in a large range of sizes and are printed on Archival Quality Paper for excellent colour reproduction and longevity. They are ideal for framing (our Framed Prints use these) at a reasonable cost. Alternatives include cheaper Poster Prints and higher quality Fine Art Paper, the choice of which is largely dependant on your budget.

Estimated Product Size is 25.4cm x 20.3cm (10" x 8")

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 showcases the intricate structure of the rough endoplasmic reticulum (ER) in a cell. In this coloured transmission electron micrograph, we can observe the folds and membranes that make up this vital organelle. The rough ER is distinguished by the presence of ribosomes on its surface, where protein synthesis takes place. The DNA within the cell nucleus provides instructions for protein synthesis, which are then carried out by the ribosomes on the rough ER. As proteins are synthesized, they may be transported to other parts of the cell through vesicles that have broken off from the rough ER. These rounded structures visible in the image could potentially be these transport vesicles destined for another crucial cellular component –the Golgi apparatus. With a magnification of x20,000 when printed at 10cm wide, this photograph offers an extraordinary glimpse into cellular biology and physiology. It highlights not only how cells function but also emphasizes their complexity and organization at a microscopic level. This stunning image was captured using a transmission electron microscope (TEM), allowing us to explore cross-sections of cells with incredible detail. Provided by Science Photo Library, it serves as a valuable resource for researchers and enthusiasts alike who seek to delve deeper into cytology, histology, and biological sciences as a whole.

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