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Photographic Print : Coloured SEM of mitochondria in ovarian cells

Coloured SEM of mitochondria in ovarian cells




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Coloured SEM of mitochondria in ovarian cells

Mitochondria. Coloured Scanning Electron Micro- graph (SEM) of mitochondria and smooth endoplasmic reticulum in an ovarian granulosa- lutein cell. The cell occurs in the corpus luteum of the ovary, which develops after ovulation and secretes the hormone progesterone. Mitochondria (pink) are seen sectioned, containing tubular cristae. Active secretory cells have many mitochondria which play a role in cell respiration. Membranes of smooth endoplasmic reticulum (ER, yellow) are also seen; commonly found in secretory cells, ER synthesizes lipids and transports substances around the cell. Magnification: x21, 300 at 6x7cm size. Magnification: x27, 400 at 4x5 inch size

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

Media ID 6402825

© PROFESSORS P.M. MOTTA, S. MAKABE & T. NAGURO/SCIENCE PHOTO LIBRARY

Cell Structure Corpus Luteum Cytology Endoplasmic Reticulum Hormone Mitochondria Ovary Progesterone Smooth Micro Biology


10"x8" (25x20cm) Photo Print

Discover the intricacies of cellular life with Media Storehouse's Photographic Prints featuring this stunning Coloured Scanning Electron Micrograph (SEM) of mitochondria in an ovarian granulosa-lutein cell, provided by Science Photo Library. This captivating image showcases the complex structure of mitochondria, the powerhouse of the cell, surrounded by the smooth endoplasmic reticulum. Bring the beauty of scientific discovery into your home or office with our high-quality photographic prints, perfect for inspiring curiosity and igniting conversations.

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) orientation to match the source image.


EDITORS COMMENTS
This print showcases the intricate beauty of ovarian cells, specifically highlighting mitochondria and smooth endoplasmic reticulum. The image reveals a coloured scanning electron micrograph (SEM) that provides a detailed view of these cellular structures within an ovarian granulosa-lutein cell found in the corpus luteum. Mitochondria, depicted in delicate shades of pink, are prominently displayed with their tubular cristae clearly visible. These energy-producing powerhouses are crucial for cell respiration and play a vital role in active secretory cells like this one. Meanwhile, the yellow membranes represent the smooth endoplasmic reticulum (ER), which is responsible for lipid synthesis and intracellular transportation. The corpus luteum itself forms after ovulation and serves as a site for progesterone secretion – an essential hormone involved in reproductive processes. This image offers valuable insights into the structure and function of these fascinating cells found within the ovary tissue. With magnifications ranging from x21,300 at 6x7cm size to x27,400 at 4x5 inch size, this photograph captures even the tiniest details with remarkable clarity. It serves as a testament to both the complexity of biological systems and the incredible advancements made possible through microscopy techniques. This stunning visual representation was captured by Science Photo Library's team of experts dedicated to showcasing scientific wonders while contributing to our understanding of biology on a microscopic level.

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