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False-colour SEM of epithelium of Fallopian tube
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False-colour SEM of epithelium of Fallopian tube
Fallopian tube. False-colour scanning electron micrograph of the epithelium of the Fallopian tube (oviduct), the muscular tube connecting the ovary to the uterus. The image clearly shows the two different types of simple columnar cells which populate this area: ciliated (yellow) and secretory (soft purple). The beat of the ciliated cells facilitates the transport of the ovum from the ovary towards the uterus. The secretory cells are covered by a vast number of microvilli (tiny white dots) and secrete substances which maintain a moist environment and provide nutrients to the ovum. Magnification: x3350 at 6x7cm size. Magnification: x5415 at 4x5 inch size
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Media ID 6422922
© PROF. P. MOTTA/DEPT. OF ANATOMY/UNIVERSITY LA SAPIENZA , ROME/SCIENCE PHOTO LIBRARY
Epithelium Fallopian Tube Microvilli Oviduct Re Production Reproductive System Secretory Cell Uterine Tube False Coloured
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This print showcases a false-colour scanning electron micrograph of the epithelium found in the Fallopian tube, also known as the oviduct. Serving as a muscular pathway connecting the ovary to the uterus, this intricate image reveals two distinct types of simple columnar cells that populate this vital area. The ciliated cells, depicted in vibrant yellow hues, play a crucial role in facilitating the transportation of an ovum from the ovary towards its final destination within the uterus. Their rhythmic beating motion propels and guides this precious reproductive cell along its journey. Contrasting with their ciliated counterparts are the secretory cells, portrayed in soft shades of purple. These specialized cells are adorned with countless microvilli, represented by tiny white dots throughout the image. The microvilli create an expansive surface area for these secretory cells to secrete substances that maintain a moist environment and provide essential nutrients to support and nourish developing ova. With magnifications reaching x3350 at 6x7cm size and x5415 at 4x5 inch size, this remarkable photograph offers an up-close glimpse into one aspect of female reproductive anatomy. It sheds light on how different cell types work harmoniously within our bodies to ensure successful reproduction while emphasizing both beauty and complexity inherent in human biology.
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