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Framed Print : Sickle cell anemia with red blood cells and white bood cells

Sickle cell anemia with red blood cells and white bood cells



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Sickle cell anemia with red blood cells and white bood cells

Conceptual image of sickle cell anemia with red blood cells and white bood cells

Stocktrek Images specializes in Astronomy, Dinosaurs, Medical, Military Forces, Ocean Life, & Sci-Fi

Media ID 13010837

© Stocktrek Images

Abnormal Abstract Abundance Biomedical Illustrations Biomolecule Blood Blood Cells Blood Flow Cell Circulation Circulatory System Concave Cytology Cytoplasm Defense Detail Disease Epidemiology Erythrocyte Erythroid Cells Genetic Genetic Mutation Genetic Research Haematid Healthcare Hematology Hemoglobin Illness Immune System Immunology Large Group Of Objects Leukocyte Magnification Medical Medicine Microbiology Microscopic Mutation Oxygen Pathology Physiology Red Blood Cells Red Blood Corpuscles Three Dimensional White White Blood Cells Cure Drepanocytosis Genetic Disorder Microvilli Recessive


14"x12" (38x32cm) Modern Frame

Bring the intricacies of medical science into your home or office with the Media Storehouse Framed Prints featuring the captivating image of "Sickle Cell Anemia with Red Blood Cells and White Blood Cells" by Stocktrek Images. This conceptual illustration offers a unique and educational perspective into the complexities of the human blood system. Each print is meticulously framed to preserve the high-quality image and add a touch of sophistication to your space. Engage in stimulating conversations with guests or simply appreciate the mesmerizing details of this scientific masterpiece. Add this essential piece to your collection today and make every room a reflection of your curiosity and knowledge.

Wood effect frame, card mounted, 10x8 archival quality photo print. Overall outside dimensions 14x12 inches (38x32cm). Environmentally and ozone friendly, 40mm wide x 15mm Polycore® moulding has the look of real wood, is durable and light and easy to hang. Biodegradable and made with non-chlorinated gases (no toxic fumes) it is efficient; producing 100 tons of polystyrene can save 300 tons of trees! Prints are glazed with lightweight, shatterproof, optical clarity acrylic (providing the same general protection from the environment as glass). The back is stapled hardboard with a sawtooth hanger attached. Note: To minimise original artwork cropping, for optimum layout, and to ensure print is secure, the visible print may be marginally smaller

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

Estimated Image Size (if not cropped) is 24.4cm x 18.3cm (9.6" x 7.2")

Estimated Product Size is 37.6cm x 32.5cm (14.8" x 12.8")

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 a conceptual image of sickle cell anemia, featuring a mesmerizing display of red blood cells and white blood cells. The abundance of these microscopic objects gives us an intricate glimpse into the defense mechanisms within our bodies. With its detailed portrayal, this artwork delves deep into the realm of microbiology and medicine. The mutation responsible for sickle cell anemia is genetic and recessive, affecting autosome chromosomes. This condition, also known as drepanocytosis, causes red blood corpuscles to take on a concave shape resembling a sickle or crescent moon. As we zoom in closer, we observe the abnormality in these erythroid cells that disrupts their normal function. In this three-dimensional digitally generated illustration, science meets art to shed light on the pathology behind this disease. The cytoplasmic biomolecules within each cell play a crucial role in carrying oxygen throughout our circulatory system. However, due to the genetic mutation present in sickle cell anemia patients, these red blood cells become rigid and obstruct proper blood flow. While there is currently no cure for sickle cell anemia, ongoing research in genetics aims to unravel its mysteries and develop effective treatments. This image serves as a powerful reminder of the importance of studying hematology and immunology when combating such genetic disorders. With its vibrant colors and close-up magnification capturing every detail with precision, this biomedical illustration offers valuable insights into the physiology and epidemiology surrounding sickle cell anemia—an

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