Blood clot, SEM C015 / 9608
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Blood clot, SEM C015 / 9608
Blood clot. Coloured scanning electron micrograph (SEM) of a blood clot from the inner wall of the left ventricle of a heart. Red blood cells (erythrocytes) are trapped within a fibrin protein mesh (cream). The fibrin mesh is formed in response to chemicals secreted by platelets (pink), fragments of white blood cells. Clots are formed in response to cardiovascular disease or injuries to blood vessels. Connective tissue (orange) is also seen
Science Photo Library features Science and Medical images including photos and illustrations
Media ID 9239041
© SUSUMU NISHINAGA/SCIENCE PHOTO LIBRARY
Blood Clot Clotted Clump Coagulated Colored Erythrocyte Erythrocytes Fibrin Left Ventricle Platelet Platelets Red Blood Cell Red Blood Cells Thrombocyte Thrombocytes Thrombosis Thrombus White Blood Cell Protein
EDITORS COMMENTS
This photo print, titled "Blood clot" offers a mesmerizing glimpse into the intricate world of our cardiovascular system. Taken using a scanning electron microscope (SEM), it showcases a blood clot found in the inner wall of the left ventricle of a heart. The image reveals an array of colors and textures that highlight different components within the clot. The cream-colored fibrin protein mesh takes center stage, acting as a trap for red blood cells (erythrocytes) seen scattered throughout. These erythrocytes are entangled within the fibrin network, creating an intriguing clump-like pattern. Interestingly, platelets – small fragments derived from white blood cells – play a crucial role in initiating this process. Their pink hue stands out amidst the sea of cream and red tones. By secreting chemicals, platelets trigger the formation of this vital fibrin mesh as part of our body's response to cardiovascular disease or injuries to blood vessels. In addition to these key elements, connective tissue adds another layer to this visually stunning composition with its vibrant orange presence. Through SUSUMU NISHINAGA's lens and expertise in microscopy, we gain insight into one aspect of our complex circulatory system: how our bodies form clots when faced with injury or disease. This remarkable photograph serves as both an educational tool and artistic masterpiece that invites viewers to appreciate the beauty hidden within scientific exploration.
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