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Medical Illustration of Pulmonary Vessels Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/medical-illustration-of-pulmonary-vessels-image488428515.html
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Vintage anatomy print showing a depiction of the human heart. Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/vintage-anatomy-print-showing-a-depiction-of-the-human-heart-image327694495.html
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The heart Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/stock-photo-the-heart-13227408.html
RFACTHXW–The heart
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RFDT6531–Detailed illustration of a human heart, cross section.
The heart of man, from the front (downsized). A right ventricle, B left ventricle, C right ventricle, D left atrial foci, E aortic arch, F pulmonary artery, G anonoma, I, I ventricular inlet, H carotids, K superior vena cava, L pulmonary veins. No. 3935. Likewise, cut lengthwise. a superior vena cava, inferior vena cava, b right atrium, c right ventricle, d, pulmonary arteries, ee, é é pulmonary veins, f left atrium, g left ventricle, h'''' left clavicle, k descending aorta. No. 3936. Bird's heart, cut from behind, longitudinally. k right chamber. I muscular valve of the same, n pulmonary arte Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/the-heart-of-man-from-the-front-downsized-a-right-ventricle-b-left-ventricle-c-right-ventricle-d-left-atrial-foci-e-aortic-arch-f-pulmonary-artery-g-anonoma-i-i-ventricular-inlet-h-carotids-k-superior-vena-cava-l-pulmonary-veins-no-3935-likewise-cut-lengthwise-a-superior-vena-cava-inferior-vena-cava-b-right-atrium-c-right-ventricle-d-pulmonary-arteries-ee-pulmonary-veins-f-left-atrium-g-left-ventricle-h-left-clavicle-k-descending-aorta-no-3936-birds-heart-cut-from-behind-longitudinally-k-right-chamber-i-muscular-valve-of-the-same-n-pulmonary-arte-image220130412.html
RMPP3PGC–The heart of man, from the front (downsized). A right ventricle, B left ventricle, C right ventricle, D left atrial foci, E aortic arch, F pulmonary artery, G anonoma, I, I ventricular inlet, H carotids, K superior vena cava, L pulmonary veins. No. 3935. Likewise, cut lengthwise. a superior vena cava, inferior vena cava, b right atrium, c right ventricle, d, pulmonary arteries, ee, é é pulmonary veins, f left atrium, g left ventricle, h'''' left clavicle, k descending aorta. No. 3936. Bird's heart, cut from behind, longitudinally. k right chamber. I muscular valve of the same, n pulmonary arte
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The heart Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/stock-photo-the-heart-14033146.html
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. Diseases of the heart and thoracic aorta. ription the aortic second soundis very often accentuated, in consequence of the obstructionto the blood-flow through the aorta and peripheral vessels. When the aortic arch is dilated, increased dulness overthe manubrium sterni and pulsation in the supra-sternalnotch can usually be detected ; a systolic murmur is in manycases audible, and a systolic thrill can sometimes be felt, overthe course of the aorta ; in these cases, the aortic secondsound is often loudly accentuated. When the aortic valve is incompetent, and when secondarychanges (hypertrophy, Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/diseases-of-the-heart-and-thoracic-aorta-ription-the-aortic-second-soundis-very-often-accentuated-in-consequence-of-the-obstructionto-the-blood-flow-through-the-aorta-and-peripheral-vessels-when-the-aortic-arch-is-dilated-increased-dulness-overthe-manubrium-sterni-and-pulsation-in-the-supra-sternalnotch-can-usually-be-detected-a-systolic-murmur-is-in-manycases-audible-and-a-systolic-thrill-can-sometimes-be-felt-overthe-course-of-the-aorta-in-these-cases-the-aortic-secondsound-is-often-loudly-accentuated-when-the-aortic-valve-is-incompetent-and-when-secondarychanges-hypertrophy-image336705184.html
RM2AFP6W4–. Diseases of the heart and thoracic aorta. ription the aortic second soundis very often accentuated, in consequence of the obstructionto the blood-flow through the aorta and peripheral vessels. When the aortic arch is dilated, increased dulness overthe manubrium sterni and pulsation in the supra-sternalnotch can usually be detected ; a systolic murmur is in manycases audible, and a systolic thrill can sometimes be felt, overthe course of the aorta ; in these cases, the aortic secondsound is often loudly accentuated. When the aortic valve is incompetent, and when secondarychanges (hypertrophy,
Chambers of the Heart Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/chambers-of-the-heart-image353186869.html
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The heart Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/stock-photo-the-heart-14079029.html
RFAG34FJ–The heart
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RF2WJH51X–The brachiocephalic trunk is the first and the largest artery to arise from the aortic arch 3d illustration
. Chordate morphology. Morphology (Animals); Chordata. bicuspid (mitral) valve semilunar valves of pulmonary arch 8.8 mm tricuspid valves interventricular septum bicuspid valve Figure 11-1. Development of the mammalian heart. A, semidiagrammatic frontal section of the heart of a 3.7-mm pig; B, anterior holf of A as seen from behind; C, 6-mm pig; D, anterior half of C; E, 9.4-mm pig; F, anterior half of E; G, 8.8-mm humon; H, anterior half of G. (After Patten, 1 946) between the openings into the fourth and sixth aortic arches. These ridges are extended backward along the truncus wall in a cloc Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/chordate-morphology-morphology-animals-chordata-bicuspid-mitral-valve-semilunar-valves-of-pulmonary-arch-88-mm-tricuspid-valves-interventricular-septum-bicuspid-valve-figure-11-1-development-of-the-mammalian-heart-a-semidiagrammatic-frontal-section-of-the-heart-of-a-37-mm-pig-b-anterior-holf-of-a-as-seen-from-behind-c-6-mm-pig-d-anterior-half-of-c-e-94-mm-pig-f-anterior-half-of-e-g-88-mm-humon-h-anterior-half-of-g-after-patten-1-946-between-the-openings-into-the-fourth-and-sixth-aortic-arches-these-ridges-are-extended-backward-along-the-truncus-wall-in-a-cloc-image234950319.html
RMRJ6WER–. Chordate morphology. Morphology (Animals); Chordata. bicuspid (mitral) valve semilunar valves of pulmonary arch 8.8 mm tricuspid valves interventricular septum bicuspid valve Figure 11-1. Development of the mammalian heart. A, semidiagrammatic frontal section of the heart of a 3.7-mm pig; B, anterior holf of A as seen from behind; C, 6-mm pig; D, anterior half of C; E, 9.4-mm pig; F, anterior half of E; G, 8.8-mm humon; H, anterior half of G. (After Patten, 1 946) between the openings into the fourth and sixth aortic arches. These ridges are extended backward along the truncus wall in a cloc
Diagram of a heart. Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/stock-photo-diagram-of-a-heart-52079209.html
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The heart Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/stock-photo-the-heart-14035525.html
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Anatomy of the heart in internal anterior view with venous and arterial blood. Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/anatomy-of-the-heart-in-internal-anterior-view-with-venous-and-arterial-blood-image441937959.html
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Wireframe diagram of a heart. Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/stock-photo-wireframe-diagram-of-a-heart-52079230.html
RMD0MBGE–Wireframe diagram of a heart.
The right subclavian artery derives from the brachiocephalic trunk, while the left subclavian artery originates directly from the aortic arch Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/the-right-subclavian-artery-derives-from-the-brachiocephalic-trunk-while-the-left-subclavian-artery-originates-directly-from-the-aortic-arch-image596591766.html
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Diagram of a heart with cardiac valves. Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/stock-photo-diagram-of-a-heart-with-cardiac-valves-52079144.html
The right subclavian artery derives from the brachiocephalic trunk, while the left subclavian artery originates directly from the aortic arch Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/the-right-subclavian-artery-derives-from-the-brachiocephalic-trunk-while-the-left-subclavian-artery-originates-directly-from-the-aortic-arch-image596588220.html
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The right subclavian artery derives from the brachiocephalic trunk, while the left subclavian artery originates directly from the aortic arch Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/the-right-subclavian-artery-derives-from-the-brachiocephalic-trunk-while-the-left-subclavian-artery-originates-directly-from-the-aortic-arch-image596591516.html
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An illustration of the heart from a posterolateral view depicting branches of the coronary artery, coronary sinus, pulmonary veins, pulmonary arteries, and aorta. Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/an-illustration-of-the-heart-from-a-posterolateral-view-depicting-branches-of-the-coronary-artery-coronary-sinus-pulmonary-veins-pulmonary-arteries-and-aorta-image353188844.html
RM2BEH3Y8–An illustration of the heart from a posterolateral view depicting branches of the coronary artery, coronary sinus, pulmonary veins, pulmonary arteries, and aorta.
An illustrated view of the chanbers of the heart. Deoxygenated blood is carried from the body and enters the right atrium, passing through the tricuspid valve into the right ventricle. Blood travels to the lungs via the pulmonary arteries and back to the Stock Photohttps://www.alamy.com/licenses-and-pricing/?v=1https://www.alamy.com/stock-photo-an-illustrated-view-of-the-chanbers-of-the-heart-deoxygenated-blood-103991348.html
RMG1560M–An illustrated view of the chanbers of the heart. Deoxygenated blood is carried from the body and enters the right atrium, passing through the tricuspid valve into the right ventricle. Blood travels to the lungs via the pulmonary arteries and back to the
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