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Dorsal fin diagram with landmarks labeled. Fins allow the sharks to be able to guide and lift themselves. Most sharks have eight fins: a pair of pectoral fins, a pair of pelvic fins, two dorsal fins, an anal fin, and a caudal fin. Pectoral fins are stiff, which enables downward movement, lift, and guidance.
A labelled cross-sectional diagram of the human ear. Thai แผนภาพแสดงโครงสร้างของหูเช่นหูชั้นในหูชั้นกลางและหูชั้นนอก
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This image is a derivative work of the following images: *File:Anatomy_of_the_Human_Ear.svg licensed with GFDL, GFDL-user-w **2010-03-09T10:53:44Z Kychot 470x272 (28735 Bytes) {{Information |Source=w:en:File:Anatomy_of_the_Human_Ear.svg |Date=2006-03-06 |Author=w:en:Mike.lifeguard |Permission={{GFDL-user-w|en:wikipedia|English Wikipedia|Mike.lifeguard}} |Category=Anatomy_of_the_ear {{Other ...
The inner ear (internal ear, auris interna) is the innermost part of the vertebrate ear. In vertebrates , the inner ear is mainly responsible for sound detection and balance. [ 1 ] In mammals , it consists of the bony labyrinth , a hollow cavity in the temporal bone of the skull with a system of passages comprising two main functional parts: [ 2 ]
The diagram shows the shape and location of most of these components: antihelix forms a 'Y' shape where the upper parts are: Superior crus (to the left of the fossa triangularis in the diagram) Inferior crus (to the right of the fossa triangularis in the diagram) Antitragus is below the tragus; Aperture is the entrance to the ear canal
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The Vacanti mouse was a laboratory mouse that had what looked like a human ear grown on its back. The "ear" was actually an ear-shaped cartilage structure grown by seeding cow cartilage cells into a biodegradable ear-shaped mold and then implanted under the skin of the mouse; then the cartilage naturally grew by itself. [71]