单词 | hyaline cartilage |
例句 | The trachea is a tubular structure consisting of dense connective tissue and rings of hyaline cartilage. Fundamentals of Biology 2015-01-01T00:00:00Z Damaged hyaline cartilage is replaced by fibrocartilage and results in the joints becoming “stiff.” Biology for AP Courses 2022-06-09T00:00:00Z Also during the sixth week of development, mesenchyme within the limb buds begins to differentiate into hyaline cartilage that will form models of the future limb bones. Anatomy and Physiology 2013-06-19T00:00:00Z As opposed to microfracture, in which fibrocartilage is formed to help seal the holes in damaged cartilage, the tissue that is created in the lab is hyaline cartilage. Implanting Lab-Grown Cartilage to Fix Damaged Knees 2015-10-05T04:00:00Z At the distal end of the bone dense fibrous tissue is then differentiated and at the proximal end hyaline cartilage. The Baculum in Microtine Rodents 2011-11-17T03:00:33.777Z The epiphyses also contain hyaline cartilage for forming joints with other bones. Fundamentals of Biology 2015-01-01T00:00:00Z In symphyses, hyaline cartilage covers the end of the bone but the connection between bones occurs through fibrocartilage. Biology for AP Courses 2022-06-09T00:00:00Z The primary and secondary ossification centers are separated by the epiphyseal plate, a layer of growing hyaline cartilage. Anatomy and Physiology 2013-06-19T00:00:00Z The entosternites are cartilaginous in texture, but they have neither the chemical character nor the microscopic structure of the hyaline cartilage of Vertebrates. Encyclopaedia Britannica, 11th Edition, Volume 2, Slice 3 "Apollodorus" to "Aral" The articular surfaces are covered with a thin layer of hyaline cartilage, and are retained in apposition by the tension of ligaments and of the muscles surrounding the joint. Manual of Surgery Volume Second: Extremities—Head—Neck. Sixth Edition. A cartilage with few collagen and elastic fibers is hyaline cartilage, illustrated in Figure 3. Fundamentals of Biology 2015-01-01T00:00:00Z Endochondral ossification is the process of bone development from hyaline cartilage. Biology for AP Courses 2022-06-09T00:00:00Z Unlike the temporary synchondroses of the epiphyseal plate, these permanent synchondroses retain their hyaline cartilage and thus do not ossify with age. Anatomy and Physiology 2013-06-19T00:00:00Z Such a section is shown by Figure 3b; through the translucent hyaline cartilage the utriculus and horizontal canal can be darkly seen. Text Book of Biology, Part 1: Vertebrata The articular aspect of the epiphysis is invested with a thick layer of hyaline cartilage, known as the articular cartilage, which would appear to be mainly nourished from the synovia. Manual of Surgery Volume First: General Surgery. Sixth Edition. The portion covering the hyaline cartilage of the navicular bone has lost its peculiar pearl-blue shimmer, and become a dirty yellow. Diseases of the Horse's Foot A cartilage with few collagen and elastic fibers is hyaline cartilage, illustrated in Figure 24.14. Biology for AP Courses 2022-06-09T00:00:00Z The hyaline cartilage model is then gradually, over a period of many years, displaced by bone. Anatomy and Physiology 2013-06-19T00:00:00Z It is best seen in hyaline cartilage, where it has a glossy appearance. A Practical Physiology When derived from hyaline cartilage—for example, at the ends of the long bones—it is known as a cartilaginous exostosis. Manual of Surgery Volume First: General Surgery. Sixth Edition. A synchondrosis is a cartilaginous joint where the bones are joined by hyaline cartilage. Anatomy and Physiology 2013-06-19T00:00:00Z In long bones, chondrocytes form a template of the hyaline cartilage diaphysis. Biology for AP Courses 2022-06-09T00:00:00Z In the early stages of embryonic development, the embryo’s skeleton consists of fibrous membranes and hyaline cartilage. Anatomy and Physiology 2013-06-19T00:00:00Z The hyaline cartilage forms the early state of most of the bones, and is also a permanent coating for the articular ends of long bones. A Practical Physiology Fibrocartilage is very strong because it contains numerous bundles of thick collagen fibers, thus giving it a much greater ability to resist pulling and bending forces when compared with hyaline cartilage. Anatomy and Physiology 2013-06-19T00:00:00Z Friction between the bones at a synovial joint is prevented by the presence of the articular cartilage, a thin layer of hyaline cartilage that covers the entire articulating surface of each bone. Anatomy and Physiology 2013-06-19T00:00:00Z Secondary ossification centers form in the epiphyses as blood vessels and osteoblasts enter these areas and convert hyaline cartilage into spongy bone. Biology for AP Courses 2022-06-09T00:00:00Z However, these cells differentiate into cartilage cells, which produce a hyaline cartilage model of the future bone. Anatomy and Physiology 2013-06-19T00:00:00Z A synchondrosis is formed when the adjacent bones are united by hyaline cartilage. Anatomy and Physiology 2013-06-19T00:00:00Z The epiphyseal plate, a layer of hyaline cartilage, is replaced by osseous tissue as the organ grows in length. Anatomy and Physiology 2013-06-19T00:00:00Z These cartilages are made of hyaline cartilage and can extend for several inches. Anatomy and Physiology 2013-06-19T00:00:00Z The ends of the bones are covered with articular cartilage, a hyaline cartilage, Biology for AP Courses 2022-06-09T00:00:00Z These cells differentiate into a hyaline cartilage model for each vertebra, which then grow and eventually ossify into bone through the process of endochondral ossification. Anatomy and Physiology 2013-06-19T00:00:00Z In contrast, the cranial base and facial bones are produced by the process of endochondral ossification, in which mesenchyme tissue initially produces a hyaline cartilage model of the future bone. Anatomy and Physiology 2013-06-19T00:00:00Z Mesenchyme accumulates around the notochord and produces hyaline cartilage models of the vertebrae. Anatomy and Physiology 2013-06-19T00:00:00Z This process begins as the mesenchyme within the limb bud differentiates into hyaline cartilage to form cartilage models for future bones. Anatomy and Physiology 2013-06-19T00:00:00Z In this process, mesenchyme accumulates and differentiates into hyaline cartilage, which forms a model of the future bone. Anatomy and Physiology 2013-06-19T00:00:00Z The sternum initially forms as paired hyaline cartilage models on either side of the anterior midline, beginning during the fifth week of development. Anatomy and Physiology 2013-06-19T00:00:00Z At birth, ossification of much of the bone has occurred, but the hyaline cartilage of the epiphyseal plate will remain throughout childhood and adolescence to allow for bone lengthening. Anatomy and Physiology 2013-06-19T00:00:00Z In the limbs, mesenchyme accumulations within the growing limb bud will become a hyaline cartilage model for each of the limb bones. Anatomy and Physiology 2013-06-19T00:00:00Z However, hyaline cartilage will remain, covering the ends of the adult bone as the articular cartilage. Anatomy and Physiology 2013-06-19T00:00:00Z A plate of hyaline cartilage at the ends of bone allows continued growth until adulthood. Anatomy and Physiology 2013-06-19T00:00:00Z At the same time, mesenchyme within the limb bud begins to differentiate into hyaline cartilage, forming models for future bones. Anatomy and Physiology 2013-06-19T00:00:00Z Why does an injury to cartilage, especially hyaline cartilage, heal much more slowly than a bone fracture? Anatomy and Physiology 2013-06-19T00:00:00Z It is a layer of hyaline cartilage where ossification occurs in immature bones. Anatomy and Physiology 2013-06-19T00:00:00Z The external callus is produced by cells in the periosteum and consists of hyaline cartilage and bone. Anatomy and Physiology 2013-06-19T00:00:00Z The articulating surfaces of the bones are covered by articular cartilage, a thin layer of hyaline cartilage. Anatomy and Physiology 2013-06-19T00:00:00Z Endochondral ossification, the process that converts the hyaline cartilage model into bone, begins in most appendicular bones by the twelfth fetal week. Anatomy and Physiology 2013-06-19T00:00:00Z The trachea is formed by 16 to 20 stacked, C-shaped pieces of hyaline cartilage that are connected by dense connective tissue. Anatomy and Physiology 2013-06-19T00:00:00Z The mesenchyme differentiates into hyaline cartilage, which forms a cartilage model of the future bone. Anatomy and Physiology 2013-06-19T00:00:00Z These plates of hyaline cartilage will appear dark in comparison to the white imaging of the ossified bone. Anatomy and Physiology 2013-06-19T00:00:00Z Septal cartilage is flexible hyaline cartilage connected to the nasal bone, forming the dorsum nasi. Anatomy and Physiology 2013-06-19T00:00:00Z At a cartilaginous joint, the bones are joined by hyaline cartilage or fibrocartilage. Anatomy and Physiology 2013-06-19T00:00:00Z |
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