你看,成年雌鸟在产蛋的过程中会在某些长骨内产生一层海绵状的骨组织。
You see, adult female birds during egg production produce a layer of spongy bone tissue inside certain long bones.
国产可吸收胶原膜能有效地引导即刻种植体周骨缺隙的骨组织再生。
The absorbable atelocollagen membranes made in china could effectively guide bone regeneration around immediate extraction sockets implants.
X 线片示术后9~14周骨组织临床愈合良好,移植的跖趾关节与掌、指骨完全愈合。
The X-ray films showed good healing between the transplanted metatarsophalangeal joint and metacarpals and phalanges at 9-14 weeks postoperatively.
就是说骨组织里的一小块骨头脱落了。
That means a small layer of the bone flaked off and is embedded in tissue.
骨组织吸收骨组织分解和吸收的过程。
多孔镁作为骨组织工程材料具有明显的优势。
Porous magnesium has obvious advantages as bone tissue engineering biomaterial.
人体骨组织愈合时的环境为近中性和弱酸性环境。
Human bones always cure themselves in near neutral or slightly acidic environments.
支架的研究一直是骨组织工程研究的主要问题之一。
Fabrication of scaffolds is one of the primary problems in bone tissue engineering.
结果证明有效,小鼠的断腿痊愈,新的骨组织形成。
It worked, getting the rodents back on their (fractured) legs and leading to the formation of new bone tissue.
骨组织局部破坏并伴有钙化,没有骨膜反应性新生骨。
There is an area of bone destruction accompanied by partial calcification, with no periosteal reactive new bone.
目的:探索胶原海绵作为骨组织工程支架材料的可行性。
Objective: To investigate the feasibility of collagen sponge as scaffold material in bone tissue engineering.
采用引导骨组织再生原理进行长管状骨缺损修复实验。
The principle of guided tissue regeneration(GTR)was tested for healing segmental long bone defects.
结论:骨质疏松不仅影响骨组织,也会影响非骨性组织。
Conclusion. Osteoporosis does not only affect the bone but also the nonosseous tissues.
目的:应用放射性微球技术检测激素性兔骨组织血流量。
Objective: To quantitatively measure hormonal osseous blood flow in rabbits by radioactive microsphere techniques.
他们发现了该类似化合物增加了年轻人骨组织破坏的速率。
They found that compounds increased the rate at which bone tissue was destroyed in the young.
此材料可望成为优异的骨修复材料及骨组织工程支架材料。
The material is expected to be a good candidate for bone-repairing and bone tissue engineering scaffold materials.
目的探讨用冷冻异体骨膜作为引导骨组织再生膜的可能性。
Objective Explores the feasibility of guiding bone tissue regeneration by frozen homologous periosteum.
但由于骨组织的复杂性,使成形精度的提高还存在诸多问题。
However, due to the complexity of bone tissue, there are many problems in improving the forming accuracy.
材料结构和性能符合非承力部位骨组织工程支架材料的要求。
These demonstrate that the composites obtained in this work can meet the requirements of bone tissue engineering scaffolds.
生长因子控制细胞行为并能促进骨移植物与周围骨组织的融合。
Growth factors control cell behavior and are used to help bone grafts integrate with surrounding bone tissue.
同时,牛松质骨可以作为一种较好的载体应用于骨组织工程学。
Spongy bone of cattle can be well used as carrier in bone tissue engineering.
种植体界面骨组织的最大应力位于种植体颈部周围的骨皮质界面;
The value of stress peaks in implants and in bone -implant interface under oblique loads appeared higher than those under vertical loads.
在运动过程中,机械力可以通过刺激骨组织来影响骨胶原蛋白代谢。
In movement process, the mechanical power may through the stimulation bone tissue then influence bone collagen metabolism.
骨组织工程研究领域中,支架材料与细胞的相互作用是主要的研究课题。
The study of scaffold material-cell interactions was the major subject in the field of bone tissue engineering.
在此笔者对骨组织工程的进展作一综述,并探讨其存在的问题和发展前景。
Here we reviewed the progress about the bone tissue engineering, explored the existing problem and prospected its future.
近年来,羊毛角蛋白作为骨组织工程支架材料的研究引起了学者们的关注。
In recent years, keratin has drawn great interest of researchers as scaffold material for bone tissue engineering.
另一亟需解决的是当所期望的骨再生发生时,它能执行受损骨组织的机械功能。
Another exigency involves the carrying out of the mechanical functions of the damaged bone while the desired regeneration takes place.
外科组已采集了肌肉和肺部的小片,他们在冰人骨盆上钻了一个洞采集骨组织进行DNA分析。
The surgical teams had taken snippets of muscle and lung. They had bored a hole in his pelvis to collect bone tissue for DNA analysis.
结论:椎板再生是软骨内骨化的过程,并证实了椎板再生的方式是骨组织逐渐再生。
Conclusion: bone - regeneration after laminectomy is the process of endochondral ossification. The type of bone - regeneration is identified.
结论:椎板再生是软骨内骨化的过程,并证实了椎板再生的方式是骨组织逐渐再生。
Conclusion: bone - regeneration after laminectomy is the process of endochondral ossification. The type of bone - regeneration is identified.
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