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Community structure and regeneration types of Betula dahurica forest in Badaling forest center of Beijing
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作者 Zhang Yong Zheng Zhi-hua Zhang Zhi-xiang 《Forestry Studies in China》 CAS 2007年第2期152-156,共5页
Using plant community analysis methods, we analyzed the floristic characteristics, species composition, community structure, population structure, and spatial distribution patterns of a Betula dahurica forest on the ... Using plant community analysis methods, we analyzed the floristic characteristics, species composition, community structure, population structure, and spatial distribution patterns of a Betula dahurica forest on the "1238" mountain of Badaling in Beijing, China. The results show that: 1) There are 33 plant species in the B. dahurica community, including 18 woody plant species. The B. dahurica forest is a monodominant community with 75.9% dominance. 2) Based on diameter at breast height (DBH) size class distribution, the population structure of B. dahurica and Acer mono--two heliophyllous and pioneer tree species-is cascade-type, with both in an increasing stage. The population structure of Ella mandshurica and T. mongolica, two shade-tolerant tree species, is inverse-J type, and they have more young seedling individuals and regenerate more stably. They are associated species of the pioneer tree species. The population structure of Quercus mongolica, as the associated species of climax species in the community, is sporadic, and its regeneration is fluctuating and random. Fraxinus rhynchophylla is a shade-tolerant tree species which has a unibar population structure and climax characteristics of pioneer tree species. The relative frequency of young seedlings reached 0.4. 3) The dominant species B. dahurica is still in an increasing stage, and the regeneration of other species is steady or partly influences the community, putting the community in the pioneer species stage. From the population structure and distribution frequency ofF. rhynchophylla, the B. dahurica forest will approach to a climax state in the future. 展开更多
关键词 Betula dahurica forest community structure population structure regeneration type
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Verapamil inhibits scar formation after peripheral nerve repair in vivo 被引量:4
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作者 A-chao Han Jing-xiu Deng +4 位作者 Qi-shun Huang Huai-yuan Zheng Pan Zhou Zhi-wei Liu Zhen-bing Chen 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第3期508-511,共4页
The calcium channel blocker,verapamil,has been shown to reduce scar formation by inhibiting fibroblast adhesion and proliferation in vitro.It was not clear whether topical application of verapamil after surgical repai... The calcium channel blocker,verapamil,has been shown to reduce scar formation by inhibiting fibroblast adhesion and proliferation in vitro.It was not clear whether topical application of verapamil after surgical repair of the nerve in vivo could inhibit the formation of excessive scar tissue.In this study,the right sciatic nerve of adult Sprague-Dawley rats was transected and sutured with No.10-0 suture.The stoma was wrapped with gelfoam soaked with verapamil solution for 4 weeks.Compared with the control group(stoma wrapped with gelfoam soaked with physiological saline),the verapamil application inhibited the secretion of extracellular matrix from fibroblasts in vivo,suppressed type I and III collagen secretion and increased the total number of axons and the number of myelinated axons.These findings suggest that verapamil could reduce the formation of scar tissue and promote axon growth after peripheral nerve repair. 展开更多
关键词 nerve regeneration nerve injury verapamil scar sciatic nerve type I collagen type III collagen neural regeneration
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