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金属烤瓷冠修复前牙残冠残根 被引量:7
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作者 方贤浩 李荣 申载贤 《中国美容医学》 CAS 2002年第5期465-466,共2页
目的:探讨用金属烤瓷冠修复、美容前牙残冠残根方法。方法:铸造核桩方法修复前牙残冠残根金属烤瓷冠。结果:98例128颗随访,为期3年追踪观察结果冠脱落2颗、桩脱落1颗、崩瓷2颗与修复有关的牙龈炎9例,大部分患者对形态及颜色满意。结论:... 目的:探讨用金属烤瓷冠修复、美容前牙残冠残根方法。方法:铸造核桩方法修复前牙残冠残根金属烤瓷冠。结果:98例128颗随访,为期3年追踪观察结果冠脱落2颗、桩脱落1颗、崩瓷2颗与修复有关的牙龈炎9例,大部分患者对形态及颜色满意。结论:应尽可能保存前牙残冠残根,用铸造核桩方法修复前牙金属烤瓷冠取得了满意的效果,临床上可推广应用。 展开更多
关键词 金属烤瓷冠 前牙 残根残冠 核桩 牙体修复
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Transport Across Chloroplast Membranes: Optimizing Photosynthesis for Adverse Environmental Conditions 被引量:4
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作者 Igor Pottosin Sergey Shabala 《Molecular Plant》 SCIE CAS CSCD 2016年第3期356-370,共15页
Chloroplasts are central to solar light harvesting and photosynthesis. Optimal chloroplast functioning is vitally dependent on a very intensive traffic of metabolites and ions between the cytosol and stroma, and shoul... Chloroplasts are central to solar light harvesting and photosynthesis. Optimal chloroplast functioning is vitally dependent on a very intensive traffic of metabolites and ions between the cytosol and stroma, and should be attuned for adverse environmental conditions. This is achieved by an orchestrated regulation of a variety of transport systems located at chloroplast membranes such as porines, solute channels, ion-specific cation and anion channels, and various primary and secondary active transport systems. In this review we describe the molecular nature and functional properties of the inner and outer envelope and thylakoid membrane channels and transporters. We then discuss how their orchestrated regulation affects thylakoid structure, electron transport and excitation energy transfer, proton-motive force partition, ion homeostasis, stromal pH regulation, andvolume regulation. We link the activity of key cation and anion transport systems with stress-specific signaling processes in chloroplasts, and discuss how these signals interact with the signals generated in other organelles to optimize the cell performance, with a special emphasis on Ca^2+ and reactive oxygen species signaling. 展开更多
关键词 stroma THYLAKOID p.m.f. ENVELOPE reactive oxygen species programmed cell death
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