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腰椎间盘摘除和假体置换对相邻近端节段椎间载荷的影响 被引量:2
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作者 葛磊 李康华 +1 位作者 胡建中 雷光华 《中南大学学报(医学版)》 CAS CSCD 北大核心 2009年第3期230-235,共6页
目的:研究椎间盘摘除和假体置换(artificial disc replacement,ADR)前后对相邻节段内载荷的影响,分析椎间盘摘除后相邻节段失稳及退变原因;为评价ADR长期疗效及对脊柱整体的影响提供依据。方法:采用新鲜尸体保留韧带结构的完整腰段脊柱... 目的:研究椎间盘摘除和假体置换(artificial disc replacement,ADR)前后对相邻节段内载荷的影响,分析椎间盘摘除后相邻节段失稳及退变原因;为评价ADR长期疗效及对脊柱整体的影响提供依据。方法:采用新鲜尸体保留韧带结构的完整腰段脊柱标本,设计3种模型:完整组,椎间盘摘除组及ADR组。模拟生理型载荷作用特点,标本各向运动都受垂直压力载荷,由小范围内变动的偏心性压力提供下压及各向弯曲载荷。结果:椎间盘切除后相邻近节段椎间载荷变化,引起相邻近节段压力性负荷增加;ADR明显减少各向运动时相邻节段的压力负荷;正常组与ADR组间压力负荷无明显统计学差异。结论:椎间盘摘除使近端节段的压力性负荷增加,机制与脊柱载荷重分布有关。ADR明显减少各向运动时相邻近节段内压力性负荷。相邻近节段压力性负荷低,表明假体的长期应用导致相邻节段退变的风险较低。 展开更多
关键词 人工腰椎间盘/假体置换 生物力学 相邻运动节段 椎间盘摘除 压力性载荷
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Pseudo-dynamic active earth pressure behind retaining wall for cohesive soil backfill
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作者 马少俊 王奎华 吴文兵 《Journal of Central South University》 SCIE EI CAS 2012年第11期3298-3304,共7页
A formula was derived for the computation of seismic active earth pressure behind retaining wall using pseudo-dynamic method.This formula considered the actual dynamic effect with variation of time and propagation of ... A formula was derived for the computation of seismic active earth pressure behind retaining wall using pseudo-dynamic method.This formula considered the actual dynamic effect with variation of time and propagation of shear and primary wave velocities through the soil backfills.The influence of tension crack in the top portion of the backfill under seismic loading was investigated.The effects of wall friction angle,soil friction angle,horizontal and vertical seismic coefficients on the seismic active force were also explored.The parametric study shows that the total seismic active force increases as horizontal seismic coefficient increases,while it decreases with the increase in vertical seismic coefficient,internal friction angle and unit cohesion.The seismic active force calculated by the proposed method is larger than that calculated by previous theory. 展开更多
关键词 seismic active earth pressure pseudo-dynamic method tension cracked zone retaining wall
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Coefficient of consolidation by end of arc method
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作者 Mohsen Abbaspout Reza Porhoseini +1 位作者 Kazem Barkhordari Ahmad Ghorbani 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期332-337,共6页
One of the most important issues in geotechnical engineering is excess pore pressure caused by clay soil loading and consolidation. Regarding uncertainties and complexities, this issue has long been the subject of att... One of the most important issues in geotechnical engineering is excess pore pressure caused by clay soil loading and consolidation. Regarding uncertainties and complexities, this issue has long been the subject of attention of many researchers. In this work, a one-dimensional consolidation apparatus was equipped in a way that pore water pressure and settlement could be continuously read and recorded during consolidation process under static loading. The end of primary consolidation was obtained using water pressure changes helping to present a new method for determining the end of primary consolidation and consolidation coefficient. This method was then compared with two classical theory methods of lg t and t. Using Terzaghi's theory, the way of pore pressure dissipation for lg t, t and the new method was found and compared with experimental results. It is concluded that the new method has better results. 展开更多
关键词 one-dimensional consolidation of soil excess pore pressure end primary consolidation consolidation coefficient static loading
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