• 负重可能纤维细胞凋亡增加关键因素

    Weight-bearing is probably a key factor in the increase of annulus fibrosus cells apoptosis.

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  • 衰老外,负重可能纤维环细胞凋亡增加关键因素

    Besides aging, weight bearing is probably a key factor of the increase of anulus fibrosus cells apoptosis.

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  • 对照组保持纤维完整

    In the control group, fibrous anulus was intact.

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  • 椎间盘应力纤维环右侧左侧递减

    The stress was descended from right side of the lateral border to left side.

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  • 目的探讨筋膜修复腰椎间盘纤维环可行性

    Objective: To investigate the feasibility of fascia lata on repairing intervertebral disc annulus.

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  • 目的:观察腰椎纤维环经板层网桥大体显微结构

    Objective. To reveal the macro and micro structure of the translamellar bridging network in the lumbar annulus.

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  • 数据信息概要:裂隙包括纤维在内结构失效证据

    Summary of Background Data. Tears are evidence of structural failure involving the anulus .

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  • 损伤进展看似纤维第一产生裂口开始

    The progressive damage appears to develop with a small cleft inside the first inner layer of the anulus.

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  • 结果常见椎间盘破坏方式凝胶剂纤维环后方挤出

    Results. Gel extrusion from the posterior annulus was the most common mode of disc failure.

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  • 证实模型预测组织工程纤维环生理负荷条件下反应

    Validate the model and predict the response of engineered constructs to physiologic loading scenarios.

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  • 其他方向纤维不同,纤维环后方附近不能分担静水压

    Unlike other aspects of the annular wall, the posterior region was unable to distribute hydrostatic pressures circumferentially.

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  • 手术病理发现探讨髓核突出增强原理及纤维破裂依据。

    Judging by operative and pathological findings to discuss the Gd-DTPA enhancement of the fragment herniation and the signs of disrupted anulus fibrosis.

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  • 采用显微CT扫描微分干涉显微镜进行纤维破裂研究

    Investigation of the resulting annular disruption was carried out using microcomputed tomography and differential interference contrast microscopy.

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  • 分化细胞纤维环外缘迁移认为这些组织形成可能机制

    Migration of differentiated cells from outside the intervertebral disc has been hypothesized as a possible mechanism for the formation of these tissues.

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  • 结论研究表明椎间盘纤维环层间结构以往认识复杂多。

    Conclusion. This study demonstrates a far greater complexity to the interlamellar architecture of the disc annulus than has previously been recognized.

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  • 而大纤维环缺陷需要较长的闭合时间可能延长椎间盘功能受损时间

    Larger defects appear to require longer wound closure times, and may prolong the duration of impaired disc function.

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  • 典型退变性椎间盘疾病从椎间盘撕裂开始。椎间盘壁称为纤维

    Degenerative disc disease typically begins when small tears appear in the disc wall, called the annulus.

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  • 方法结合消化组织培养法,体外单层培养退变纤维环细胞

    Method:Primary cells of human degenerative AF were obtained through in vitro monolayer culture combined with enzyme digestion method and tissue pieces culture method.

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  • 可见纤维环细胞渗透支架增殖大量的s-GAG沉积线性胶原形成。

    Infiltration and proliferation of AF cells into the scaffold and abundant deposition of s-GAG and aligned collagen was observed.

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  • 新的肌肉纤维这些”上这些钛骨就开始维系人体正常活动

    When the new muscle fibrous ring wrapped in these "Ti-bone" when they began to titanium bone sustains the body's normal activity!

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  • 鼻翼软骨纤维鼻翼软骨肌肉维持外鼻下端形态鼻孔对称重要解剖结构

    Alar cartilaginous fibrous ring and alar cartilaginous muscular ring are very important anatomic structures to maintain the shape of the lower part of the nose.

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  • 文对25腰椎间盘纤维环破裂症患者治疗时间分为,进行疗效观察

    This paper reported 25 cases of lumber disc hernia, According to therapeutic time, these patients were divided into two groups and the curative effect was observed.

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  • 目的应用弹性定制模型通过调节模型标量参数记录组织工程纤维环演变特征

    Objective. Apply a hyperelastic constitutive model to characterize the evolution of engineered AF via scalar model parameters.

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  • 同时对偶接了LY 12CZ铝合金纤维环氧复合材料进行腐蚀浸泡对比试验

    The corrosion behavior of GECM coupled with the LY12CZ aluminum alloy was also observed in immersion test.

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  • 结论外,负重增加纤维环细胞凋亡、加重椎间盘纤维环破损退重要因素

    Conclusions: Besides aging, weight bearing is probably a key factor of the increase of anulus fibrosus cells apoptosis and the degeneration of annulus fibrosus of intervertebral disc.

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  • 纤维环外层后侧板层间连接力量可以解释大部分椎间盘突出、脱出发生纤维环外层。

    Weak interlamellar cohesion of the outer posterior lamellae may explain why the majority of herniations remain contained as protrusions within the outer annular wall.

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  • 结论纤维环细胞种植组织的、各异向性的类似纤维环样的支架上产生很好的力学特性

    Conclusion. AF cells seeded on nanofibrous scaffolds elaborated an organized, anisotropic AF-like extracellular matrix, resulting in improved mechanical properties.

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  • 目的实验旨在研究伸展联合伸展侧方屈曲是否使纤维突出部分髓核方向移动

    Objective. This study investigated whether extension or combined extension and side flexion could move the displaced portion of nucleus from the anulus towards the nucleus.

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  • 模型成功地被证实使用模仿剪切双轴向负荷下反应程度依时间变化组织工程纤维环

    The model was successfully validated and used to simulate time-varying responses of engineered AF under shear and biaxial loading.

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  • 模型成功地被证实使用模仿剪切双轴向负荷下反应程度依时间变化组织工程纤维环

    The model was successfully validated and used to simulate time-varying responses of engineered AF under shear and biaxial loading.

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