• 目的:使用生长技术GR未成熟进行手术,评价张压力生长情况。

    Objective. The aim of this study is to evaluate the vertebral body growth under distraction forces in immature pigs treated with growing rod (GR) technique.

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  • 对于人类而言,视网膜由密集的以及视椎体细胞组成。 棒细胞弱光条件椎体细胞容易发挥作用并且这些细胞也是在鲨鱼视网膜内发现常见的细胞类型

    Rods are able to function in much lower light than cones - and these were the most common cell types found in all of the sharks.

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  • 脊髓后方外硬膜可见多个强化结节,主要见于C2L4-S1椎体平面。

    There are several intradural extramedullary enhancing nodules posterior to the spinal cord seen best at the level of C2 and at L4-S1.

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  • 方法通过沿横突、弓根腰部,严格骨膜向前剥离,直达韧带

    Methods: Through the anterior transverse process along the transverse process, pedicle and vertebral body waist from subperiosteal forward to stripped until the below of longitudinal ligament.

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  • 目的:为微创极外侧融合术(XLIF)提供解剖学依据。

    Objective: to provide anatomic data for lower lumbar spine interbody fusion through the extreme lateral approach (XLIF).

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  • 目的探讨CT引导经皮穿刺椎体成形术(PVP)治疗转移瘤晚期疼痛的方法和效果。

    Objective: To evaluate the usefulness of CT-guided percutaneous vertebroplasty (PVP) in treating the pain resulting from vertebral metastases.

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  • 目的研究椎体凹陷以及它在腰间盘退变时的变化规律。

    Objective:To investigate the concave angle of vertebral end-plate in low lumbar spine, and the changes of the angle during lumbar disc degeneration.

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  • 目的探索经皮应用膨胀式融合器进行腰间融合方法

    Objective To investigate the method for percutaneous interbody fusion of interspace of lumbar vertebrae under local anaesthesia with expanding lumbar vertebrae fusion cage.

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  • 通过X线测量状隐窝相对位置

    The relationship of position between the inferior piriform recess and vertebral was measured through X-ray film.

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  • 模拟研究及置管训练使用间盘手术系统,共对7具尸C1-7椎体间的14个间隙进行内镜前路减压操作。

    Surgical Model: With the MED system, we performed 14endoscopic anterior cervical discectomy on the C1-7 cervical spine of 7 cadaveric specimens.

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  • 间隙相邻面上椎体板的抗强度大于椎体上终板(P<0.05)。

    As for intervertebral space, the cranial endplates had a higher yield stress than caudal endplates(P<0.05).

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  • 间隙相邻面上椎体板的抗强度大于椎体上终板(P<0.05)。

    As for intervertebral space, the cranial endplates had a higher yield stress than caudal endplates(P<0.05).

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