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A Novel Vertebral Stabilization Method for Producing Contusive Spinal Cord Injury

机译:产生挫伤性脊髓损伤的新型椎体稳定方法

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摘要

Clinically-relevant animal cervical spinal cord injury (SCI) models are essential for developing and testing potential therapies; however, producing reliable cervical SCI is difficult due to lack of satisfactory methods of vertebral stabilization. The conventional method to stabilize the spine is to suspend the rostral and caudal cervical spine via clamps attached to cervical spinous processes.  However, this method of stabilization fails to prevent tissue yielding during the contusion as the cervical spinal processes are too short to be effectively secured by the clamps (>Figure 1).  Here we introduce a new method to completely stabilize the cervical vertebra at the same level of the impact injury.  This method effectively minimizes movement of the spinal column at the site of impact, which greatly improves the production of consistent SCIs.  We provide visual description of the equipment (>Figure 2-4), methods, and a step-by-step protocol for the stabilization of the cervical 5 vertebra (C5) of adult rats, to perform laminectomy (>Figure 5) and produce a contusive SCI thereafter.  Although we only demonstrate a cervical hemi-contusion using the NYU/MASCIS impactor device, this vertebral stabilization technique can be applied to other regions of the spinal cord, or be adapted to other SCI devices.  Improving spinal cord exposure and fixation through vertebral stabilization may be valuable for producing consistent and reliable injuries to the spinal cord.  This vertebral stabilization method can also be used for stereotactic injections of cells and tracers, and for imaging using two-photon microscopy in various neurobiological studies.
机译:与临床相关的动物颈脊髓损伤(SCI)模型对于开发和测试潜在疗法至关重要。然而,由于缺乏令人满意的椎骨稳定方法,很难产生可靠的宫颈SCI。稳定脊柱的常规方法是通过附接到颈椎棘突的夹具来悬垂鼻和尾颈椎。但是,这种稳定方法无法防止挫伤过程中的组织屈服,因为子宫颈的脊突过短,无法用夹子有效地固定(>图1 )。在这里,我们介绍了一种新的方法,可以将颈椎完全稳定在相同水平的冲击损伤下。这种方法有效地减少了撞击部位脊柱的移动,从而极大地提高了稳定SCI的产生。我们提供了成年大鼠的子宫颈5椎骨(C5)稳定化,进行椎板切除术(>图2-4 ),方法和分步方案的直观描述。 >图5 ),然后生成挫伤性SCI。尽管我们仅使用NYU / MASCIS撞击器设备演示了颈椎半挫伤,但这种椎骨稳定技术可以应用于脊髓的其他区域,也可以应用于其他SCI设备。通过椎骨稳定来改善脊髓的暴露和固定可能对产生持续而可靠的脊髓损伤很有价值。这种椎骨稳定方法还可用于细胞和示踪剂的立体定向注射,以及在各种神经生物学研究中使用双光子显微镜成像。

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