首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >The immediate effect of repeated loading on the compressive strength of young porcine lumbar spine.
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The immediate effect of repeated loading on the compressive strength of young porcine lumbar spine.

机译:反复加载对年轻猪腰椎抗压强度的即时影响。

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The human spine is exposed to repeated loading during daily activities and more extremely during sports. Despite this, there remains a lack of knowledge regarding the immediate effects on the spine due to this mode of loading. Age-specific spinal injury patterns has been demonstrated and this implies differences in reaction to load mode and load history The purpose of the present study was to investigate the impact of cyclic pre-loading on the biomechanical properties and fracture patterns of the adolescent spine in an experimental model. Eight functional spinal units from four young porcine spines were harvested. The functional spinal units were cyclic loaded with 20,000 cycles and then axially compressed to failure. The compression load at failure, ultimate stress and viscoelastic parameters were calculated. The functional spinal units were examined with plain radiography, computer tomography and MRI before and after the loading, and finally macroscopically and histologically. The median compression load at failure in this study was 8.3 kN (range 5.6-8.7 kN). The median deformation for all cases was 2.24 mm (range 2.30-2.7 mm) and stiffness was 3.45 N/mm (range 3.5-4.5 N/mm). A fracture was seen on radiograph in one case, on CT and macroscopically in seven, and on MRI and histologically in all eight cases. The cyclic loaded functional spinal units in the present study were not more sensitive to axial compression than non-cyclic loaded functional spinal units from young porcine. The endplate and the growth zone were the weakest part in the cyclic loaded functional spinal units. Disc signal reduction and disc height reduction was found on MRI. The E-modulus value found in this study was of the same order of magnitude as found by others using a porcine animal model.
机译:在日常活动中,人的脊柱承受反复的负荷,在运动过程中,脊柱承受的负荷更大。尽管如此,由于这种加载方式,仍然缺乏有关对脊柱的直接影响的知识。已经证明了特定年龄段的脊柱损伤模式,这意味着对负荷模式和负荷历史的反应存在差异。本研究的目的是研究循环预负荷对青少年脊柱生物力学特性和骨折模式的影响。实验模型。从四个年轻的猪脊柱中收获了八个功能性脊柱单元。功能性脊柱单元被周期性地加载20,000个循环,然后轴向压缩至破坏。计算了破坏时的压缩载荷,极限应力和粘弹性参数。在加载之前和之后,通过平片,计算机断层扫描和MRI检查功能性脊柱单位,最后进行肉眼和组织学检查。在这项研究中,失效时的平均压缩载荷为8.3 kN(范围为5.6-8.7 kN)。所有情况下的中值变形为2.24毫米(范围为2.30-2.7毫米),刚度为3.45 N / mm(范围为3.5-4.5 N / mm)。在X线片上发现骨折,在CT上和在宏观上发现7例,在MRI和组织学上都在8例中发现骨折。在本研究中,循环加载的功能性脊柱单元对轴向压缩的敏感性不比年轻猪的非循环加载的功能性脊柱单元敏感。终板和生长区是循环加载的功能性脊柱单元中最弱的部分。在MRI上发现椎间盘信号减少和椎间盘高度减少。在这项研究中发现的E模量值与使用猪动物模型的其他人发现的E模量值处于相同的数量级。

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