From the Clinic for Small Animal Surgery, Vetsuisse Faculty, University of Zurich, 8057 Zurich, Switzerland.
Musculoskeletal Biomechanics, ARTORG Center for Biomedical Engineering Research, University of Bern, CH-3010 Bern, Switzerland.
Am J Vet Res. 2021 Nov 26;82(12):1003-1012. doi: 10.2460/ajvr.20.12.0218.
To evaluate intradiskal pressure (IDP) in the C6-7 intervertebral disk (IVD) after destabilization and distraction-fusion of the C5-C6 vertebrae.
7 cadaveric C4-T1 vertebral specimens with no evidence of IVD disease from large-breed dogs.
Specimens were mounted in a custom-made 6 degrees of freedom spinal loading simulator so the C5-C6 and C6-C7 segments remained mobile. One specimen remained untreated and was used to assess the repeatability of the IDP measurement protocol. Six specimens underwent 3 sequential configurations (untreated, partial diskectomy of the C5-6 IVD, and distraction-fusion of the C5-C6 vertebrae). Each construct was biomechanically tested under neutral, flexion, extension, and right-lateral bending loads. The IDP was measured with a pressure transducer inserted into the C6-7 IVD and compared between the nucleus pulposus and annulus fibrosus and across all 3 constructs and 4 loads.
Compared with untreated constructs, partial diskectomy and distraction-fusion of C5-C6 decreased the mean ± SD IDP in the C6-7 IVD by 1.3 ± 1.3% and 0.8 ± 1.3%, respectively. During motion, the IDP remained fairly constant in the annulus fibrosus and increased by 3.8 ± 3.0% in the nucleus pulposus. The increase in IDP within the nucleus pulposus was numerically greatest during flexion but did not differ significantly among loading conditions.
Distraction-fusion of C5-C6 did not significantly alter the IDP of healthy C6-7 IVDs. Effects of vertebral distraction-fusion on the IDP of adjacent IVDs with degenerative changes, such as those in dogs with caudal cervical spondylomyelopathy, warrant investigation.
评估 C5-C6 椎体失稳和牵张融合后 C6-7 椎间盘内压力(IDP)。
7 具来自大型犬的无椎间盘疾病证据的 C4-T1 脊柱标本。
标本安装在定制的 6 自由度脊柱加载模拟器中,使 C5-C6 和 C6-C7 节段保持活动状态。一个标本未进行任何处理,用于评估 IDP 测量方案的可重复性。6 个标本经历了 3 个连续的构型(未处理、C5-6 椎间盘部分切除术和 C5-C6 椎体牵张融合)。每个构建体在中立、前屈、伸展和右侧弯曲载荷下进行生物力学测试。通过插入 C6-7 椎间盘的压力传感器测量 IDP,并在核髓和纤维环之间以及在所有 3 个构建体和 4 个载荷之间进行比较。
与未处理的构建体相比,C5-C6 的部分椎间盘切除术和牵张融合使 C6-7 椎间盘的平均 IDP 分别降低了 1.3±1.3%和 0.8±1.3%。在运动过程中,纤维环中的 IDP 基本保持恒定,核髓中的 IDP 增加了 3.8±3.0%。核髓内 IDP 的增加在屈曲时最大,但在不同载荷条件下无显著差异。
C5-C6 的牵张融合并未显著改变健康 C6-7 椎间盘的 IDP。需要研究退行性改变(如患有尾颈椎脊髓病的犬的相邻椎间盘)对椎体牵张融合对 IDP 的影响。