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脊髓软膜的力学特性与功能。

Mechanical properties and function of the spinal pia mater.

作者信息

Ozawa Hiroshi, Matsumoto Takeo, Ohashi Toshiro, Sato Masaaki, Kokubun Shoichi

机构信息

Department of Orthopaedic Surgery, School of Medicine and Graduate School of Mechanical Engineering, Tohoku University, Sendai, Japan.

出版信息

J Neurosurg Spine. 2004 Jul;1(1):122-7. doi: 10.3171/spi.2004.1.1.0122.

Abstract

OBJECT

The pia mater has received little attention regarding its function in the deformation of the spinal cord under compression. In this study the mechanical properties and function of the spinal pia mater were investigated using three methods.

METHODS

Spinal cord segments were excised from rabbits. The elastic modulus of the pia mater was measured by performing a tensile test using specimens with the pia mater intact and ones with the pia mater stripped off. The stiffness of the spinal cord was examined by performing a compression test with specimens containing an intact pia mater and ones with a pia mater that was incised at both sides. The cross-sectional area and circumference of the spinal cord were measured on axial views of magnetic resonance images in patients with cervical disc herniations before and after surgery. The pia mater had an elastic modulus of 2300 kPa, which was 460 times higher than that of spinal cord parenchyma. By covering the parenchyma, it tripled the overall elastic modulus of the spinal cord. The pia mater increased the stiffness of the spinal cord and enhanced its shape recovery after removal of the compression. The cross-sectional area of the spinal cord increased after surgery, whereas the circumference of the spinal cord changed little.

CONCLUSIONS

The pia mater firmly covers the spinal cord and has a high elastic modulus; it therefore provides a constraint on the spinal cord surface. It prevents elongation of the circumference and produces a large strain energy that is responsible for shape restoration following decompression.

摘要

目的

在脊髓受压变形过程中,软脑膜在其功能方面几乎未受到关注。在本研究中,采用三种方法对脊髓软脑膜的力学性能和功能进行了研究。

方法

从兔身上切除脊髓节段。通过对软脑膜完整和软脑膜剥离的标本进行拉伸试验来测量软脑膜的弹性模量。通过对软脑膜完整和双侧软脑膜切开的标本进行压缩试验来检查脊髓的硬度。在颈椎间盘突出症患者手术前后的磁共振图像轴位视图上测量脊髓的横截面积和周长。软脑膜的弹性模量为2300kPa,比脊髓实质的弹性模量高460倍。通过覆盖实质,它使脊髓的整体弹性模量增加了两倍。软脑膜增加了脊髓的硬度,并在去除压迫后增强了其形状恢复能力。手术后脊髓的横截面积增加,而脊髓的周长变化不大。

结论

软脑膜紧密覆盖脊髓且具有高弹性模量;因此它对脊髓表面提供了一种约束。它防止周长伸长,并产生大量应变能,这是减压后形状恢复的原因。

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