Bergomi Marzio, Wiskott H W Anselm, Botsis John, Mellal Aïssa, Belser Urs C
Laboratoire de Mécanique Appliquée et D'Analyse de Fiabilité, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne 1015, Switzerland.
J Biomech Eng. 2010 Jan;132(1):014504. doi: 10.1115/1.4000154.
The periodontal ligament (PDL) functions both in tension and in compression. The presence of an extensive vascular network inside the tissue suggests a significant contribution of the fluid phase to the mechanical response. This study examined the load response of bovine PDL under different pore pressure levels. A custom-made pressure chamber was constructed. Rod-shaped specimens comprising portions of dentine, bone, and intervening layer of PDL were extracted from bovine mandibular molars. The dentine ends of the specimens were secured to the actuator while the bone ends were affixed to the load cell. The entire assemblage was surrounded by the pressure chamber, which was then filled with saline. Specimens loaded at 1.0 Hz sinusoidal displacement were subjected to four different environmental fluid pressures (i.e., pressures of 0.0-1.0 MPa). The video images recorded during the tests were analyzed to determine whether or not fluid exchange between the PDL and the surrounding medium took place during mechanical loading. A value for the tissue's apparent Poisson ratio was also determined. The following observations were made: (1) fluid was squeezed out and pumped into the ligament during the compressive and tensile loading phases, (2) the PDL was highly compressible, and (3) the pore pressure had no influence on the mechanical response of the PDL. The present tests emphasized the biphasic structure of PDL tissue, which should be considered as a porous solid matrix through which fluid can freely flow.
牙周韧带(PDL)在拉伸和压缩时均发挥作用。组织内广泛血管网络的存在表明液相在力学响应中起重要作用。本研究考察了不同孔隙压力水平下牛牙周韧带的载荷响应。构建了一个定制的压力室。从牛下颌磨牙中提取包含牙本质、骨以及中间牙周韧带层部分的棒状标本。标本的牙本质端固定在致动器上,而骨端固定在测力传感器上。整个组件被压力室包围,然后向压力室中注入盐水。以1.0 Hz正弦位移加载的标本承受四种不同的环境流体压力(即0.0 - 1.0 MPa的压力)。分析测试过程中记录的视频图像,以确定机械加载过程中牙周韧带与周围介质之间是否发生了流体交换。还确定了组织的表观泊松比的值。得出以下观察结果:(1)在压缩和拉伸加载阶段,流体被挤出并泵入韧带;(2)牙周韧带具有高度可压缩性;(3)孔隙压力对牙周韧带的力学响应没有影响。目前的测试强调了牙周韧带组织的双相结构,应将其视为流体可自由流动的多孔固体基质。