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temporomandibular ligament
相关语句
  颞下颌韧带
     Ultrastructure Study of the Temporomandibular Ligament in Dogs
     狗颞下颌韧带超微结构的研究
短句来源
     Biochemical Studies of the Temporomandibular Ligament in Dogs
     狗颞下颌韧带生物化学的初步研究
短句来源
     Comparison of Biomechanical Properity Between Temporomandibular Ligament and Joint Capsule of Dogs
     狗颞下颌韧带及关节囊的拉伸力学性能比较
短句来源
  “temporomandibular ligament”译为未确定词的双语例句
     Theaim of the thesis is to compare the stress-strain relationship of temporomandibular ligament with joint capsule,ob-serve different effect of ligament and joint capsule in TMJ movement.
     结果表明,颞下颌韧带的破坏应力、破坏能量及弹性模量明显大于关节囊,即韧带的拉伸强度及拉伸刚度较关节囊大,韧带的应力—应变实验曲线与囊比较,其应力随应变上升较快,曲线斜率较大。
短句来源
  相似匹配句对
     Ultrastructure Study of the Temporomandibular Ligament in Dogs
     狗颞下颌韧带超微结构的研究
短句来源
     Biochemical Studies of the Temporomandibular Ligament in Dogs
     狗颞下颌韧带生物化学的初步研究
短句来源
     The morphology of ligament of marshall.
     Marshall韧带的形态学研究
短句来源
     Biomechanics of Temporomandibular Joint
     颞下颌关节的生物力学
短句来源
     Reconstruction of Temporomandibular Joint.
     颞下颌关节重建术
短句来源
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Temporomandibular ligament is the main ligament of TMJ.It tokes an important role in mandibular morement.Theaim of the thesis is to compare the stress-strain relationship of temporomandibular ligament with joint capsule,ob-serve different effect of ligament and joint capsule in TMJ movement.The results show that the stress to failure,energy to failure and elastic moduli in ligament are much greater than joint capsule.The data suggests that 3he ten-sile strength and tensile stiff of ligament...

Temporomandibular ligament is the main ligament of TMJ.It tokes an important role in mandibular morement.Theaim of the thesis is to compare the stress-strain relationship of temporomandibular ligament with joint capsule,ob-serve different effect of ligament and joint capsule in TMJ movement.The results show that the stress to failure,energy to failure and elastic moduli in ligament are much greater than joint capsule.The data suggests that 3he ten-sile strength and tensile stiff of ligament is much greater than of capsule.The study uses Fong's Quasi—linear Vis-coelastic Theory for analysis.

本文从生物力学的角度,比较狗颞下领韧带及关节囊的拉伸力学特点,区别颞下颌韧带与关节囊在颞下颌关节运动中的具体作用。结果表明,颞下颌韧带的破坏应力、破坏能量及弹性模量明显大于关节囊,即韧带的拉伸强度及拉伸刚度较关节囊大,韧带的应力—应变实验曲线与囊比较,其应力随应变上升较快,曲线斜率较大。采用冯元桢的拟线性粘弹性理论对实测数据进行理论分析及实验验证,认为在载荷作用组织变形较小时,拟线性粘弹性理论可以作为分析颞下颌韧带及关节囊的本构方程;在颞下领关节功能运动中,主要由颞下颌韧带承受拉伸载荷,即微张口时悬吊下颌,限制其过度运动。关节囊在一定程度上辅助韧带的功能。

The purpose of this study was to observe the ultrastrueture of collagen and ligamental attachment insertions inthe temporomandibular ligament(TML)in adult dogs by stereomicroscope,light microscope and scanning electronmicroscope.The TML mainly consisted of thick bundles of collagen fibers which arranged densely in a regular wavyundulation and almost paralleled with their long axis.Therefore,the TML had the ability to bear the high-tensionload and was essential to the stability of the TMJ.The ligamental...

The purpose of this study was to observe the ultrastrueture of collagen and ligamental attachment insertions inthe temporomandibular ligament(TML)in adult dogs by stereomicroscope,light microscope and scanning electronmicroscope.The TML mainly consisted of thick bundles of collagen fibers which arranged densely in a regular wavyundulation and almost paralleled with their long axis.Therefore,the TML had the ability to bear the high-tensionload and was essential to the stability of the TMJ.The ligamental insertions were even more complex and dynamic.At the temporal attachment area,the fibres of ligament penetrated into bone directly.At the condylar insertion,thefibers inserted by gradual transition through a layer of mineralized fibrous(or coarse—fibered bone)into bone.Thistransition may constitute a force-absorbing interfuse between ligament and bone,therefore,prevented the TMJfrom dislocation when put on excessive and sudden stress.

以体视显微镜、光镜和扫描电镜观察了成年狗颞下颌韧带胶原纤维及韧带骨止点的结构。结果表明,颞下颌韧带以胶原纤维为主,纤维粗大致密、波浪状平行排列,与韧带长轴方向一致。韧带颞骨止端纤维直接附于骨面;髁突止端存在逐渐钙化的现象,在纤维与皮质骨之间有纤维化生骨形成。作者认为,颞下颌韧带的结构适宜承受高拉伸载荷,是维持关节稳定的主要结构。骨止点结构的独特性,利于有效地传递、衰减拉伸载荷,维护韧带骨联合体的完整性。

 
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