食管分层应力-应变研究
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STRESS-STRAIN PROPERTIES OF LAYERED RAT ESOPHAGUS
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    摘要:

    目的 探讨食管壁各层环向应力 应变分布特征。方法 将 8只Wister大鼠的食管标记、测量在体长度后剪下置于去钙离子Krebs液中。剪下标记的中段食管用做充压试验 ,将其在显微镜下分离成内层食管 (粘膜和粘膜下层 )和外层食管 (固有肌层 )。充压时全层和分层食管均被拉长至在体长度 ,以每分钟升高 2cmH2 O速度匀速充压。根据所测图像的几何数据计算全层和分层食管的Kirchhoff应力和Green应变。零应力状态作为计算应力和应变的基本参照状态。结果 (1 )食管离体后较在体长度缩短 2 4%。 (2 )全层食管和分层食管的环向应力 应变曲线均符合指数方程τ =(τ +β)eα(ε-ε ) -β(判定系数 >0 .96) ,为非线性关系。 (3 )与全层食管相比 ,分层后内层食管应力 应变曲线较陡直 ,且移向左侧 ,差别有统计意义 (P <0 .0 5 ) ,外层食管的曲线移向右侧 ,差别无统计意义 (P >0 .0 5 ) ,内外两层食管的应力 -应变曲线亦有统计差别 (P <0 .0 5 )。结论 食管壁各层环向应力 -应变均符合非线性关系 ,食管内层不如外层易变形

    Abstract:

    Objective To study the circumferential stress strain properties of layered esophagus in vitro.Methods A total of 8 male Wister rats were anesthetized and the esophagus were marked on the surface in vivo, excised and placed into the calcium free Krebs solution with dextran and EGTA added. The middle parts of the esophagi were selected for distention test and were separated into inner (mucosa and submucosa) and outer (muscle) esophagi. In distention tests the intact and layered esophagi were elongated to the in vivo length respectively with the pressures were applied in a ramp way at the rate of 2 cm H 2O per minute. The stresses and strains were computed from the morphometric data obtained from the images using the definitions by Kirchhoff and Green. Zero stress state was used as the initial reference for the stress strain analysis. Results The esophagus shortened axially by 24% after excision. The circumferential stress strain curves in intact and layered esophagus fitted well to mono-exponential function: τ=(τ *+β)e α(ε-ε *) -β(determination coefficients >0.96). Comparing the stress strain curves of intact esophagus, the curves of inner esophagus were shifted to the left ( P<0.05 ); and the curves of outer esophagus were shifted to the right (P >0.05). The differences between the curves of the inner and outer esophagus were also significant (P <0.05).Conclusion The circumferential stress-strain properties of the intact and layered esophagus showed non linearity. The inner esophagus is stiffer than the outer and intact esophagus.

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樊艳华,窦艳玲,庄逢源,Hans Gregersen.食管分层应力-应变研究[J].医用生物力学,2003,18(3):158-162

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