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首页> 外文期刊>Cells tissues organs >Changes in the Capillarity of the Rat Extensor Digitorum Longus Muscle 4 Weeks after Nerve Injury Studied by 2D Measurement Methods
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Changes in the Capillarity of the Rat Extensor Digitorum Longus Muscle 4 Weeks after Nerve Injury Studied by 2D Measurement Methods

机译:通过2D测量方法研究神经损伤后4周大鼠伸肌位肌毛细血管的变化

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We have previously shown by 3D study that 2 weeks after nerve injury there was no change in the length of capillaries per muscle fibre length in rat extensor digitorum longus muscle (EDL). The primary goal of the present 2D study was to determine the capillarity of rat EDL 4 weeks after various modes of nerve injury. Additionally, we wished to calculate the same capillary/fibre parameters that were used in our 3D stereological study. EDL muscles derived from denervat-ed (4 weeks after nerve injury), re-innervated (4 weeks after two successive nerve crushes) and age-matched controls from the beginning (CON-I)and the end (CON-2) of the experiment were analysed in two ways. Global indices of capillarity, such as capillary density (CD) and capillary/fibre (C/F) ratio, were determined by automatic analysis, local indices as the number (CAF) and the length of capillaries around individual muscle fibres (Leap) in relation to muscle fibre size were estimated manually by tracing the muscle fibre outlines and the transversally and longitudinally cut segments of capillaries seen in 5-um-thin muscle cross sections. Four weeks after both types of nerve injury, CD increased in comparison to the CON-2 group (p < 0.001) due to atrophied muscle fibres in denervated muscles and probably proliferation of capillaries in re-innervated ones. Higher C/F, CAF (both p < 0.001) and Leap (p < 0.01) in re-innervated than denervated EDL confirmed this assumption. Calculated capillary/fibre parameters were comparable to our previous 3D study, which strengthens the practical value to the adapted 2D method USed in this Study.
机译:我们之前已经通过3D研究表明,在神经损伤后2周,大鼠伸长型Digitorum Longus肌肉(EDL)中,每肌纤维长度的毛细血管长度没有变化。本2D研究的主要目标是在各种神经损伤模式后4周确定大鼠EDL的毛细作用。此外,我们希望计算在我们的3D立体学研究中使用的相同毛细血管/纤维参数。 EDL肌肉来自Denervat-ed(神经损伤后4周),重新分配(在两次连续神经压碎后4周)和从开始(CON-I)和结束(CON-2)的年龄匹配的控制通过两种方式进行实验。通过自动分析,局部索引作为数量(CAF)和单个肌肉纤维(LEAP)周围的毛细血管长度来确定毛细血管性(如毛细密度(CD)和毛细血管/纤维(C / F)比例的毛细血管和毛细血管/纤维(C / F)的索引。通过追踪肌肉纤维轮廓和横向和纵向切割的毛细血管中的毛细血管中看到的毛细血管的横向和纵向切割尺寸来估计与肌纤维尺寸的关系。两种类型的神经损伤后四周,CD与CON-2组(P <0.001)相比增加(P <0.001),因为处于方便的肌肉中的萎缩肌纤维,并且在重新支配的毛细血管中可能会增殖毛细血管。再接受后的C / F,CAF(P <0.001)和LEAP(P <0.01)的跳跃(P <0.01)证实了这种假设。计算的毛细管/纤维参数与我们之前的3D研究相当,其增强了本研究中使用的适应性2D方法的实用值。

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