Histomorphometric study of the soleus muscle under conditions of modeling of spinal cord contusion injury: experimental morphological study

G. Filimonova, N. V. Kubrak, V. Krasnov, S. Ryabykh
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Abstract

Objective. To conduct a morphometric analysis of the soleus muscle of rats after moderate spinal cord contusion injury.Material and Methods. Experiments were performed on female Wistar rats aged 8–12 months, weighing 270–320 g. Animals of the experimental group (n = 25) underwent laminectomy at the T9 level under general anesthesia and modeling of spinal contusion injury of moderate severity. Intact rats constituted the control group (n = 10). Euthanasia was performed on the 5th, 15th, 30th, 60th, 90th, and 180th days of the experiment. Paraffin sections were stained with hematoxylin-eosin and Masson, the diameters of muscle fibers were determined by computer morphometry, and histograms of their distribution were obtained.Results. In the soleus muscle, the signs of reversible reparative processes prevailed in response to neurotrophic damage. It was evidenced by a local increase in the diversity of myocyte diameters and the loss of polygonality of their profiles, focal destruction of muscle fibers, activation of the connective tissue component, disorganization of some intramuscular nerve conductors, and vascular fibrosis of perimysium. Nevertheless, the histostructure of an intact muscle prevailed in the course of the experiment, which was confirmed by the data of morphometric analysis. All histograms of the distribution of the muscle fiber diameters are unimodal with a mode in the range of 30–41 μm. On the 180th day, the maximum myocyte diameters in the histogram of the left limb muscle belonged to the range of 21–30 μm, which was typical for histograms in the intact group.Conclusion. The nature of the plastic reorganization of the soleus muscle when neurotrophic control is impaired indicates compensatory regeneration of muscle tissue by the type of restitution, which opens up the possibility of predicting the rehabilitation period. It is advisable to take this into account when developing medical and social programs and therapeutic measures, where the most important role is played by superficial neuromuscular and functional electrical stimulation.
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脊髓挫伤模型条件下比目鱼肌的组织形态学研究:实验形态学研究
目标。目的:对中度脊髓挫伤大鼠比目鱼肌进行形态学分析。材料和方法。实验对象为8-12月龄雌性Wistar大鼠,体重270-320 g。实验组(n = 25)在全身麻醉下,在T9水平行椎板切除术,并建立中度脊髓挫伤模型。正常大鼠为对照组(n = 10)。分别于实验第5、15、30、60、90、180天实施安乐死。石蜡切片用苏木精-伊红和马松染色,计算机形态测量法测定肌纤维直径,并得到其分布的直方图。在比目鱼肌中,可逆修复过程的迹象在对神经营养损伤的反应中占主导地位。其表现为肌细胞直径多样性的局部增加及其轮廓的多向性丧失,肌肉纤维的局灶性破坏,结缔组织成分的激活,一些肌内神经传导的紊乱以及肌周围的血管纤维化。然而,在实验过程中,完整肌肉的组织结构占主导地位,形态计量学分析数据证实了这一点。肌纤维直径的直方图均为单峰分布,模态范围为30 ~ 41 μm。第180天,左肢体肌肉直方图中最大肌细胞直径在21 ~ 30 μm范围内,与正常组的直方图一致。当神经营养控制受损时,比目鱼肌可塑性重组的性质提示肌肉组织的代偿性再生,这为预测康复期提供了可能。在制定医疗和社会计划和治疗措施时,最好考虑到这一点,其中最重要的作用是浅表神经肌肉和功能性电刺激。
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