首页> 外文期刊>Journal of Morphology >Functional morphology and fiber types of the masseter muscles of two caviomorph rodents with contrasting lifestyles, Ctenomys talarum (Ctenomyidae) and Cavia aperea (Caviidae)
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Functional morphology and fiber types of the masseter muscles of two caviomorph rodents with contrasting lifestyles, Ctenomys talarum (Ctenomyidae) and Cavia aperea (Caviidae)

机译:功能形态和纤维类型的两个穴位啮齿动物的肌肉肌肉,具有对比的生活方式,ctenomys talarum(ctenomyidae)和胱鲕奈瑟(Caviidae)

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The aim of this work is the analysis of histochemical and morphometric properties of the masseter muscles of Ctenomys talarum and Cavia aperea. The former belongs to a subterranean rodent clade, Ctenomyidae, which has evolved a robust masticatory apparatus adapted to chisel-tooth digging and processing of abrasive grasses; C. aperea belongs to the family Caviidae, with relatively graceful jaws and mandibular musculatures, consistent with less mechanically challenging diets. Adult males were captured, immediately transported to the laboratory, and euthanized in a CO2 chamber. The musculus masseter superficialis and musculus masseter profundus on the left side of the animals were used to analyze the histochemical composition of the fiber types treated with myosin adenosine triphosphatase, succinate dehydrogenase and periodic acid Schiff. The mean fiber diameters, relative areas, and frequencies of each muscle fiber type were calculated. The mm. masseter superficialis and masseter profundus on the right side were used to measure the physiological cross-sectional area (PCSA). Based on this measurement, the internal force (F) was estimated. In the m. masseter profundus of both species and in the m. masseter superficialis of C. aperea intermediate fast oxidative-glycolytic fibers (FOGi) predominated. In the mm. masseter superficialis and masseter profundus of C. talarum the relative area of fast glycolytic (FG) fibers was greater than that of the muscles of C. aperea, whose main muscle fiber component is FOGi fibers. When corrected for body mass differences, PCSA was higher for the mm. masseter superficialis of C. talarum. This and the larger relative area of FG fibers, probably contributes to the exertion of large bite forces in C. talarum, as measured in previous studies.
机译:本研究的目的是分析距骨栉孔扇贝和开孔豚鼠咬肌的组织化学和形态计量学特性。前者属于一个地下啮齿类分支,Ctenomyidae,它进化出一种坚固的咀嚼装置,适合凿齿挖掘和加工磨蚀性草;下颌孔和下颌孔属于相对不具挑战性的下颌孔。成年雄性被抓获,立即送往实验室,并在二氧化碳室中实施安乐死。用动物左侧的咬肌浅部和咬肌深部分析经肌球蛋白三磷酸腺苷酶、琥珀酸脱氢酶和高碘酸希夫酶处理的纤维类型的组织化学组成。计算每种肌纤维类型的平均纤维直径、相对面积和频率。嗯。用右侧浅咬肌和深咬肌测量生理横截面积(PCSA)。基于该测量,估算了内力(F)。在这两个物种的咬肌深部和开口梭菌的咬肌浅部,中间快速氧化糖酵解纤维(FOGi)占优势。在mm里。距喙梭菌的浅咬肌和深咬肌快速糖酵解(FG)纤维的相对面积大于开口梭菌的肌肉,开口梭菌的主要肌纤维成分是FOGi纤维。校正体重差异后,mm的PCSA更高。距骨浅咬肌。这一点以及FG纤维的较大相对面积,可能有助于在之前的研究中测量到的距骨牙鲆中施加较大的咬合力。

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