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1.
大鼠和家兔生后发育各阶段比目鱼肌纤维的比较   总被引:2,自引:2,他引:0  
为研究大鼠与家兔骨骼肌各类型肌纤维的数量和二维分布以及生后发育对其影响,取生后2d和2、4、6、8、10周龄(体重10g和32、95、190、280、320g)大鼠及生后2d和2、4、8、12、16、20、24周龄(体重100g和220、400、750、1200、1600、2100、2500g)家兔的比目鱼肌做琥珀酸脱氢酶染色。实验结果表明,大鼠和家兔比目鱼肌纤维被分成Ⅰ型(SO),ⅡX型(FO)和ⅡA型(FOG)3型。使用图像分析系统分析每型肌纤维在生后发育各阶段的相关变化,大鼠和家兔比目鱼肌中:Ⅰ型纤维分布于整块肌肉,其数量随着生后发育而增加。幼体ⅡX型纤维分布在整块肌肉中,其数量随生后发育而减少;ⅡA型分布在肌肉中深层,数量几乎无变化;至成体时只有少量的ⅡX和ⅡA分布在肌表层。整个发育期间未见ⅡB型纤维。ⅡA型纤维直径最大,Ⅰ型中等,而ⅡX型最小。家兔3型肌纤维的平均横切面积比大鼠的大。这些结果表明大鼠和家兔后肢肌各种类型肌纤维的数量比例和分布随生长过程发生改变。  相似文献   

2.
家兔与大鼠腓肠肌的生后发育比较   总被引:9,自引:0,他引:9  
朱道立  陈佩林  叶辉  程量 《动物学报》2003,49(5):646-655
研究分析了家兔、大鼠腓肠肌在生后各年龄阶段的内侧头、外侧头的内侧亚体、中间亚体或外侧浅亚体、外侧亚体或外侧深亚体内快慢肌纤维的发育情况,应用大体解剖结合组织化学方法确定了其肌亚体,并进行琥珀酸脱氢酶染色、图像分析两型肌纤维的直径特征,以及肌构筑学与肌诱发电位的测量。结果表明:家兔在生后1个月时,内侧亚体从其深面凸现于内侧头与外侧亚体之间,中间亚体居于内侧亚体远端;大鼠内侧头未能区分肌亚体,其外侧头分为内侧亚体、外侧浅亚体,而外侧深亚体居于外侧浅亚体的深面呈重叠状:生后2、3天均未能分出Ⅰ、Ⅱ型肌纤维,也未见有原始肌束;Ⅰ、Ⅱ型肌纤维比例随年龄增长而变化,内侧亚体的Ⅱ型肌纤维比例在家兔与大鼠的生后发育中始终占优,而在其它各肌亚体内,Ⅱ型肌纤维的比例在发育中不恒定,直至成年后Ⅱ型肌纤维才趋于稳定并占优。在生长发育过程中,各肌亚体内Ⅱ型肌纤维的直径在各年龄段均大于Ⅰ型肌纤维。生后6个月家兔外侧头内侧亚体(FL/CSA)比值越大,倾向于速度型构筑;内侧头、中间亚体和外侧亚体(CSA/MW)比值越大,倾向于力量型构筑。大鼠腓肠肌外侧头内侧亚体乙酰胆碱酯酶染色显示葡萄状运动神经末梢支配慢肌纤维,斑点状运动终板位于快肌纤维。  相似文献   

3.
家兔胫骨前肌肌纤维型的分布研究   总被引:2,自引:0,他引:2  
根据家兔胫骨前肌的肌纤维起止、排列和神经支配特征,将该肌分为前、后两个亚体。利用家兔8例16侧胫骨前肌,按上述两个亚体分别取材,作恒冷箱冰冻横切,肌球蛋白ATP酶染色,将肌纤维分为Ⅰ型、ⅡA型、ⅡB型,检测各亚体的肌纤维型构成比例,肌束内肌纤维的分布特征,并用图象分析仪测量各亚体肌纤维横切面积和直径。结果发现,前、后亚体以Ⅱ型纤维居多,前亚体ⅡA型纤维高达35.4%,后亚体Ⅰ型纤维多达24.5%,两者的ⅡB型纤维均达50%左右。而左、右侧之间无差异,肌束周边部内Ⅰ型纤维仅占12.7~13.3%,ⅡB型纤维高达59.9~60.0%,说明受肌束膜压迫影响,ⅡB型肌纤维血供少,以适应无氧酵解的功能。各亚体的Ⅰ型纤维较细,Ⅱ型纤维较Ⅱ粗,A型与ⅡB型二者相似。作者认为,前亚体主要参与快速有力的足背屈运动,后亚体则维持踝关节的稳定,保持足弓的形状和弹性,以便适应该肌的站立、跑动和跳跃的功能。  相似文献   

4.
朱道立 《动物学杂志》2003,38(2):32-35,T002
研究大鼠、家兔和人跖肌的肌纤维型构成比例与分布。应用肌球蛋白腺苷三磷酸酶(ATP酶)和琥珀酸脱氢酶(SDH酶)染色法,观察比较各型肌纤维的组织化学特性。结果表明:肌球蛋白ATP酶染色,大鼠、家兔和人跖肌的肌纤维可分成I型、ⅡA型、ⅡB型肌纤维,横切面呈多边形或椭圆形,分别约占25%、35%和40%;琥珀酸脱氢酶染色,肌纤维呈蔚蓝色,以镶嵌交叉排列,可分为中染S0、深染FOG和浅染FG三型,分别约占25%、30%和45%,种系间无显著性差异。ATP酶活性反应肌纤维收缩的生理特性,而SDH活性反应肌纤维的代谢特征,两种分型的方法有所差异。  相似文献   

5.
王琦  高云芳  樊小力 《动物学报》2007,53(1):116-122
采用尾部悬吊法建立后肢骨骼肌废用的动物模型,以肌球蛋白ATP酶(mATPase)法测定比目鱼肌的mATPase活性,依据mATPase染色结果进行肌纤维分型,并测量肌纤维横截面积(Cross-section area,CSA),首次观察了尾部悬吊对达乌尔黄鼠比目鱼肌湿重、CSA和梭外肌、梭内肌纤维mATPase活性的影响,并与尾部悬吊大鼠进行了比较。旨在探讨冬眠动物骨骼肌在废用状态下的变化。结果显示,尾部悬吊14d可使大鼠比目鱼肌湿重体重比下降35.52%(P<0.001),Ⅰ型肌纤维CSA和Ⅱ型肌纤维CSA分别下降18.91%和20.68%(P<0.05);肌纤维平均CSA减少20.45%(P<0.01)。比目鱼肌中Ⅰ型肌纤维的构成比由对照组的80.61%降低为66.83%,Ⅱ型肌纤维的构成比由19.39%增加到33.17%(P<0.001);梭内肌纤维mATPase活性增强,核袋1纤维的mATPase染色由阴性(-)转变为强阳性( ),核袋2纤维和核链纤维由阳性( )转变为强阳性( )。而达乌尔黄鼠在尾部悬吊14d后,比目鱼肌湿重仅比对照组下降0.05%,Ⅰ、Ⅱ型肌纤维CSA与平均CSA分别比对照组减少0.84%、0.63%和0.37%,均无明显差异(P>0.05);与对照组相比,比目鱼肌中Ⅰ型肌纤维的构成比从82.55%减少到77.30%,Ⅱ型肌纤维的构成比由17.45%增加到22.70%(P<0.05);梭内肌纤维mATPase活性亦明显升高,核袋1纤维的mATPase染色由对照组的阴性(-)转化为强阳性( ),核袋2纤维及核链纤维则由对照组的阳性( )转化为核袋2纤维呈阳性( ),核链纤维则呈弱阳性( )。结果表明:尾部悬吊可致大鼠比目鱼肌明显萎缩;达乌尔黄鼠比目鱼肌则无明显萎缩;两者比目鱼肌梭内、外肌mATPase活性均明显升高。  相似文献   

6.
目的:探讨一种中药复方制剂RC对模拟失重条件下大鼠比目鱼肌(SOL)的mATP酶活性及肌萎缩的影响.方法:尾部悬吊法建立大鼠模拟失重模型,测量比目鱼肌的湿重体重比(mg/g),以Ca2 -ATPase法测定比目鱼肌中mATP酶活性,计算Ⅰ型和Ⅱ型肌纤维的比例,测定比目鱼肌中Ⅰ型和Ⅱ型肌纤维的横截面积(CSA).结果:与吊尾 溶媒灌胃组相比,吊尾14天后,吊尾 RC灌胃组的湿重体重比增加了33.33%(P<0.01);比目鱼肌中Ⅰ型和Ⅱ型肌纤维CSA均显著增加(143.03%, P<0.01; 83.25%, P<0.01);比目鱼肌中Ⅰ型肌纤维比例明显升高,Ⅱ型肌纤维比例明显降低(P<0.01).结论:复方制剂RC对模拟失重条件下大鼠比目鱼肌mATP酶活性的升高与模拟失重引起的肌萎缩有显著的对抗作用.  相似文献   

7.
慢性缺氧大鼠膈肌纤维类型适应性变化   总被引:2,自引:0,他引:2  
采用肌球蛋白ATP酶(mATP酶)组化将肌纤维分为Ⅰ、ⅡA和ⅡB三种类型,通过慢性常压和减压间断缺氧大鼠模型,观察慢性缺氧(分别缺氧1个月和3个月)大鼠膈肌纤维类型的适应性变化,并与肢体肌肉进行比较。结果表明,慢性缺氧大鼠膈肌纤维由酵解型向氧化型转化,主要表现为ⅡA纤维比例上升(P<0.05)和ⅡB(P<0.05-0.01)下降,肋膈肌变化大于脚膈肌和肢体肌肉。肌肉间适应性变化的差异可能与其功能要求不同有关。  相似文献   

8.
选取大、小白鼠各32只,雌雄各半,按年龄和性别分成8组。采用Ca^2 -ATPase法测定比目鱼肌(SOL)的mATPase活性,计算Ⅰ型和Ⅱ型肌纤维比例;并称量大、小白鼠的脏器,计算脏器指数。结果显示:SOL中Ⅱ型肌纤维比例,①大白鼠和小白鼠幼龄组均极显著高于成年组;成年雌性均显著低于成年雄性;②成年大白鼠极显著低于成年小白鼠。大白鼠和小白鼠的胸腺指数、脾脏指数均幼龄组极显著高于成年组,肝脏指数则均极其显著低于成年组;大白鼠幼龄组与成年组的肝脏指数、脾脏指数均极显著低于相应的小白鼠。提示在发育过程中大白鼠和小白鼠SOL中的mATPase活性均逐渐降低,因而其Ⅱ型肌纤维比例逐渐减小,且mATPase活性具有种间和性别差异。  相似文献   

9.
在5例家兔胫骨前肌的前、后亚体肌横切面内,应用直接计数和抽样计数方法计算I型、Ⅱ型肌纤维的构成比例和肌纤维总数。结果明显,方法切实易行。  相似文献   

10.
哺乳类骨胳肌纤维,按照它们的生理、形态和生化等特征,可以粗分为快型(或Ⅰ型)和慢型(或Ⅰ型)两种主要类型。骨胳肌纤维的收缩特性与肌球蛋白三磷酸腺苷酶(M-ATPase)的组织化学反应之间存在相应关系。这种肌纤维类型特征间的相关性,也在非骨胳肌的横纹肌,豚鼠的尿道括约肌上观察到。但是,Wareham 和 Whitmore 的工作表明,根据 M-ATPase 组织化学反应,豚鼠食道肌(它也是非骨胳肌的横纹肌)完全由Ⅰ型纤维组成,但是却表现出慢型纤维的收缩特性。我们在本工作中对豚鼠食道肌纤维的超微结构和组织化学类型特征的观察结果进一步表明,通常的骨胳肌纤  相似文献   

11.
Fiber composition and oxidative capacity of hamster skeletal muscle.   总被引:6,自引:0,他引:6  
The hamster is a valuable biological model for physiological investigation. Despite the obvious importance of the integration of cardiorespiratory and muscular system function, little information is available regarding hamster muscle fiber type and oxidative capacity, both of which are key determinants of muscle function. The purpose of this investigation was to measure immunohistochemically the relative composition and size of muscle fibers composed of types I, IIA, IIX, and IIB fibers in hamster skeletal muscle. The oxidative capacity of each muscle was also assessed by measuring citrate synthase activity. Twenty-eight hindlimb, respiratory, and facial muscles or muscle parts from adult (144-147 g bw) male Syrian golden hamsters (n=3) were dissected bilaterally, weighed, and frozen for immunohistochemical and biochemical analysis. Combining data from all 28 muscles analyzed, type I fibers made up 5% of the muscle mass, type IIA fibers 16%, type IIX fibers 39%, and type IIB fibers 40%. Mean fiber cross-sectional area across muscles was 1665 +/- 328 microm(2) for type I fibers, 1900 +/- 417 microm(2) for type IIA fibers, 3230 +/- 784 microm(2) for type IIX fibers, and 4171 +/- 864 microm(2) for type IIB fibers. Citrate synthase activity was most closely related to the population of type IIA fibers (r=0.68, p<0.0001) and was in the rank order of type IIA > I > IIX > IIB. These data demonstrate that hamster skeletal muscle is predominantly composed of type IIB and IIX fibers.  相似文献   

12.
To examine the effect of extreme old age on muscle plasticity, 6- (adult) and 36-mo-old (old) male Fischer 344 x Brown Norway hybrid rats underwent bilateral surgical ablation of the gastrocnemius muscle to functionally overload (OV) the fast-twitch plantaris muscle for 8 wk. Plantaris muscle wet weight, muscle cross-sectional area (CSA), and average fiber CSA decreased by 44, 42, and 40%, respectively, in old compared with adult rats, and peak isometric tetanic tension decreased by 83%. Compared with muscles in age-matched controls, plantaris muscle mass increased by 53% and type I, IIA, and IIX/IIB CSA increased by 91, 76, and 103%, respectively, in adult-OV rats, but neither wet mass nor fiber CSA increased in old-OV rats. OV decreased type I, IIA, and IIX/IIB mean fiber CSA by 31, 35, and 30%, respectively, in old-OV rats. Collectively, our data indicate that in extreme old age the plantaris muscle undergoes significant loss of mass, fiber CSA, and contractile function, as well as its capacity to undergo hypertrophy in response to a chronic increase in mechanical load.  相似文献   

13.
Skeletal muscle fibers vary in contractile and metabolic properties. Four main fiber types are present in mammalian trunk and limb muscles; they are called I, IIA, IIX, and IIB, ranging from slowest- to fastest-contracting. Individual muscles contain stereotyped proportions of two or more fiber types. Fiber type is determined by a combination of nerve-dependent and -independent influences, leading to formation of "homogeneous motor units" in which all branches of a single motor neuron form synapses on fibers of a single type. Fiber type composition of muscles can be altered in adulthood by multiple factors including exercise, denervation, hormones, and aging. To facilitate analysis of muscle development, plasticity, and innervation, we generated transgenic mouse lines in which Type I, Type IIA, and Type IIX+B fibers can be selectively labeled with distinguishable fluorophores. We demonstrate their use for motor unit reconstruction and live imaging of nerve-dependent alterations in fiber type.  相似文献   

14.
To investigate relationships between pituitary function and gender on skeletal muscle growth and hypertrophy, fiber cross sectional area (CSA) and type were assessed in the plantaris muscle of normal and dwarf (Dw) male and female Lewis rats after 6 weeks of functional overload (FO). Serum growth hormone levels were 70-80% less in Dw rats of both genders, and body mass was 62% greater in normal rats when compared to their Dw counterparts. Muscle weight was affected by gender, dwarfism, and FO as well as a significant gender*Dw*FO interaction. FO increased Type I, IIA, and IIX/B fiber CSA 120%, 102%, and 75%, respectively. Only type 1H fibers exhibited a reduction in CSA as a function of gender or dwarfism. Both type IIA and IIX/B fibers were affected by a significant gender*Dw*FO interaction. Our results suggest that the growth of type II fibers is sensitive to gender and pituitary function, while hypertrophy of type II muscle fibers is a function of the interaction between mechanical load, gender, and pituitary function.  相似文献   

15.
We studied the effect of resistance running on left cardiac ventricle size and rectus femoris muscle fiber composition. Ten male Wistar rats were trained on a treadmill 6 days per week for 12 weeks. Ten rats remained sedentary and served as controls. A higher endurance time (40%) and cardiac hypertrophy in the trained animals were indicators of training efficiency. Morphometric analysis of the left ventricle cross-sectional area, left ventricular wall, and left ventricular cavity were evaluated. The endurance-running group demonstrated a hypertrophy of the ventricular wall (22%) and an increase in the ventricular cavity (25%); (p<0.0001). Semi-quantitative analysis of rectus femoris fiber-type composition and of the oxidative and glycolytic capacity was histochemically performed. Endurance running demonstrated a significant (p<0.01) increase in the relative frequency of Type I (24%), Type IIA (8%) and Type IIX (16%) oxidative fibers, and a decrease in Type IIB (20%) glycolytic fibers. There was a hypertrophy of both oxidative and glycolytic fiber types. The relative cross-sectional area analysis demonstrated an increase in oxidative fibers and a decrease in glycolytic fibers (p<0.0001). Changes were especially evident for Type IIX oxidative-glycolytic fibers. The results of this study indicate that the left ventricle adapts to endurance running by increasing wall thickness and enlargement of the ventricular cavity. Skeletal muscle adapts to training by increasing oxidative fiber Type. This increase may be related to fiber transformation from Type IIB glycolytic to Type IIX oxidative fibers. These results open the possibility for the use of this type of exercise to prevent muscular atrophy associated with age or post-immobilization.  相似文献   

16.
Histochemical characteristics and sizes of the fibers of the sternotrachealis (ST) muscle have been investigated in some Anseriformes (mallard, Pekin duck, Muscovy duck, and goose) of both sexes. A sexual dimorphism has been shown in the muscle of the species examined. In the mallard and Pekin duck, the male ST muscle shows type IIIA fibers in addition to the type I, IIA, and IIB fibers observed also in the female. In the Muscovy duck, the male muscle has only type I and IIA fibers, whereas the female muscle presents type I fibers and both types IIA and IIB fibers. Moreover, the mean frequencies for each fiber type were significantly different between males and females. In the goose, both male and female muscles present only type I and IIA fibers. In all the species examined, the mean areas of each fiber type are significantly different between male and female, being always larger in the male muscles. The anatomical sexual dimorphism observed in the ST muscle is discussed in relation to function.  相似文献   

17.
Parvalbumin (PV) is a soluble Ca++ binding protein which is particularly concentrated in fast muscles of rodents. We have developed a new protocol to fix frozen sections of muscle by formaldehyde vapor, which enabled us to immunochemically stain serial frozen sections for PV. Fiber types were defined on the basis of myosin ATPase stability, and of isomyosins identified by a variety of antibodies because ATPase stability alone yielded ambiguous results in the mouse. Slow Type I fibers in mouse and rat were devoid of PV and had intermediate to high SDH levels. Fast fiber subtypes IIA, IIB, and IIX-like were defined in the mouse on the basis of the similarity of their myosin heavy chain immunoreactivity to these types in the rat. The soleus muscle was usually PV negative, but a small population of strongly PV-positive IIX-like fibers was present in the mouse. In mouse fast muscle, small diameter IIA fibers were PV negative with high SDH activity. In both mouse and rat, PV reactivities of IIB and IIX fibers were higher than those of IIA and I, whereas SDH levels of IIA, IIX, and I fibers were higher than those of IIB. Thus, PV content correlated with the type of myosin ATPase but not with SDH levels. The method described for immunocytochemistry of PV may be applicable to other highly soluble proteins.  相似文献   

18.
Fiber type composition of the vastus lateralis muscle of young men and women.   总被引:11,自引:0,他引:11  
This study presents data collected over the past 10 years on the muscle fiber type composition of the vastus lateralis muscle of young men and women. Biopsies were taken from the vastus lateralis muscle of 55 women (21.2+/-2.2 yr) and 95 men (21.5+/-2.4 yr) who had volunteered to participate in various research projects. Six fiber types (I, IC, IIC, IIA, IIAB, and IIB) were classified using mATPase histochemistry, and cross-sectional area was measured for the major fiber types (I, IIA, and IIB). Myosin heavy chain (MHC) content was determined electrophoretically on all of the samples from the men and on 26 samples from the women. With the exception of fiber Type IC, no significant differences were found between men and women for muscle fiber type distribution. The vastus lateralis muscle of both the men and women contained approximately 41% I, 1% IC, 1% IIC, 31% IIA, 6% IIAB, and 20% IIB. However, the cross-sectional area of all three major fiber types was larger for the men compared to the women. In addition, the Type IIA fibers were the largest for the men, whereas the Type I fibers tended to be the largest for the women. Therefore, gender differences were found with regard to the area occupied by each specific fiber type: IIA>I>IIB for the men and I>IIA>IIB for the women. These data establish normative values for the mATPase-based fiber type distribution and sizes in untrained young men and women.  相似文献   

19.
Skeletal muscle fiber types classified on the basis of their content of different myosin heavy chain (MHC) isoforms were analyzed in samples from hindlimb muscles of adult sedentary llamas (Lama glama) by correlating immunohistochemistry with specific anti-MHC monoclonal antibodies, myofibrillar ATPase (mATPase) histochemistry, and quantitative histochemistry of fiber metabolic and size properties. The immunohistochemical technique allowed the separation of four pure (i.e., expressing a unique MHC isoform) muscle fiber types: one slow-twitch (Type I) and three fast-twitch (Type II) phenotypes. The same four major fiber types could be objectively discriminated with two serial sections stained for mATPase after acid (pH 4.5) and alkaline (pH 10.5) preincubations. The three fast-twitch fiber types were tentatively designated as IIA, IIX, and IIB on the basis of the homologies of their immunoreactivities, acid denaturation of their mATPase activity, size, and metabolic properties expressed at the cellular level with the corresponding isoforms of rat and horse muscles. Acid stability of their mATPase activity increased in the rank order IIA>IIX>IIB. The same was true for size and glycolytic capacity, whereas oxidative capacity decreased in the same rank order IIA>IIX>IIB. In addition to these four pure fibers (I, IIA, IIX, and IIB), four other fiber types with hybrid phenotypes containing two (I+IIA, IIAX, and IIXB) or three (IIAXB) MHCs were immunohistochemically delineated. These frequent phenotypes (40% of the semitendinosus muscle fiber composition) had overlapped mATPase staining intensities with their corresponding pure fiber types, so they could not be delineated by mATPase histochemistry. Expression of the three fast adult MHC isoforms was spatially regulated around islets of Type I fibers, with concentric circles of fibers expressing MHC-IIA, then MHC-IIX, and peripherally MHC-IIB. This study demonstrates that three adult fast Type II MHC isoproteins are expressed in skeletal muscle fibers of the llama. The general assumption that the very fast MHC-IIB isoform is expressed only in small mammals can be rejected.  相似文献   

20.
The llama (Lama glama) is one of the few mammals of relatively large body size in which three fast myosin heavy chain isoforms (i.e., IIA, IIX, IIB) are extensively expressed in their locomotory muscles. This study was designed to gain insight into the morphological and functional organization of skeletal musculature in this peculiar animal model. The neuromuscular partitioning, architectural design, and myosin fiber types were systematically studied in the M. vastus lateralis of adult llamas (n = 15). Four nonoverlapping neuromuscular partitions or compartments were identified macroscopically (using a modified Sihler's technique for muscle depigmentation), although they did not conform strictly to the definitions of "neuromuscular compartments." Each neuromuscular partition was innervated by primary branches of the femoral nerve and was arranged within the muscle as paired partitions, two in parallel (deep-superficial compartmentalization) and the other two in-series (proximo-distal compartmentalization). These neuromuscular partitions of the muscle varied in their respective architectural designs (studied after partial digestion with diluted nitric acid) and myosin fiber type characteristics (identified immunohistochemically with specific anti-myosin monoclonal antibodies, then examined by quantitative histochemistry and image analysis). The deep partitions of the muscle had longer fibers, with lower angles of pinnation, and higher percentages of fast-glycolytic fibers than the superficial partitions of the muscle. These differences clearly suggest a division of labor in the whole M. vastus lateralis of llamas, with deep partitions exhibiting features well adapted for dynamic activities in the extension of stifle, whereas superficial portions seem to be related to the antigravitational role of the muscle in preserving the extension of the stifle during standing and stance phase of the stride. This peculiar structural and functional organization of the llama M. vastus lateralis does not confirm the generalized idea that deep muscles or the deepest portions within the same muscles somehow develop postural and/or low-intensity isometric functions. Rather, it suggests a primacy of architecture over intramuscular location in determining fiber type composition and hence division of labor within the muscle. A compartmentalization in the distribution of the three fast-subtype fibers (IIA, IIX, and IIB) also occurred, and this could also be relevant functionally, since these fiber types differed significantly in size (IIA < IIX < IIB), oxidative capacity (IIA > IIX > IIB), and capillarization (IIA = IIX > IIB). Furthermore, a typical spatial pattern in fiber type distribution was encountered in llama muscle (i.e., fiber types were consistently ranked in the order I --> IIA --> IIX --> IIB from the center to the periphery of fascicles), suggesting again peculiar and not well understood functional adaptations in these species.  相似文献   

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