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首页> 外文期刊>The Journal of Experimental Biology >The length-force behavior and operating length range of squid muscle
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The length-force behavior and operating length range of squid muscle

机译:鱿鱼肌肉的长度力行为和操作长度范围

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Hollow cylindrical muscular organs are widespread in animals and are effective in providing support for locomotion and movement, yet are subject to significant non-uniformities in circumferential muscle strain. During contraction of the mantle of squid, the circular muscle fibers along the inner (lumen) surface of the mantle experience circumferential strains 1.3 to 1.6 times greater than fibers along the outer surface of the mantle. This transmural gradient of strain may require the circular muscle fibers near the inner and outer surfaces of the mantle to operate in different regions of the length-tension curve during a given mantle contraction cycle. We tested the hypothesis that circular muscle contractile properties vary transmurally in the mantle of the Atlantic longfin squid, Doryteuthis pealeii. We found that both the length-twitch force and length-tetanic force relationships of the obliquely striated, central mitochondria-poor (CMP) circular muscle fibers varied with radial position in the mantle wall. CMP circular fibers near the inner surface of the mantle produced higher force relative to maximum isometric tetanic force, P-0, at all points along the ascending limb of the length-tension curve than CMP circular fibers near the outer surface of the mantle. The mean +/- s.d. maximum isometric tetanic stresses at L-0 (the preparation length that produced the maximum isometric tetanic force) of 212 +/- 105 and 290 +/- 166 kN m(-2) for the fibers from the outer and inner surfaces of the mantle, respectively, did not differ significantly (P=0.29). The mean twitch: tetanus ratios for the outer and inner preparations, 0.60 +/- 0.085 and 0.58 +/- 0.10, respectively, did not differ significantly (P=0.67). The circular fibers did not exhibit length-dependent changes in contraction kinetics when given a twitch stimulus. As the stimulation frequency increased, L-0 was approximately 1.06 times longer than L-TW, the mean preparation length that yielded maximum isometric twitch force. Sonomicrometry experiments revealed that the CMP circular muscle fibers operated in vivo primarily along the ascending limb of the length-tension curve. The CMP fibers functioned routinely over muscle lengths at which force output ranged from only 85% to 40% of P-0, and during escape jets from 100% to 30% of P-0. Our work shows that the functional diversity of obliquely striated muscles is much greater than previously recognized
机译:空心圆柱状肌肉器官在动物中很普遍,可以有效地为运动提供支持,但在圆周肌肉拉伤中会出现明显的不均匀性。在鱿鱼的外套收缩期间,沿着外套的内(内腔)表面的环形肌纤维承受的周向应变比沿着外套的外表面的纤维大1.3至1.6倍。这种跨壁应变梯度可能要求在给定的地幔收缩周期中,地幔内表面和外表面附近的环形肌纤维在长度-张力曲线的不同区域内起作用。我们检验了以下假设:大西洋长鳍乌贼Doryteuthis pealeii的地幔中,环形肌肉的收缩特性在透皮变化。我们发现,斜纹的,中央线粒体贫乏(CMP)圆形肌纤维的长度-拉力和长度-张紧力之间的关系都随地幔壁中的径向位置而变化。在沿长度-张力曲线的上升肢的所有点上,靠近内套内表面的CMP圆形纤维所产生的力要大于靠近外套外表面上的CMP圆形纤维的最大等距张紧力P-0。平均值+/- s.d.对于来自地幔外表面和内表面的纤维,L-0(产生最大等长张紧力的准备长度)处的最大等长张应力为212 +/- 105和290 +/- 166 kN m(-2)分别没有显着差异(P = 0.29)。外部制剂和内部制剂的平均抽搐:破伤风比率分别为0.60 +/- 0.085和0.58 +/- 0.10,差异不显着(P = 0.67)。当受到抽搐刺激时,圆形纤维未表现出长度依赖性的收缩动力学变化。随着刺激频率的增加,L-0大约是产生最大等距抽搐力的平均准备长度L-TW的1.06倍。体测法实验表明,CMP环形肌纤维在体内主要沿长度-张力曲线的上升肢起作用。 CMP纤维在整个肌肉长度上正常起作用,在该长度上,力输出范围仅为P-0的85%至40%,而在逃生喷射时则为P-0的100%至30%。我们的工作表明,斜纹肌的功能多样性远大于先前公认的

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