Roy R R, Meadows I D, Baldwin K M, Edgerton V R
J Appl Physiol Respir Environ Exerc Physiol. 1982 Feb;52(2):473-8. doi: 10.1152/jappl.1982.52.2.473.
Chronic overload of a skeletal muscle by removing its synergists produces hypertrophy and marked changes in its metabolic and biochemical properties. In this study alterations in the contractile properties of the plantaris 12-14 wk after bilateral removal of the soleus and gastrocnemius were investigated. In situ isometric and isotonic contractile properties of overloaded plantaris (OP), normal plantaris (NP), and normal soleus (NS) were tested at 33 +/- 1 degree C. Op were 97% heavier than NP and produced 43 and 46% higher twitch (Pt) and tetanic (Po) tensions. However, NP produced more tension per cross-sectional area than OP (mean 26.2 vs. 21.6 N/cm2; P less than 0.001). Isometric twitch time to peak tension (TPT) and half-relaxation time (1/2RT) were significantly longer in OP (mean 36.4 vs. 32.5 ms and 23.9 vs. 18.4 ms). Mean maximum shortening velocity (Vmax, mm/s per 1,000 sarcomeres) were 34.1 for NP and 18.1 for OP (P less than 0.001). The degree of conversion toward the Vmax of NS was 74% compared with only 19 and 14% for TPT and 1/2RT. OP produced a higher proportion of Po at a given stimulation frequency than NP and showed less fatigue than NP after repetitive stimulation. Chronic overload of the fast plantaris modified to varying degrees the contractile properties studied toward that resembling a slow muscle. Although the maximum tension of OP was markedly enhanced it was not in proportion to the increase in muscle mass.
通过切除协同肌使骨骼肌长期负荷过重,会导致其肥大,并使其代谢和生化特性发生显著变化。在本研究中,我们调查了比目鱼肌和腓肠肌双侧切除后12 - 14周时,跖肌收缩特性的改变。在33±1℃下测试了超负荷跖肌(OP)、正常跖肌(NP)和正常比目鱼肌(NS)的原位等长和等张收缩特性。OP比NP重97%,其单收缩(Pt)和强直收缩(Po)张力分别高43%和46%。然而,NP每横截面积产生的张力比OP大(平均26.2对21.6 N/cm2;P<0.001)。OP的等长单收缩达到峰值张力的时间(TPT)和半松弛时间(1/2RT)明显更长(平均36.4对32.5 ms和23.9对18.4 ms)。NP的平均最大缩短速度(Vmax,每1000个肌节的mm/s)为34.1,OP为18.1(P<0.001)。与TPT和1/2RT分别只有19%和14%相比,NS向Vmax的转化程度为74%。在给定刺激频率下,OP产生的Po比例高于NP,并且在重复刺激后比NP表现出更少的疲劳。快速型跖肌的长期超负荷在不同程度上改变了所研究的收缩特性,使其类似于慢肌。虽然OP的最大张力明显增强,但与肌肉质量的增加不成比例。