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Effect of motor unit recruitment on functional vasodilatation in hamster retractor muscle

机译:运动单元募集对仓鼠牵开肌功能性血管舒张的影响

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class="enumerated" style="list-style-type:decimal">The effect of motor unit recruitment on functional vasodilatation was investigated in hamster retractor muscle. Recruitment (i.e. peak tension) was controlled with voltage applied to the spinal accessory nerve (high = maximum tension; intermediate = ∼50% maximum; low = ∼25% maximum). Vasodilatory responses (diameter × time integral, DTI) to rhythmic contractions (1 per 2 s for 65 s) were evaluated in first, second and third orderarterioles and in feed arteries. Reciprocal changes in duty cycle (range, 2·5–25 %) effectively maintained the total active tension (tension × time integral, TTI) constant across recruitment levels.With constant TTI and stimulation frequency (40 Hz), DTI in all vessels increased with motor unit recruitment. DTI increased from distal arterioles up through proximal feed arteries.To determine whether the effect of recruitment on DTI was due to increased peak tension, the latter was controlled with stimulation frequency (15, 20 and 40 Hz) during maximum (high) recruitment. With constant TTI, DTI then decreased as peak tension increased.To explore the interaction between recruitment and duty cycle on DTI, each recruitment level was applied at 2.5, 10 and 20 % duty cycle (at 40 Hz). For a given increase in TTI, recruitment had a greater effect on DTI than did duty cycle.Functional vasodilatation in response to rhythmic contractions is facilitated by motor unit recruitment. Thus, vasodilatory responses are determined not only by the total tension produced, but also by the number of active motor units.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在仓鼠牵开器肌肉中研究了运动单元募集对功能性血管舒张的影响。补充力(即峰值张力)是通过施加在脊髓副神经上的电压来控制的(高=最大张力;中间=大约50%;最大=大约25%)。在第一,第二和第三阶小动脉和饲料动脉中评估对节律性收缩的血管舒张反应(直径×时间积分,DTI)(每2秒1次,持续65 s)。占空比的倒数变化(范围2·5-25%)有效地保持了整个募集水平的总活动张力(张力×时间积分,TTI)恒定。 具有恒定的TTI和刺激频率(40 Hz) ),所有船只的DTI随机动部队招募而增加。 DTI从远端小动脉一直向上延伸到近端饲料动脉。 为确定募集对DTI的影响是否是由于峰值张力增加而引起的,在刺激期间,峰值张力由刺激频率(15、20和40 Hz)控制最大(高)招聘。在恒定TTI的情况下,DTI然后随着峰值张力的增加而降低。 。对于给定的TTI增加,招募对DTI的影响比占空比大。 对运动节律的响应,功能性血管舒张通过运动单位招募得到促进。因此,血管舒张反应不仅取决于产生的总张力,还取决于有效运动单位的数量。

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