首页> 外文期刊>Journal of Neurophysiology >Role of syringeal muscles in gating airflow and sound production in singing brown thrashers.
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Role of syringeal muscles in gating airflow and sound production in singing brown thrashers.

机译:注射肌肉在唱歌的棕色th子中的门控气流和声音产生中的作用。

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1. The role of syringeal muscles in song production, particularly in regulating airflow through the syrinx, was studied in singing brown thrashers (Toxostoma rufum). In nine individuals, muscle activity was recorded electromyographically together with bilateral syringeal airflow, subsyringeal air sac pressure, and vocal output. 2. Dorsal muscles, m. syringealis dorsalis (dS) and m. tracheolateral dorsalis (dTB), are consistently activated during ipsilateral closing of the syrinx or increasing syringeal resistance, suggesting that their main role is adduction. This interpretation is supported by the motor patterns accompanying syllables with rapid oscillations in the rate of airflow. Bursts of electrical activity (2-10 ms) in dorsal muscles are precisely synchronized with decreasing airflow. 3. Electrical activity in m. tracheobronchialis ventralis (vTB) and m. tracheolateralis (TL) is associated with active abduction. An important contribution of vTB is to open the syringeal lumen for short inspirations in between syllables. In syllables with oscillatory flow modulations, vTB bursts show variable alignment with the phase of increasing flow. From this and activity during other syllables, it appears that, during phonation, vTB activity fine tunes the syringeal configuration, which is set by action of the dorsal muscles into a partially constricted state. 4. Activity in the ventral portion of TL, an extrinsic muscle, is strikingly similar to that of vTB, an intrinsic muscle, suggesting that the two muscles have a similar functional role. This supports the notion that intrinsic syringeal muscles of songbirds evolved from extrinsic muscles of nonpasserines. 5. M. syringealis ventralis (vS) does not appear to contribute directly to gating of airflow. Its activity is not consistently correlated with active changes in syringeal resistance. 6. Activity in m. sternotrachealis (ST) is most prominent during rapid changes in the rate of airflow or when switching between expiratory and inspiratory flow, suggesting a role in stabilizing the syringeal framework.
机译:1.在唱歌棕色th子(Toxostoma rufum)中,研究了注射肌肉在歌曲产生中的作用,特别是在调节通过syrinx的气流中的作用。在9个个体中,肌电图通过肌电图记录,并伴有双侧注射气流,注射器下气囊压力和声音输出。 2.背肌,米。桔梗(dS)和m。气管外侧背侧(dTB)在sysyx的同侧闭合或不断增加的注射器阻力过程中始终被激活,表明它们的主要作用是内收。伴随音节的电机模式与气流速率的快速波动一起支持了这种解释。背部肌肉中的电活动爆发(2-10毫秒)与气流减少正好同步。 3.以米为单位的电活动。气管支气管腹(vTB)和m。气管外侧支(TL)与积极外展有关。 vTB的重要贡献是打开了注射器腔,以缩短音节之间的吸气时间。在具有振荡流调制的音节中,vTB突发与流量增加的相位显示出可变的对齐方式。从这个以及其他音节的活动中可以看出,在发声期间,vTB活动可以很好地调节注射器结构,该结构是通过背肌的作用而设置为部分收缩状态。 4.外在性肌肉TL腹侧部分的活动与内在性肌肉vTB的活动惊人地相似,表明这两种肌肉具有相似的功能作用。这支持了一种观点,即鸣禽的内在注射性肌肉是从非人参的外源性肌肉演化而来的。 5.腹壁分枝杆菌(vS)似乎不直接影响气流门控。它的活性并不总是与注射器抗性的积极变化相关。 6.以米为单位的活动。在气流速度的快速变化或在呼气和吸气之间切换时,胸骨气管(ST)最突出,这表明在稳定注射器框架方面发挥了作用。

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