Funk G D, Milsom W K, Steeves J D
Department of Zoology, University of British Columbia, Vancouver, Canada.
J Appl Physiol (1985). 1992 Sep;73(3):1014-24. doi: 10.1152/jappl.1992.73.3.1014.
The effects of passive wing flapping on respiratory pattern were examined in decerebrate Canada geese. The birds were suspended dorsally with two spine clamps while the extended wings were continuously moved up and down with a device designed to reproduce actual wing flapping. Passive wing motion entrained respiration over limited ranges by both increasing and decreasing the respiratory period relative to rest. All ratios of wingbeat frequency to respiratory frequency seen during free flight (Soc. Neurosci. Abstr. 15: 391, 1989) were produced during passive wing flapping. In addition, the phase relationship between wingbeat frequency and respiratory frequency, inspiration starting near the peak of wing upstroke, was similar to that seen during free flight and was unaffected by perturbations of the wing-flapping cycle. Removal of all afferent activity from the wings did not affect the ability of continuous passive wing movement to entrain respiration. However, feedback from the wings was required to produce rapid within-breath shifts in the respiratory period in response to single wing flaps. In conclusion, although feedback from the chest wall/lung may be more important in producing entrainment during the stable conditions of passive wing flapping, wing-related feedback may be critically involved in mediating the rapid adjustments in respiratory pattern required to maintain coordination between wing and respiratory movements during free flight.
在去大脑的加拿大鹅中研究了被动翅膀扇动对呼吸模式的影响。用两个脊柱夹将鸟背侧悬吊起来,同时用一个设计用于模拟实际翅膀扇动的装置使伸展的翅膀持续上下移动。被动翅膀运动通过相对于休息状态增加和减少呼吸周期,在有限范围内带动呼吸。在被动翅膀扇动过程中产生了自由飞行期间出现的所有翅膀拍动频率与呼吸频率的比值(《社会神经科学摘要》15: 391, 1989)。此外,翅膀拍动频率与呼吸频率之间的相位关系,即吸气在翅膀向上冲程的峰值附近开始,与自由飞行期间观察到的相似,并且不受翅膀扇动周期扰动的影响。去除来自翅膀的所有传入活动并不影响连续被动翅膀运动带动呼吸的能力。然而,需要来自翅膀的反馈才能在单次翅膀扇动时在呼吸周期内产生快速的呼吸内变化。总之,尽管在被动翅膀扇动的稳定条件下,胸壁/肺的反馈在产生带动作用方面可能更重要,但与翅膀相关的反馈可能在介导自由飞行期间维持翅膀与呼吸运动之间协调所需的呼吸模式快速调整中起关键作用。