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T Kasaba

Publications and source records attributed to T Kasaba.

38 records · Page 3Linked to original sources

Respiration-related movements of the nose in dogs.

We studied the respiration-related movements of the canine nose by examining the respiratory oscillations of intranasal balloon pressure and EMG activities of the dilator nares in dogs. Under spontaneous respiration, balloon pressure decreased and EMG activities increased during the early inspiratory phase. These respiratory movements of the nose differed and changed reciprocally in strength between the two sides of the body spontaneously, after painful stimulation or intranasal histamine administration. When the muscle relaxant was administered and the respiration was controlled by the ventilation pump, the intranasal balloon pressure increased during the inspiratory phase. This phenomenon had a completely inverted pattern compared with that during spontaneous respiration. Furthermore, even when the ventilation pump was stopped, respiration-like spontaneous oscillations of the intranasal balloon pressure were recognized. These were abolished by sectioning of the ipsilateral cervical sympathetic nerve trunk. From these findings, the respiration-related movements of the nose were thought to be controlled not only by the cardiac output and the vagal nerve reflexes but also by respiratory activities in the nervous systems controlling the nose, which might be originated from the medullary respiratory centres.

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Spontaneous nasal oscillations in dog. A mucosal expression of the respiration-related activities of cervical sympathetic nerve.

We studied the respiratory oscillations of the nasal mucosa in dogs. Even after temporarily stopping the respirator, intranasal balloon pressure showed respiration-related oscillations (spontaneous nasal oscillations). These spontaneous oscillations were recorded in all 21 dogs. Spontaneous nasal oscillations were not abolished even after thoracotomy, vagotomy and vidian neurectomy. Only cervical sympathectomy could to a large extent abolish the spontaneous nasal oscillations. Furthermore, the spontaneous nasal oscillations were found to be synchronized with the respiration-related fluctuations of cervical sympathetic nerve activities. Rhythms of the spontaneous nasal oscillations were not dependent on the rates of artificial ventilation, but were closely related to the rates of spontaneous respiration before administering the muscle relaxant. On some occasions, we recognized remarkable differences in the height of waves of the spontaneous nasal oscillations between the sides of the body. On eight occasions in 5 dogs, reciprocal changes of the dominant side of bilateral spontaneous nasal oscillations were noted which might be an expression of the nasal cycle.

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