COSTAL AND CRURAL DIAPHRAGM FUNCTION DURING CO2 REBREATHING IN AWAKE DOGS

被引:31
作者
EASTON, PA
FITTING, JW
ARNOUX, R
GUERRATY, A
GRASSINO, AE
机构
[1] MCGILL UNIV,MEAKINS CHRISTIE LABS,3626 ST URBAIN ST,MONTREAL H2X 2P2,PQ,CANADA
[2] UNIV MONTREAL,NOTRE DAME HOSP,MONTREAL H2X 2P2,PQ,CANADA
关键词
CANINE; SONOMICROMETRY; ELECTROMYOGRAM; NONANESTHETIZED; CARBON DIOXIDE-STIMULATED VENTILATION;
D O I
10.1152/jappl.1993.74.3.1406
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
If costal and crural diaphragm segments can perform as separate muscles, then CO2-stimulated ventilation may elicit differential segmental function. We studied diaphragm segmental length, shortening, and electromyogram (EMG) activity in 10 awake dogs chronically implanted with sonomicrometer transducers and EMG electrodes. During CO2 rebreathing, segmental shortening and EMG activity per whole tidal breath progressively increased, but segmental responses could not be differentiated at any level of CO2. With increasing CO2, resting end-expiratory length of both diaphragm segments increased. During the complete intrabreath inspiratory-expiratory cycle, costal and crural diaphragm revealed distinctive segmental function. At rest, crural shortening exceeded costal shortening in earliest inspiration, costal and especially crural shortening persisted into early expiration, and EMG activity of the crural segment was greater than that of the costal segment in earliest inspiration and showed more end-inspiratory/early expiratory [post-inspiratory inspiratory activity (PIIA)] activity. During CO2-stimulated breathing, neither segment shortened during the inspiratory flow of earliest inspiration. During CO2 rebreathing, shortening of the crural segment exceeded that of the costal segment during early inspiration and outlasted costal shortening during expiration; for both segments, shortening persisted after termination of inspiratory airflow. With increased CO2, EMG activity of the crural segment preceded that of the costal segment in earliest inspiration and was dominant into expiration, whereas costal EMG activity terminated abruptly with inspiratory flow. Thus, costal EMG PIIA was not evident during hypercapnia, whereas crural EMG PIIA was significant. These results suggest that in awake dogs 1) costal and crural diaphragm segments exhibit differential function during room air and CO2-stimulated breathing, 2) crural segmental activity predominates in early inspiration, 3) at the onset of inspiration, neither segment fully accounts for inspiratory flow, and 4) both segments exhibit PIIA during resting breathing, but crural PIIA dominates during hypercapnia.
引用
收藏
页码:1406 / 1418
页数:13
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