CHANGES IN VENTILATION AND RESPIRATORY SENSITIVITY ASSOCIATED WITH HIBERNATION IN COLUMBIAN (SPERMOPHILUS-COLUMBIANUS) AND GOLDEN-MANTLED (SPERMOPHILUS-LATERALIS) GROUND-SQUIRRELS

被引:66
作者
MCARTHUR, MD [1 ]
MILSOM, WK [1 ]
机构
[1] UNIV BRITISH COLUMBIA, DEPT ZOOL, VANCOUVER V6T 2A9, BC, CANADA
来源
PHYSIOLOGICAL ZOOLOGY | 1991年 / 64卷 / 04期
关键词
D O I
10.1086/physzool.64.4.30157950
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
During entrance into hibernation, the decrease in minute ventilation associated with the fall in body temperature and metabolic rate is accompanied by the conversion of continuous breathing to intermittent breathing in both the golden-mantled ground squirrel (Spermophilus lateralis) and the Columbian ground squirrel (S. columbianus). In hibernation, the former species exhibits an episodic breathing pattern, while the latter species exhibits a pattern of evenly spaced single breaths. The goal of this study was to compare the changes in the ventilatory responses of these two species of ground squirrel to changes in levels of inspired O2 and CO2 during hibernation, to test the hypothesis that species differences in intermittent breathing patterns may be explained on the basis of differences in sensitivity to hypoxia and hypercapnia. During entrance into hibernation, changes in ventilation and breathing pattern were accompanied by a change in the relative contribution of changes in arterial PO2 (PaO2), PCO2 (PaCO2), and pH (pHa) as stimuli to ventilation. When awake at an ambient temperature of 22-degrees-C, both species showed strong hypoxic ventilatory responses and comparatively blunted hypercapnic ventilatory responses. During hibernation, both showed greatly reduced hypoxic responses but comparatively elevated hypercapnic ventilatory responses. This suggests that changes in PaO2 play a much greater role in the control of ventilation in euthermic animals, while changes in PaCO2/pHa play the predominant role during hibernation. Furthermore, during hibernation, the nonventilatory period-rather than the breath-became the primary controlled variable in the breathing pattern. This was true for both species, despite the differences in the intermittent breathing patterns each exhibited, and thus our results do not support the hypothesis that differences in intermittent breathing patterns are due to species-specific changes in sensitivity to respiratory stimuli as animals enter hibernation.
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页码:940 / 959
页数:20
相关论文
共 32 条
[1]  
BIORCK G, 1956, ACTA PHYSIOL SCAND, V37, P70
[2]  
BURLINGTON RF, 1969, FED PROC, V28, P1042
[3]   RESPIRATORY PROPERTIES OF BLOOD OF HIBERNATING HEDGEHOG ERINACEUS EUROPAEUS L [J].
CLAUSEN, G ;
ERSLAND, A .
RESPIRATION PHYSIOLOGY, 1968, 5 (02) :221-&
[4]   Observations on certain physiological process of the marmot II - The respiration [J].
Endres, G ;
Taylor, H .
PROCEEDINGS OF THE ROYAL SOCIETY OF LONDON SERIES B-CONTAINING PAPERS OF A BIOLOGICAL CHARACTER, 1930, 107 (750) :231-240
[5]   VENTILATORY CONTROL OF ARTERIAL PO2 IN THE TURTLE CHRYSEMYS-PICTA-BELLII - EFFECTS OF TEMPERATURE AND HYPOXIA [J].
GLASS, ML ;
BOUTILIER, RG ;
HEISLER, N .
JOURNAL OF COMPARATIVE PHYSIOLOGY, 1983, 151 (02) :145-153
[6]   TOTAL CALORIMETRIC MEASUREMENTS ON CITELLUS LATERALIS IN HIBERNATION [J].
HAMMEL, HT ;
DAWSON, TJ ;
ABRAMS, RM ;
ANDERSEN, HT .
PHYSIOLOGICAL ZOOLOGY, 1968, 41 (03) :341-&
[7]   VENTILATORY CHANGES IN THE GOLDEN-HAMSTER, MESOCRICETUS-AURATUS, COMPARED WITH THE LABORATORY RAT, RATTUS-NORVEGICUS, DURING HYPERCAPNIA AND OR HYPOXIA [J].
HOLLOWAY, DA ;
HEATH, AG .
COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY A-MOLECULAR & INTEGRATIVE PHYSIOLOGY, 1984, 77 (02) :267-273
[8]  
Kristoffersson R., 1966, Annales Zoologici Fennici, V3, P66
[9]  
KRISTOFFERSSON ROLF, 1964, ANN ACAD SCI FENNICAE SER A IV BIOL, V82, P3
[10]   RESPIRATION IN THE HIBERNATION OF THE 13-LINED GROUND SQUIRREL [J].
LANDAU, BR ;
DAWE, AR .
AMERICAN JOURNAL OF PHYSIOLOGY, 1958, 194 (01) :75-82