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慢性去大脑大鼠中蔗糖和氯化钠引发的口腔内摄取及味觉反应性反应。

Intraoral intake and taste reactivity responses elicited by sucrose and sodium chloride in chronic decerebrate rats.

作者信息

Flynn F W, Grill H J

机构信息

Institute of Neurological Sciences, University of Pennsylvania.

出版信息

Behav Neurosci. 1988 Dec;102(6):934-41. doi: 10.1037//0735-7044.102.6.934.

Abstract

The oral stimulating effects of sucrose and sodium chloride (NaCl) were assessed in chronic decerebrate and pair-fed intact control rats by measuring both oral motor taste-reactivity responses and intraoral intake volume. Taste-reactivity responses were videotaped during the first minute of the intraoral taste infusion. The infusion continued until the taste solution was rejected from the mouth, and the intake volume was computed accordingly. The number of ingestive taste-reactivity responses and the volume of intraoral intake consumed by pair-fed control and decerebrate rats increased with increasing sucrose concentration. Sucrose intake increased as concentration increased to 0.1 M, then plateaued between 0.3, 1.3, and 2.0 M sucrose for both groups. For control rats, intraoral NaCl elicited an inverted U-shaped function for both taste-reactivity responses and intake. Taste-reactivity responses of chronic decerebrate rats varied with NaCl concentration. In contrast to control rats, intake of NaCl did not differ from that of water for decerebrate rats. These data indicate that caudal brain-stem mechanisms are sufficient to control sucrose intake but are not adequate for the concentration dependent intake of NaCl. Second, these data also indicate that it is possible for taste-elicited oral motor responses to be dissociated from intake. The different roles of taste and postingestive factors in sucrose and NaCl intake are discussed.

摘要

通过测量口腔运动味觉反应和口腔内摄入量,评估了蔗糖和氯化钠(NaCl)对慢性去大脑大鼠和配对喂养的完整对照大鼠的口腔刺激作用。在口腔内味觉输注的第一分钟对味觉反应进行录像。输注持续进行,直到味觉溶液从口中被吐出,并据此计算摄入量。配对喂养的对照大鼠和去大脑大鼠的摄取性味觉反应次数和口腔内摄入体积随蔗糖浓度的增加而增加。两组大鼠的蔗糖摄入量均随着浓度增加至0.1 M,然后在0.3、1.3和2.0 M蔗糖之间趋于平稳。对于对照大鼠,口腔内的NaCl对味觉反应和摄入量均呈现倒U形函数关系。慢性去大脑大鼠的味觉反应随NaCl浓度而变化。与对照大鼠不同,去大脑大鼠对NaCl的摄入量与水的摄入量没有差异。这些数据表明,延髓机制足以控制蔗糖摄入,但不足以控制NaCl的浓度依赖性摄入。其次,这些数据还表明,味觉引发的口腔运动反应有可能与摄入量分离。本文讨论了味觉和摄食后因素在蔗糖和NaCl摄入中的不同作用。

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