Central neuroanatomical systems involved in the regulation of food intake in birds and mammals.

W. Kuenzel
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引用次数: 102

Abstract

The neural regulation of food intake seems to be quite similar in birds and mammals. The ventromedial hypothalamic syndrome produced by lesions within the mediobasal hypothalamus of both birds and mammals is composed of several independent physiological and behavioral changes. Other neural sites known to be important in mammals for regulating food intake need to be examined in birds including the paraventricular nucleus, nucleus tractus solitarius and parabrachial nucleus. Members of the opioid and pancreatic polypeptide families are effective in stimulating food intake in avian species. Both prolactin and growth hormone are also efficacious in stimulating food intake. In contrast, cholecystokinin inhibits food intake when administered intracerebroventricularly. The autonomic and endocrine hypothesis developed to explain obesity in mammals appears to be quite applicable to genetic strains of commercial birds selected for meat production. Specifically the commercial broiler appears to display an imbalance of the autonomic nervous system. The parasympathetic nervous system dominates as a consequence of intense genetic selection for growth rate.
与鸟类和哺乳动物食物摄取调节有关的中枢神经解剖系统。
鸟类和哺乳动物对食物摄入的神经调节似乎非常相似。下丘脑腹内侧综合征是由鸟类和哺乳动物的下丘脑中基底部病变引起的,由几种独立的生理和行为变化组成。其他已知在哺乳动物中对调节食物摄入很重要的神经部位需要在鸟类中进行检查,包括室旁核,孤束核和臂旁核。阿片和胰多肽家族的成员在刺激鸟类的食物摄入方面是有效的。催乳素和生长激素在刺激食物摄入方面也很有效。相反,在脑室内使用胆囊收缩素可抑制食物摄入。用于解释哺乳动物肥胖的自主神经和内分泌假说似乎非常适用于选择用于肉类生产的商业鸟类的遗传菌株。特别是商品肉鸡似乎表现出自主神经系统的不平衡。副交感神经系统在生长速率的强烈遗传选择中占主导地位。
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