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一种用于分析以复杂混合食物为食的大鼠与摄食相关的摄食行为的新仪器。

A new apparatus to analyze meal-related ingestive behaviors in rats fed a complex multi-food diet.

机构信息

Department of Psychology and Program in Neuroscience, Florida State University, 1107 W. Call St., Tallahassee, FL, 32306-4301 USA.

Department of Psychology and Program in Neuroscience, Florida State University, 1107 W. Call St., Tallahassee, FL, 32306-4301 USA.

出版信息

Physiol Behav. 2022 Aug 1;252:113824. doi: 10.1016/j.physbeh.2022.113824. Epub 2022 Apr 25.

Abstract

The measurement of the size and timing of meals provides critical insight into the processes underlying food intake. While most work has been conducted with a single food or fluid, the availability of food choices can also influence eating and interact with these processes. The 5-Item Food Choice Monitor (FCM), a device that continuously measures eating and drinking behaviors of rats provided up to 5 foods and 2 fluids simultaneously, was designed to allow study of food choices simultaneously with meal patterns. To validate this device, adult male and female (n = 8 each) Sprague-Dawley rats were housed in the FCM. Food and fluid intake were measured continuously (22-h/day) while rats were presented water and powdered chow. Then a cafeteria diet of 5 foods varying in macronutrient content, texture, and flavors were offered along with water. Lastly, the 5 foods were offered along with 0.3 M sucrose and water. Analyses were conducted to find optimal criteria for parceling ingestive behavior into meals, and then meal patterns were quantified. Total intake, as assessed by FCM software, was in good concordance with that measured by an independent scale. A minimum meal size of 1 kcal and a meal termination criterion of 15-min accounted for >90% of total intake and produced meal dynamics that were in register with the literature. Use of the cafeteria diet allowed comparisons between meal patterns with a single food versus a multi-food diet, as well as analyses of macronutrient-related food choices across subsets of meals. The FCM proved to accurately measure food intake over a 22-h period and was able to detect differences and similarities in the meal patterns of rats as a function of sex and food choice availability. Combined with any number of experimental manipulations, the FCM holds great promise in the investigation of the physiological and neural controls of ingestive behavior in a dietary environment that allows food choices, more closely emulating human eating conditions.

摘要

进食量和进食时间的测量为深入了解摄食行为背后的机制提供了重要线索。虽然大多数研究都是针对单一食物或液体进行的,但食物选择的可用性也会影响进食行为,并与这些过程相互作用。5-Item 食物选择监测器(FCM)是一种连续测量大鼠进食和饮水行为的设备,可同时提供多达 5 种食物和 2 种液体,旨在允许同时研究食物选择和进食模式。为了验证该设备,雄性和雌性成年(n=8 只/性别)Sprague-Dawley 大鼠被安置在 FCM 中。在提供水和粉末状饲料的情况下,连续(22 小时/天)测量食物和液体的摄入。然后,提供了一种由 5 种不同宏量营养素含量、质地和口味的食物组成的自助餐厅饮食,以及水。最后,提供了 5 种食物以及 0.3 M 蔗糖和水。进行了分析以找到将摄食行为划分为餐的最佳标准,然后量化了进餐模式。FCM 软件评估的总摄入量与独立量表测量的摄入量非常吻合。最小进餐量为 1 卡路里,进餐结束标准为 15 分钟,这解释了>90%的总摄入量,并产生了与文献一致的进餐动力学。使用自助餐厅饮食可以比较单一食物与多食物饮食的进餐模式,以及分析宏量营养素相关的食物选择在各餐之间的差异。FCM 被证明可以在 22 小时的时间内准确测量食物摄入量,并能够检测到大鼠性别和食物选择可用性对进餐模式的影响。结合任何数量的实验操作,FCM 在研究饮食环境下摄食行为的生理和神经控制方面具有很大的潜力,因为它可以允许进行食物选择,更接近人类的进食条件。

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本文引用的文献

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