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人体饮用量微观结构:一种新型饮用量测量计在健康成年人中的概念验证研究。

Drinking microstructure in humans: A proof of concept study of a novel drinkometer in healthy adults.

机构信息

Department of Surgery and Transplantation, University Hospital Zurich, Switzerland.

Faculty of Information Technology and Bionics, Pázmány Péter Catholic University, Budapest, Hungary; Wigner Research Centre for Physics, Hungarian Academy of Sciences, Budapest, Hungary.

出版信息

Appetite. 2019 Feb 1;133:47-60. doi: 10.1016/j.appet.2018.08.012. Epub 2018 Sep 1.

Abstract

Microstructural analysis of ingestion provides valuable insight into the roles of chemosensory signals, nutritional content, postingestive events, and physiological state. Our aim was to develop a novel drinkometer for humans to measure detailed aspects of ingestion of an entire liquid meal or drinking session. The drinkometer records, in high definition (1 kHz), the weight of a fluid reservoir from which participants drink via a tube. An ultrasonic sensor measures the height of the fluid to derive density. Drinking speed over time can be displayed as a waveform. The smallest units of ingestion are sucks, which are organized in bursts. By applying probability density functions (PDF) on log-transformed inter-suck intervals (ISI), an optimal burst-pause criterion (PC) can be identified. Information on ingestive volumes, rates, and durations can be then computed for the entire session, as well as for sucks and bursts. We performed a validation study on 12 healthy adults in overnight-fasted and in non-fasted states in 16 drinking sessions with 8 concentrations of sucrose (0-280 mM) presented in a blinded and random fashion. PDF determined PC = 2.9 s as optimal. Two-way RM-ANOVA revealed that total caloric intake during a drinking session depended on sucrose concentration (P < .001) and fasted state (P = .006); total drinking time (P < .001), total consumed volume (P = .003), number of sucks in total (P < .001), number of sucks per burst (P = .03), and burst duration (P = .02) were significantly influenced by fasting. In contrast, volume per suck (P = .002), suck speed (P < .001), and maximal speed per suck (P < .001) depended on sucrose concentration. We conclude that the novel drinkometer is able to detect differences in microstructural parameters of drinking behavior dependent on different motivational states, thus, adds to the technological toolbox used to explore human ingestive behavior.

摘要

摄食的微观结构分析为化学感觉信号、营养成分、摄食后事件和生理状态的作用提供了有价值的见解。我们的目的是开发一种新型的人类饮用量计,以测量整个液体餐或饮用过程中详细的摄食方面。饮用量计以高清晰度(1 kHz)记录参与者通过管子饮用的液体储液器的重量。超声波传感器测量液体的高度以得出密度。随时间变化的饮用速度可以显示为波形。摄食的最小单位是吸吮,它以爆发的形式组织。通过对对数变换后的吸吮间隔(ISI)应用概率密度函数(PDF),可以确定最佳的爆发-暂停标准(PC)。然后可以计算整个会话以及吸吮和爆发的摄食量、速度和持续时间的信息。我们在 16 次饮用中对 12 名健康成年人进行了过夜禁食和非禁食状态的验证研究,以盲法和随机方式呈现 8 种浓度的蔗糖(0-280 mM)。PDF 确定 PC = 2.9 s 为最佳值。双向 RM-ANOVA 显示,一个饮用会话中的总热量摄入取决于蔗糖浓度(P <.001)和禁食状态(P =.006);总饮用时间(P <.001)、总消耗量(P =.003)、总吸吮次数(P <.001)、每个爆发的吸吮次数(P =.03)和爆发持续时间(P =.02)均受禁食影响显著。相比之下,每吸吮的体积(P =.002)、吸吮速度(P <.001)和每吸吮的最大速度(P <.001)取决于蔗糖浓度。我们得出结论,新型饮用量计能够检测到不同动机状态下的摄食行为微观结构参数的差异,因此,增加了用于探索人类摄食行为的技术工具包。

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