首页> 外文期刊>Transactions of the ASABE >CONTINUOUS RESPIRATION RATE MEASUREMENT OF HEAT-STRESSED DAIRY COWS AND RELATION TO ENVIRONMENT, BODY TEMPERATURE, AND LYING TIME
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CONTINUOUS RESPIRATION RATE MEASUREMENT OF HEAT-STRESSED DAIRY COWS AND RELATION TO ENVIRONMENT, BODY TEMPERATURE, AND LYING TIME

机译:持续呼吸率测量热应力乳制品奶牛和环境,体温和躺卧的关系

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摘要

This study uses a continuously sampling sensor to document the respiration rate dynamics of lactating dairy cows under conditions of heat stress. Previously available respiration rate data on lactating dairy cows had primarily been generated by manually counting flank movements at discrete points in time, typically several times per day. Continuous measurements provide much higher-resolution data over time. The primary objective of this study was to analyze these continuous respiration rate measurements in relation to ambient conditions, body temperature, lying time, and time of day. Better understanding continuous responses to heat stress may help synchronize cooling system operation to the cows' need for heat stress relief. For 19 days during a summer season in Wisconsin, eight lactating Holstein cows were equipped with sensors designed to detect the abdominal expansion associated with breathing. An algorithm was developed to derive respiration rate from each sensor's signal. To validate the accuracy of the sensor and algorithms, measurements from the sensor were compared to respiration rate measurements taken via visual observation. Overall, variation in continuously measured respiration rate corresponded to changes in temperature-humidity index (THI) and body temperature. However, respiration rate and body temperature also remained elevated at night despite decreasing THI.
机译:本研究采用连续采样传感器,在热应力条件下记录哺乳乳制奶牛的呼吸率动态。以前的可用呼吸速率数据主要通过在离散点的时间内手动计数侧翼运动,通常每天几次产生。连续测量随着时间的推移提供了更高的分辨率数据。本研究的主要目的是分析与环境条件,体温,躺卧时间和一天中的环境条件相比的这些连续呼吸速率测量。更好地理解热应力的连续反应可能有助于使冷却系统运行同步到奶牛对热应力浮雕的需求。在威斯康星州的夏季19天,八个哺乳期荷斯坦奶牛配备了旨在检测​​与呼吸相关的腹部扩张的传感器。开发了一种算法,以从每个传感器的信号导出呼吸速率。为了验证传感器和算法的准确性,将传感器的测量与通过视觉观察进行的呼吸速率测量进行比较。总体而言,连续测量的呼吸速率的变化对应于温度湿度指数(THI)和体温的变化。然而,尽管降低了呼吸率和体温也仍保持升高。

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