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Detection of Successful and Unsuccessful Pregnancies in Mice within Hours of Pairing through Frequency Analysis of High Temporal Resolution Core Body Temperature Data

机译:通过高时间分辨率核心体温数据的频率分析在配对后数小时内检测出小鼠成功和失败的怀孕

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摘要

Many controllable factors negatively impact fetal development, underscoring the importance of early pregnancy detection and identification of events that reliably predict potential complications. Clinically, core body temperature (CBT) is used to aid family planning and pregnancy detection. However, such temperature data typically are gathered in single, daily measurements. In animal studies, interventions or cell/tissue harvesting at defined stages of fetal development are arduous, requiring timed mating by trained observers. The value of continuous temperature measurements remains largely unexplored, but the advent of small, inexpensive, and increasingly ubiquitous, accurate sensor devices makes continuous measures feasible. Here, using a mouse model, we show that continuous, 1-min resolution CBT measurements reliably allow for the earliest and most accurate detection of pregnancy (100%, within 14 h of initial pairing), without requiring interaction with the animal for data collection. This method also reveals a subset of females that exhibit a pregnancy-like response following pairing that persists for a variable number of days. Application of wavelet analysis that permits frequency analysis while preserving temporal resolution, uncovers significant differences in ultradian frequencies of CBT; these rhythms are significantly increased in the 12 h after the day of pairing for pregnancies carried to term compared to apparent pregnancies that failed. High temporal resolution CBT and wavelet analysis permit strikingly early detection and separation of successful pregnancies and pregnancy-like events.
机译:许多可控因素对胎儿发育产生不利影响,强调了早期妊娠检测和鉴定可可靠预测潜在并发症的事件的重要性。临床上,核心体温(CBT)用于帮助计划生育和怀孕检测。但是,此类温度数据通常是在单次每日测量中收集的。在动物研究中,在胎儿发育的特定阶段进行干预或收获细胞/组织非常艰巨,需要训练有素的观察者定时交配。连续温度测量的价值在很大程度上尚待探索,但是小型,廉价且日益普及的精确传感器设备的出现使连续测量成为可能。在这里,使用小鼠模型,我们显示了连续的,1分钟分辨率的CBT测量可靠地实现了最早,最准确的妊娠检测(100%,在首次配对的14小时内),而无需与动物互动进行数据收集。该方法还揭示了在配对后会表现出类似妊娠反应的女性子集,该子集会持续可变天数。小波分析的应用允许在保持时间分辨率的同时进行频率分析,发现了CBT的超diandian频率的显着差异;与失败的明显妊娠相比,这些配对在结对妊娠的第二天后的12小时内明显增加。较高的时间分辨率CBT和小波分析可以显着地及早发现和分离成功的怀孕和类似怀孕的事件。

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