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A novel biofarm technology to monitor and quantify oestrus cervix morphology in dairy cows

机译:新型生物农场技术,可监测和量化奶牛的发情子宫颈形态

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Increased cow productivity in the last few decades has depressed fertility and reproductive efficiency. Optimum uterus health and accurate true estrus detection have thus been greatly elusive on farm. The objective was to quantify cow cervix morphology during proestrus (PE), standing estrus (SE), diestrus (DE) and metestrus (ME) phases of the oestrus cycle using a novel biofarm technology. The cervical tissue was videotaped with an apparatus in 4 Holstein cows (50 days in milk, 31 kg milk yield, 670 kg BW) on multiple estrus and non-estrus phases (per treatment day n = 8). The videotaping apparatus had 45 cm length and 2.7 cm diameter, with internal electrical settings, external polyvinyl cover, front lights, and terminal wires for computer connection. The recordings were processed in a laptop computer installed with an image processing software. Cervix’s central positioning, motility, mucosal secretions, and clarity in the captured images were scored each on a 5-scale basis. The score of 1 represented highly central, very stable, highly mucosal, and discrete cervices. The score of 5 described entirely non-central, unstable, non-mucosal, and inseparable cervices. Results verified that cervix was significantly (P PE > DE > ME for an increased cervix distinctness (1.00, 1.20, 3.10, 3.62), central placement (1.13, 1.50, 3.73, 4.15), stability (decreased motility) (1.00, 1.50, 2.58, 4.33), and mucosal secretions (1.00, 1.50, 3.88, 4.13), respectively. Rectal temperature (RT) was similar among ME, DE, PE and SE phases, respectively (38.66, 38.33, 38.58, and 38.83。C ± 0.22). Regression analysis showed minor relations between RT and cervix morphology changes. Findings verify the on-farm feasibility of the novel technology as a cost-effective management tool (e.g., $US200 - 500 for the monitoring apparatus and computer software) to quantify cow cervix morphology. The novel biofarm technology holds promises for cohort uses with farm individuals visually detecting estrus. Future research on further quantification of the reproductive tract physiology and health is required.
机译:在过去的几十年中,奶牛生产力的提高降低了生育能力和生殖效率。因此,在农场中,子宫的最佳健康状况和准确的真实发情期检测就变得极为困难。目的是使用一种新的生物农场技术来量化发情周期的前期(PE),发情期(SE),二期发情(DE)和肠胃炎(ME)阶段的牛子宫颈形态。在多发情期和非发情期(每个治疗日n = 8)用4头荷斯坦奶牛(牛奶50天,牛奶产量31公斤,体重670公斤体重)在4个荷斯坦奶牛上用宫颈录像宫颈组织。录像设备的长度为45厘米,直径为2.7厘米,具有内部电气设置,外部聚乙烯盖,前灯和用于计算机连接的端子线。记录在装有图像处理软件的便携式计算机中处理。子宫颈的中心位置,运动性,粘膜分泌物和捕获图像的清晰度均以5级为基础进行评分。分数1表示高度中央,非常稳定,高度粘膜和离散的子宫颈。 5分完全描述了非中心,不稳定,非黏膜和不可分离的宫颈。结果证实子宫颈显着(P PE> DE> ME使子宫颈清晰度增加(1.00,1.20,3.10,3.62),中心位置(1.13,1.50,3.73,4.15),稳定性(运动力降低)(1.00,1.50,分别为2.58、4.33)和粘膜分泌物(1.00、1.50、3.88、4.13),ME,DE,PE和SE期的直肠温度(RT)分别相似(38.66、38.33、38.58和38.83)。 0.22)。回归分析显示RT与子宫颈形态变化之间的关系不大,研究结果证实了该新技术在农场上作为一种经济有效的管理工具(例如,用于监测设备和计算机软件的200-500美元)进行量化的可行性牛子宫颈形态学:这种新型的生物农场技术有望与农场个体目测发情的队列研究相结合,需要对进一步量化生殖道生理和健康状况进行进一步的研究。

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