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Role of intraovarian mechanisms and side of ovary on characteristics of follicle selection in Bos taurus heifers

机译:卵巢内外管道机制与卵巢的作用对博士金牛座小母牛的卵泡选择特征

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Intraovarian effects on diameter of future dominant follicle (DF or F1) and future largest subordinate follicle (F2) during the few days before selection of the future DF and subordinate follicles were studied in 147 bovine interovulatory intervals. Follicle selection involves diameter deviation or the beginning of separation of growth rates between F1 and F2. Diameter deviation is classified as conventional (F2 >= 7.0 mm when F1 is 8.5 mm or at expected deviation) and as undersized (F2 < 7.0 mm when F1 is 8.5 mm). Diameter separation of F1 and F2 in conventional and undersized deviations is characteristically abrupt and gradual, respectively. The predeviation diameter of F2 when located in an ovary that later becomes the F1 intraovarian patterns of DF CL, devoid (ovary without a DF or CL), DF alone, or CL alone and in left or right ovaries (LO, RO) was compared between conventional and undersized deviations. In conventional deviation, ovaries with the future DF (combined DF CL and DF patterns) were associated with greater (P < 0.02) predeviation growth rate of F2 when the DF was in the right ovary (DF/RO, 1.6 0.1 mm/d) than when in the left ovary (DF/LO, 1.2 +/- 0.1 mm/d). The F2 was in DF/RO more frequently (75%, P < 0.002) than in non-DF/RO. When F2 was in the future devoid F1 pattern and F1 was 6 mm, F2 was smaller (P < 0.002) in the undersized class (5.3 +/- 0.2 mm) than in the conventional class (6.3 +/- 0.1) but not when F2 was in one of the other future F1 patterns. Only the devoid pattern was greater in frequency (P < 0.03) in the undersized class than in the conventional class. The novel hypothesis was supported that location of F2 in ovaries with different future F1 intraovarian patterns and on different sides affects the predeviation diameter and growth rate of F2 and thereby the frequencies of conventional and undersized deviations during follicle selection. (C) 2019 Elsevier Inc. All rights reserved.
机译:在选择未来DF和从属卵泡的几天内,在147牛井间间隔内研究了未来优势卵泡(DF或F1)和未来最大从属卵泡(F2)的未来最大毛囊(F2)的局部内容作用。卵泡选择涉及直径偏差或F1和F2之间的生长速率分离的开始。直径偏差被分类为常规(F2> = 7.0mm,当F1为8.5mm或在预期偏差时),并且当F1为8.5毫米时F2 <7.0 mm)。在常规和下辐射偏差中的F1和F2的直径分别分别是特征性和逐渐的。当位于卵巢时,F2的预测直径成为DF C1的F1 intraval型图案,单独使用DF或没有DF或CL的卵巢),或单独或左侧或右卵巢(LO,RO)进行比较在常规和尺寸的偏差之间。在常规偏差中,当DF位于右卵巢时(DF / RO,1.6 0.1mm / d)时,具有未来DF(组合DF CL和DF模式)的卵巢与F2的更大(P <0.02)的预测生长速率相关联而不是在左卵巢(DF / LO,1.2 +/- 0.1 mm / d)。 F2更频繁地(75%,P <0.002)在非DF / RO中。当F2在未来的Devoid F1图案中,F1为6mm,F2在常规类别(5.3 +/- 0.2 mm)中较小(P <0.002)(P <0.002)(6.3 +/- 0.1),但不是什么时候F2是其他未来的F1模式之一。在常规类别中,频率频率(P <0.03)中只有更大的模式更大。支持新颖的假设,其中F2在具有不同未来F1内外图形和不同侧面的卵巢的位置影响F2的预测直径和生长速率,从而在卵泡选择期间的常规和口径偏差的频率。 (c)2019 Elsevier Inc.保留所有权利。

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