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母猪自然发情时的卵巢活动。一项超声检查和促黄体生成素研究。

Ovarian activity at naturally attained oestrus in the sow. An ultrasonographic and LH study.

作者信息

Dalin A M, Nanda T, Hultén F, Einarsson S

机构信息

Department of Obstetrics and Gynaecology, Faculty of Veterinary Medicine, Swedish University of Agricultural Sciences, Uppsala, Sweden.

出版信息

Acta Vet Scand. 1995;36(3):377-82. doi: 10.1186/BF03547683.

Abstract

In 6 multiparous crossbred sows (2nd to 4th parity, Swedish Landrace x Swedish Yorkshire), 15 proosestrous-oestrous periods during 2 oestrous cycles were studied after weaning. The animals were controlled for oestrus, and the follicular growth and ovulation in their ovaries were followed by transrectal ultrasonography. Blood was sampled through indwelling catheters for analyses of LH and progesterone (P4). The duration of oestrus (standing reflex) was 47 +/- 12.4 h, and the interval from onset of standing reflex until the end of ovulation was 39 +/- 12.4 h (range 20-64 h). The LH peak concentration was 3.7 +/- 0.8 microgram/l, and the interval from LH peak level until ovulation was 23 +/- 8.4 h (range 8-32 h). The onset of standing reflex occurred in average 13 h before the LH peak level (range -4 - +36 h). The peripheral plasma concentration of P4 showed a normal cyclic pattern in all animals. Low levels (mean levels, 1.1-1.3 nmol/l) were seen during prooestrus and oestrus, high mean levels were found on days 10-16 (45-75 nmol/l) in the oestrous cycle. It was concluded that for an accurate determination of ovulation, each animal has to be examined repeatedly. Ultrasonography is a most valuable tool for this purpose.

摘要

在6头经产杂交母猪(第2至第4胎,瑞典长白猪×瑞典约克夏猪)中,断奶后对2个发情周期内的15个发情前期至发情期进行了研究。对这些动物进行发情检查,并通过经直肠超声检查跟踪其卵巢中的卵泡生长和排卵情况。通过留置导管采集血液,用于分析促黄体生成素(LH)和孕酮(P4)。发情持续时间(静立反射)为47±12.4小时,从静立反射开始到排卵结束的间隔为39±12.4小时(范围20 - 64小时)。LH峰值浓度为3.7±0.8微克/升,从LH峰值水平到排卵的间隔为23±8.4小时(范围8 - 32小时)。静立反射开始平均发生在LH峰值水平前13小时(范围 - 4至 + 36小时)。所有动物外周血P4浓度均呈现正常的周期性变化。发情前期和发情期P4水平较低(平均水平,1.1 - 1.3纳摩尔/升),发情周期第10 - 16天P4平均水平较高(45 - 75纳摩尔/升)。得出的结论是,为了准确确定排卵时间,必须对每头动物进行反复检查。超声检查是实现这一目的最有价值的工具。

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