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The bioelectric parameters of the vagina during the oestrous cycle of the rat.

机译:在大鼠的发情周期中阴道的生物电参数。

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摘要

1. A new in vitro preparation of the rat vagina was devised to allow the measurement of the electrical potential difference (p.d.), short-circuit current (s-c.c.) and tissue resistance. 2. In vivo and in vitro, the magnitude of the transvaginal p.d. (adventitia positive to lumen) was greatest at oestrus and smallest at dioestrus and metoestrus. The p.d. at pro-oestrus was not significantly different from the latter values. 3. The s-c.c. was significantly greater at oestrus than at metoestrus, dioestrus and pro-oestrus. 4. The vaginal resistance was maximal at pro-oestrus and was significantly greater than that at metoestrus, dioestrus and oestrus. The value at oestrus was significantly greater than that at metoestrus and dioestrus. These changes in resistance correlate well with known changes in vaginal morphology during the oestrous cycle. 5. It is proposed that the cellular site for the generation of vaginal bioelectric activity is the basal cell layer of the vagina and that the variations of the transvaginal p.d. measured in vivo are caused by the changes in vaginal current and tissue resistance.
机译:1.设计了一种新的大鼠阴道体外制剂,以测量电势差(p.d.),短路电流(s-c.c。)和组织电阻。 2.在体内和体外,经阴道p.d的大小。 (对管腔呈阳性的外膜)在发情期最大,而在发情期和肠发情期最小。下午发情期与后发值没有显着差异。 3.抄送发情期明显高于动情期,发情期和发情期。 4.发情前期的阴道抵抗力最大,并且明显高于肠发情期,发情期和发情期。发情期的值显着高于肠发情期和二发情期的值。这些抵抗力的变化与发情周期中阴道形态的已知变化密切相关。 5.建议产生阴道生物电活性的细胞部位是阴道的基底细胞层,而经阴道的p.d变异。体内的测量值是由阴道电流和组织抵抗力的变化引起的。

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