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Die proliferative Phase tritt typischerweise nach der Menstruation auf und dauert in einem Standardzyklus von 28 Tagen zwischen 6 und 13 Tagen. In die…
Die proliferative Phase ist die zweite Phase des Menstruationszyklus der Gebärmutter. Sie beginnt nach der Menstruation und dauert etwa 6 bis 13 Tage in einem typischen 28-Tage-Zyklus.
Während dieser Phase baut sich das Uterusendometrium unter dem Einfluss von Östrogen, das von den wachsenden Follikeln in den Eierstöcken freigesetzt wird, wieder auf.
Die Basalschicht des Endometriums, das sogenannte Stratum basale, einschließlich der basalen Teile der Gebärmutterdrüsen, übersteht die Menstruation intakt.
Die Zellen im Stratum basale teilen sich schnell und bilden eine neue Schicht des Stratum functionalis.
Wenn sich das Endometrium verdickt, entwickeln sich die Endometriumdrüsen, und die Arteriolen wickeln sich und verlängern sich und dringen in das neu gebildete Stratum functionalis ein.
Infolgedessen wird das Endometrium samtig, dick und gut vaskularisiert und verdoppelt seine Dicke etwa auf etwa 4–10 mm.
In der Zwischenzeit führen Ereignisse in den Eierstöcken zur Reifung des dominanten Follikels zu einem Graafschen Follikel.
Infolgedessen endet die proliferative Phase mit dem Eisprung, der durch einen Anstieg des luteinisierenden Hormonspiegels, der von der Hypophyse freigesetzt wird, ausgelöst wird.
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Q1: When does the proliferative phase occur in the menstrual cycle?
The proliferative phase begins after menstruation and lasts approximately 6 to 13 days in a typical 28-day cycle. This phase follows the menses phase and precedes ovulation. During this time, the uterine endometrium undergoes reconstruction under the influence of estrogen released by growing ovarian follicles.
Q2: What role does the stratum basale play during the proliferative phase?
The stratum basale, the basal layer of the endometrium, survives menstruation intact and serves as the source for endometrial regeneration. Stem cells within this layer undergo rapid mitosis, creating a new stratum functionalis layer. This regenerative capacity allows the endometrium to rebuild completely during the proliferative phase.
Q3: How does the endometrium change during the proliferative phase?
During the proliferative phase, the endometrium thickens from approximately 2 mm to 4–10 mm, roughly doubling in thickness. Endometrial glands develop and become more numerous, while arterioles coil and lengthen to penetrate the newly formed stratum functionalis. These vascular changes enhance blood supply, giving the endometrium a velvety, thick, and well-vascularized appearance.
Q4: What hormonal changes trigger the end of the proliferative phase?
The proliferative phase concludes with ovulation, which is triggered by a surge in luteinizing hormone released by the anterior pituitary gland. This hormonal surge causes the dominant follicle to mature into a Graafian follicle and rupture, releasing the oocyte. The luteinizing hormone surge marks the transition from the proliferative phase to the secretory phase.
Q5: Why is estrogen essential during the proliferative phase?
Estrogen, released by growing follicles in the ovaries, drives endometrial reconstruction during the proliferative phase. It stimulates stem cells in the stratum basale to divide rapidly and promotes the development of endometrial glands and blood vessels. Without adequate estrogen, the endometrium cannot rebuild properly to prepare for potential implantation.
Q6: What is the relationship between follicle development and the proliferative phase?
Follicle maturation in the ovaries occurs simultaneously with endometrial reconstruction during the proliferative phase. Growing follicles produce estrogen, which stimulates endometrial thickening and gland development. The phase culminates when the dominant follicle matures into a Graafian follicle, triggering ovulation and ending the proliferative phase.
Q7: How does vascularization of the endometrium support the proliferative phase?
Arterioles coil and lengthen during the proliferative phase, penetrating the newly formed stratum functionalis to enhance blood supply to the endometrium. This increased vascularization delivers oxygen and nutrients necessary for gland development and tissue thickening. The well-vascularized endometrium becomes prepared to support potential embryo implantation.