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The basic components of the mammary gland are the alveoli lined with milk-secreting epithelial cells and surrounded by myoepithelial cells and a rich capillary network. These alveoli join up to form lactiferous ducts that drain into openings in the areola.
In human females there are usually two mammary glands, one in each breast, although polythelia ( accessory nipples ) and polymastia (accessory glands) can occur anywhere from the knee to the neck.
The development of mammary glands is controlled by hormones. Estrogen promotes formation, while testosterone inhibits it. Prolactin, which is stimulated by estrogen, acts on the mammary glands to produce milk ( lactation).
At birth, there are lactiferous ducts but no alveoli. Little branching occurs before puberty when ovarian estrogens stimulate branching differentiation of the ducts into spherical masses of cells that will become alveoli. True secretory alveoli only develop in pregnancy, where rising levels of estrogen and progesterone cause further branching and differentiation of the duct cells, together with an increase in adipose tissue and a richer blood flowBlood flow is the flow of blood in the cardiovascular system. F blood flow P pressure R resistance ν fluid viscosity L length of tube r radius of tube Hematology..
ColostrumColostrum is a form of milk produced by the mammary glands, in late pregnancy and the first hours after giving birth. Human colostrum is watery, yellowish and of lower volume than mature milk. It is the first feed a baby has and is given when the mother b is secreted in late pregnancy and for the first few days after giving birth. True milk secretion begins a few days later due to a reduction in circulating oestrogens and progesterone.
| Reproductive system |
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Female: Cervix - Clitoris - Fallopian tubes - Bartholin's glands - Hymen - Mammary glands - Ovaries - Skene's glands - Urethra - Uterus - VaginaMale: Bulbourethral glands - Ejaculatory duct - Epididymis - Penis - Prostate - Seminal vesicles - Testes - Urethra - Vas deferens |