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睾丸被一层坚韧的纤维膜,即白膜所覆盖,该膜向内延伸形成纤维隔膜或隔膜,将睾丸分成称为小叶的内部隔室。每个小叶有 1 至 3 个紧密盘绕的生精小管,精子就是在这里产生的。这些小管在睾丸后部合并成管状网络,称为睾丸网。它连接到 15 至 20 个输出小管,通向附睾。
负责产生精子的生精细胞沿着生精小管壁…
每个睾丸的白膜向内延伸,形成纤维性隔膜,即睾丸中隔,将其分隔为称为小叶的内部腔室。
每个小叶含有1至3条紧密盘绕的生精小管,是精子产生的部位。
这些小管在睾丸后部汇合成一个称为睾丸网的管道网络。睾丸网连接15至20条输出小管,通向附睾。
在生精小管内,生精细胞嵌入生精上皮中,并与支持细胞(也称为塞尔托利细胞)交错排列。
生精细胞在支持细胞的支撑和营养下,向管腔端移动并分化为成熟的精子。
在相邻的生精小管之间是间质细胞,也称为莱迪希细胞(Leydig cells)。
这些细胞产生雄激素,包括睾酮。
输送含氧血液的睾丸动脉较长,其周围包绕着相互连接的静脉网络,即蔓状静脉丛。
蔓状静脉丛引流去氧血液,并吸收含氧血液中的热量,从而确保睾丸组织获得最佳的营养供应和温度调节。
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Q1: How are the testes divided into internal compartments?
The tunica albuginea, a tough fibrous membrane covering each testis, extends inward to form fibrous partitions called septa testis. These septa divide the testis into internal compartments called lobules. Each lobule contains one to three tightly coiled seminiferous tubules, which are the primary sites for sperm production.
Q2: What is the role of Sertoli cells in the seminiferous tubules?
Sertoli cells, also called sustentacular cells, support and nourish spermatogenic cells within the seminiferous epithelium. These cells are interspersed among the developing sperm cells and provide essential nutrients and structural support as spermatogenic cells differentiate into mature spermatozoa progressing toward the tubule's lumen.
Q3: Where do Leydig cells produce testosterone in the testis?
Leydig cells, also known as interstitial cells, are located between adjacent seminiferous tubules. These cells produce androgens, including testosterone, the primary male sex hormone. Their strategic positioning allows them to deliver hormones directly into the surrounding tissue and bloodstream for systemic effects.
Q4: How do seminiferous tubules connect to the epididymis?
Seminiferous tubules merge into a tubular network at the back of the testis called the rete testis. The rete testis connects to 15 to 20 efferent ductules, which lead directly to the accessory ducts of the male reproductive system. This pathway allows newly produced sperm to travel from the seminiferous tubules toward storage and maturation sites.
Q5: What is the function of the pampiniform plexus in testicular temperature regulation?
The pampiniform plexus is a network of interconnected veins surrounding the testicular arteries. It drains deoxygenated blood from the testis while simultaneously absorbing heat from the incoming oxygenated arterial blood. This heat exchange mechanism ensures optimal temperature maintenance, which is critical for healthy sperm production.
Q6: Why is temperature control important for testicular function?
The testis requires precise temperature regulation to maintain normal sperm production. Deviation from the optimal temperature range disrupts the delicate process of spermatogenesis, leading to decreased fertility. The pampiniform plexus and testicular arteries work together to ensure the testicular tissue receives adequate nourishment and remains at the correct temperature.
Q7: What are the main structural components of a testicular lobule?
Each testicular lobule contains one to three tightly coiled seminiferous tubules where sperm production occurs. Within these tubules, spermatogenic cells are arranged in layers along the walls, supported by Sertoli cells. Between adjacent seminiferous tubules lie interstitial cells that produce testosterone and other androgens essential for male reproduction.