fimbria
简明释义
n. 毛缘,伞
复 数 f i m b r i a e
英英释义
A fringe or border-like structure, often found in biological contexts, such as the fimbriae of the fallopian tubes or the fimbriae of certain bacteria. | 一种边缘或边框状的结构,常见于生物学上下文中,例如输卵管的伞状突起或某些细菌的伞状突起。 |
单词用法
卵巢的边缘 | |
输卵管的边缘 | |
纤毛和纤维 | |
边缘粘附 |
同义词
边缘 | 森林的边缘充满了野生动物。 | ||
边界 | 两国之间的边界受到严格监控。 | ||
边缘 | 她沿着悬崖的边缘走,享受着美景。 |
反义词
萎缩 | 由于缺乏使用,这块肌肉出现了萎缩的迹象。 | ||
减少 | There has been a significant diminution in the population of the species. | 该物种的人口数量显著减少。 |
例句
1.The pregnancy rate of normal fimbria and unobstructed tube after lysis of periadnexal adhesion was 47.4%, 26 cases of laparoscopic salpingostomy had no pregnancy.
粘连松解后伞端正常、输卵管通畅者妊娠率4 7 4 % ,若行腹腔镜下输卵管造口术,2 6例无一例妊娠。
2.The pregnancy rate of normal fimbria and unobstructed tube after lysis of periadnexal adhesion was 47.4%, 26 cases of laparoscopic salpingostomy had no pregnancy.
粘连松解后伞端正常、输卵管通畅者妊娠率4 7 4 % ,若行腹腔镜下输卵管造口术,2 6例无一例妊娠。
3.Supraependymal nerve fibers existed not only on the ciliated surface of hippocampal fimbria, but also in the middle and posterior surfaces of hippocampal body.
室管膜上神经纤维可存在于海马伞的多纤毛区,也可存在于海马体的少纤毛区。
4.Method: the senile dementia model with learning-memory disorders was built by cutting off the fornix-fimbria hippocampi to damage the cholinergic system.
方法采用损伤穹隆—海马伞的方法造成胆碱能系统损害学习记忆障碍痴呆模型。
5.The number of phagocyte-like cells that mainly existed on the ciliated surface of hippocampal fimbria was the most;
吞噬样细胞数量最多,主要位于海马伞的多纤毛区;
6.In FF control, the cortical tissue of the superficial layer of bilateral fimbria-fornix was transectioned.
双侧穹窿海马伞对照组仅切断双侧穹窿海马伞浅层的皮质组织。
7.Result: the learning-memory ability was severely impaired by the damage of the fornix-fimbria hippocampi.
结果发现穹隆—海马损伤后严重影响到大鼠的学习记忆能力。
8.Aim: To observe the effect of fimbria-fornix (ff) transection on rats hippocampal synaptic configuration.
目的:观察横断大鼠穹窿-海马伞对其海马突触形态的影响。
9.Conclusion Fimbria fornix transection lesion can results in rats learning and memory disorder.
结论切断穹窿海马伞可引起动物学习记忆障碍。
10.Results (1) A lot of cilia and microvilli were obversed on the surface of hippocampal fimbria.
结果(1)大鼠海马伞的室管膜表面覆盖着大量的纤毛和微绒毛;
11.The fimbria 指绒毛 of the fallopian tube helps to guide the egg from the ovary.
输卵管的fimbria 指绒毛帮助引导卵子从卵巢移动。
12.In embryology, the fimbria 指绒毛 plays a crucial role in the development of certain organs.
在胚胎学中,fimbria 指绒毛在某些器官的发展中起着至关重要的作用。
13.The fimbria 指绒毛 of the brain can influence neuronal connections.
大脑的fimbria 指绒毛可以影响神经连接。
14.Researchers are studying the fimbria 指绒毛 to understand its role in neurodegenerative diseases.
研究人员正在研究fimbria 指绒毛以了解它在神经退行性疾病中的作用。
15.The fimbria 指绒毛 is also important in the reproductive system of many animals.
在许多动物的生殖系统中,fimbria 指绒毛也很重要。
作文
The human body is a marvel of complexity, with each part playing a critical role in maintaining overall health and function. One such fascinating structure is the fimbria, which is often overlooked in discussions about anatomy. The term fimbria refers to the fringe-like projections found at the ends of the fallopian tubes in females. These delicate structures are not merely decorative; they serve a vital function in the reproductive process. The fimbria help guide the egg released from the ovary into the fallopian tube, where fertilization can occur if sperm are present. Understanding the role of the fimbria is crucial for comprehending female fertility. During ovulation, the ovaries release an egg, which then needs to be captured by the fallopian tubes. The fimbria, with their finger-like extensions, create a gentle current in the surrounding fluid, effectively 'sweeping' the egg into the tube. This action is essential because if the egg is not successfully captured, it will not have the opportunity to meet sperm, and fertilization cannot take place. In addition to their role in reproduction, the fimbria also play a part in the overall health of the female reproductive system. They are lined with ciliated cells that help move the egg and any potential fertilized embryo along the fallopian tube towards the uterus. This movement is critical for ensuring that the embryo reaches the proper site for implantation. If the fimbria are damaged or not functioning correctly, it can lead to complications such as ectopic pregnancies, where the embryo implants outside the uterus, often resulting in serious health risks for the mother. The importance of the fimbria extends beyond mere mechanics; they also highlight the intricate connection between different systems within the body. For instance, hormonal changes during the menstrual cycle influence the activity of the fimbria. When estrogen levels rise, the fimbria become more active, enhancing their ability to capture the egg. This interplay between hormones and physical structures exemplifies the delicate balance required for successful reproduction. In summary, while the fimbria may seem like a small and insignificant part of the female reproductive system, their role is anything but minor. They are essential for capturing the egg, facilitating fertilization, and ensuring the proper movement of embryos. Understanding the function of the fimbria not only enriches our knowledge of human anatomy but also emphasizes the complexities involved in the reproductive process. As we continue to explore the mysteries of the human body, the fimbria serve as a reminder of the intricate and beautiful design that allows life to flourish. Recognizing the significance of such structures can inspire a deeper appreciation for the marvels of biology and the importance of maintaining reproductive health.
人体是复杂性的奇迹,每个部分在维持整体健康和功能中都发挥着关键作用。其中一个引人入胜的结构是fimbria,在讨论解剖学时常常被忽视。术语fimbria指的是女性输卵管末端的边缘状突起。这些精致的结构不仅仅是装饰;它们在生殖过程中起着重要的作用。fimbria帮助将从卵巢释放的卵子引导进入输卵管,如果存在精子,受精就可以发生。 理解fimbria的作用对于理解女性生育能力至关重要。在排卵期间,卵巢释放卵子,然后需要被输卵管捕获。fimbria用其类似手指的延伸部分,在周围液体中产生温和的流动,有效地“扫”走卵子进入输卵管。这一动作至关重要,因为如果卵子没有成功捕获,就不会有机会与精子相遇,受精也就无法发生。 除了在生殖中的作用外,fimbria还在女性生殖系统的整体健康中发挥着作用。它们内衬有纤毛细胞,帮助将卵子和任何潜在的受精胚胎沿输卵管移动到子宫。这种运动对于确保胚胎到达适合植入的地点至关重要。如果fimbria受损或功能不正常,可能会导致并发症,例如异位妊娠,即胚胎在子宫外植入,通常会对母亲造成严重的健康风险。 fimbria的重要性不仅限于机械方面;它们还突显了身体内不同系统之间的复杂联系。例如,月经周期中的激素变化影响fimbria的活动。当雌激素水平上升时,fimbria变得更加活跃,增强了捕获卵子的能力。这种激素与物理结构之间的相互作用示范了成功生殖所需的微妙平衡。 总之,尽管fimbria看似女性生殖系统中一个小而微不足道的部分,但它们的作用绝非微小。它们对于捕获卵子、促进受精以及确保胚胎的正常移动至关重要。理解fimbria的功能不仅丰富了我们对人体解剖学的知识,也强调了生殖过程中涉及的复杂性。在我们继续探索人体奥秘的过程中,fimbria提醒我们,允许生命繁衍的复杂而美丽的设计。认识到这些结构的重要性,可以激发我们对生物学奇观和维持生殖健康重要性的更深刻理解。
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