vermiform
简明释义
adj. 蠕虫状的,蛆形的
英英释义
在形状或外观上类似于蠕虫。 |
单词用法
n. 阑尾;蚓突 |
同义词
虫状的 | The creature had a worm-like appearance, slithering through the grass. | 这个生物看起来像虫子,蜿蜒穿过草地。 | |
蛇形的 | The serpentine shape of the river made it difficult to navigate. | 河流的蛇形状使得航行变得困难。 | |
延长的 | 鱼的细长身体使它能够快速游动。 |
反义词
固体的 | 这个结构是由固体材料制成的。 | ||
刚性的 | 刚性框架提供了极好的支撑。 |
例句
1.And we have carried out four kinds of animal experiments and the drug sensitivity test as well as antiseptic test of human body's vermiform mite.
对于该药的研究,笔者做了四项动物实验及对人体蠕形螨的药敏实验、抗菌实验等。
2.Acute inflammation of the vermiform appendix is the most common surgical lesion within the abdomen.
阑尾的急性炎症,是最常见的外科腹部病变。
3.Appendix (in full vermiform appendix):Vestigial hollow tube attached to the cecum of the large intestine.
阑尾(全名名蚓状阑尾):解剖学上附于大肠的盲肠的一条退化性中空管。
4.Methods The root of vermiform appendix was stitched up and enwrapped in laparoscopic appendectomy by silk stitches.
目的探讨三孔缝合打结法在腹腔镜阑尾切除术中的可行性及应用。
5.She has left, for instance, some troublesome bits of scaffolding, like the vermiform appendix, behind.
比如,它遗留下了令人烦恼的残留物,如隐藏的阑尾。
6.The modern king have become a vermiform appendix: useless when quiet; when obtrusive, in danger of removal.
现代的君王已成了阑尾:平时无用处,一旦突出,即有被切除之虞。
7.The lymphatic capillary networks and lymphatics of the ileum and the vermiform appendix may directly communicate with those of the cecum.
回肠和阑尾的毛细淋巴管和淋巴管可直接与盲肠的相通。
8.And we have carried out four kinds of animal experiments and the drug sensitivity test as well as antiseptic test of human body's vermiform mite.
对于该药的研究,笔者做了四项动物实验及对人体蠕形螨的药敏实验、抗菌实验等。
9.Using cellophane method, the parasitism and excursion of vermiform mites on human faces and their survival in vitro were observed.
用透明胶带法观察蠕形螨在人体面部的寄生、逸出及其在体外的存活能力。
10.Methods The paste way of transparent offset paper was used to examine vermiform mite in some college students and its cause analysed.
方法:透明胶纸粘贴法对部分大、中专学生进行蠕形螨检查并分析原因。
11.The vermiform 虫状的 design of the toy made it appealing to children.
这个玩具的 虫状的 虫状的 设计使它对孩子们很有吸引力。
12.Many animals, such as earthworms, have a vermiform 虫状的 body structure that aids in movement.
许多动物,例如蚯蚓,具有 虫状的 虫状的 身体结构,有助于移动。
13.The vermiform 虫状的 shape of the snake allows it to slither through tight spaces.
蛇的 虫状的 虫状的 形状使其能够在狭窄的空间中滑行。
14.The vermiform 虫状的 appendix is often removed during an appendectomy.
在阑尾切除手术中,虫状的 阑尾 通常会被切除。
15.In biology class, we studied the vermiform 虫状的 structure of certain parasites.
在生物课上,我们研究了某些寄生虫的 虫状的 虫状的 结构。
作文
In the world of biology, the term vermiform (蠕虫状的) is often used to describe organisms or structures that resemble or are shaped like worms. This term comes from the Latin word 'vermis,' which means worm. The significance of vermiform shapes can be observed in various species across different ecosystems, showcasing the diversity of life forms and their adaptations to specific environments. One notable example of a vermiform organism is the earthworm. These creatures play a crucial role in soil health and aeration, promoting plant growth by breaking down organic matter and improving nutrient availability. Their elongated, cylindrical bodies allow them to burrow through the soil, making them essential for maintaining healthy ecosystems. Another interesting aspect of vermiform shapes can be found in the anatomy of certain animals. For instance, the intestines of many vertebrates exhibit a vermiform structure, which aids in the efficient absorption of nutrients. The design of these organs is a perfect example of how evolution has favored certain shapes for optimal functionality. In addition to earthworms and intestinal structures, we can also observe vermiform characteristics in various marine creatures, such as certain types of sea cucumbers. These soft-bodied animals have adapted to their environments with a shape that allows them to navigate through sandy ocean floors while feeding on detritus. The concept of vermiform shapes extends beyond biology into other fields. For example, in engineering and architecture, the principles of biomimicry often draw inspiration from nature's designs. Architects may study vermiform structures to create buildings that are not only aesthetically pleasing but also functional and sustainable. The streamlined shapes can reduce wind resistance and improve energy efficiency, demonstrating how nature’s designs can inform human innovation. Moreover, the vermiform shape is prevalent in technology as well. In computer science, algorithms modeled after natural processes, including those inspired by vermiform organisms, can lead to more efficient problem-solving methods. For instance, swarm intelligence, which is based on the collective behavior of decentralized systems, often mimics the movements of vermiform creatures as they navigate through their environments. This connection between nature and technology highlights the interdisciplinary relevance of understanding vermiform shapes. In conclusion, the term vermiform (蠕虫状的) encapsulates a fascinating aspect of biological and structural diversity. From earthworms enriching our soils to innovative designs inspired by nature, the significance of vermiform shapes is evident in numerous domains. By studying these forms, we gain insights into the interconnectedness of life and the potential for applying natural principles to enhance our own creations. As we continue to explore the vast complexities of the natural world, the vermiform shape serves as a reminder of the beauty and functionality that can be found in simplicity.