biomagnetism的音标是["baɪəʊmægneɪtɪzəm],翻译成中文是“生物磁学”。
速记技巧:biomagnetism是一个比较长的单词,但是它有一定的规律。首先,biomagnet是生物磁的缩写,而-ism通常表示某种现象或理论。因此,可以将这个单词分为三个部分来记忆:bio(生物)、magnet(磁铁)和-ism(现象)。这样,就可以轻松地记住这个单词了。
Biomagnetism 是一个涉及生物磁学的术语,其英文词源可以追溯到希腊语中的“bio”(生命)和“magnetos”(磁铁)。这个词的含义是研究生物体中的磁性现象。
变化形式:名词biomagnetism,形容词biomagnetic。
相关单词:
1. Biomagnetometer:生物磁力计,用于测量生物体内的磁场强度。
2. Biomagnetic field:生物磁场,指生物体内产生的磁场。
3. Biomagnetism research:生物磁学研究,研究生物体中磁性的相关科学领域。
4. Biomagnetite:生物磁铁石,一种含铁矿物,具有磁性。
5. Magnetorelaxometry:磁弛豫测量,一种生物磁学研究方法,用于研究生物体内的磁场变化。
6. Magnetotactic bacteria:磁性细菌,能够产生微弱的生物磁场。
7. Magnetophoresis:磁泳法,一种生物样品处理技术,利用生物体的磁性进行分离。
8. Biomagnetism and bioelectromagnetism:生物磁学和生物电磁学,是生物物理学的一个分支,研究生物体的磁性和电磁特性。
9. Biomagnetic therapy:生物磁场疗法,利用生物磁场进行疾病治疗的一种方法。
10. Biomagnetic sensor:生物磁场传感器,用于测量生物体内的磁场强度或变化。
这些单词都与biomagnetism这个概念密切相关,涵盖了从测量、研究、到治疗和应用等多个方面。
常用短语:
1. magnetic biomagnetism (MBM)
2. magnetic field biomagnetism
3. magnetic susceptibility
4. magnetic resonance imaging (MRI)
5. magnetic field measurement
6. magnetic field mapping
7. magnetic field gradient
8. magnetic dipole moment
例句:
1. The magnetic susceptibility of iron oxide nanoparticles can be used to detect cancer cells in the body.
2. MRI is a powerful tool for diagnosing various diseases and conditions.
3. Magnetic field mapping can help us understand the structure of the Earth"s core.
4. The magnetic dipole moment of a magnet determines its strength and direction.
5. Biomagnetism can be used to track the location of cells in vivo, which can be helpful in drug delivery and tissue engineering.
6. Magnetite nanoparticles can be used to create a magnetic field gradient, which can be used for targeted drug delivery or tissue ablation.
7. Biomagnetism is a fascinating field of research that has the potential to revolutionize medical diagnosis and treatment.
英文小作文:
Biomagnetism: A New Frontier in Medical Science
Biomagnetism, the study of magnetic fields generated by living organisms, holds the potential to revolutionize medical science. From tracking the location of cells in vivo to targeted drug delivery, biomagnetism has opened up a new frontier in medical research and treatment.
One of the most exciting applications of biomagnetism is magnetic field mapping, which can help us understand the complex structure of the Earth"s core and other magnetic environments. By measuring the magnetic field strength and direction, we can gain insights into the behavior of substances such as iron oxide nanoparticles, which can be used to detect cancer cells or track the location of cells in tissue engineering experiments.
Moreover, biomagnetism can also be used to create magnetic field gradients that can be used for targeted drug delivery or tissue ablation. By manipulating the magnetic properties of nanoparticles, we can direct drugs to specific areas of the body, reducing side effects and improving patient outcomes.
Biomagnetism is a fascinating field of research that continues to expand our understanding of the human body and its interactions with the environment. With further advances in technology and research, biomagnetism may become an essential tool in the arsenal of modern medicine, helping us to diagnose and treat diseases more effectively and efficiently.