dopa
简明释义
n. 多巴;二羟基苯丙氨酸
英英释义
Dopa is a chemical compound that serves as a precursor to neurotransmitters such as dopamine, norepinephrine, and epinephrine. | 多巴是一种化学化合物,是神经递质如多巴胺、去甲肾上腺素和肾上腺素的前体。 |
单词用法
左旋多巴 | |
多巴脱羧酶 | |
多巴反应性肌张力障碍 | |
多巴治疗 | |
多巴缺乏 | |
多巴类似物 |
同义词
多巴胺 | Dopamine is a neurotransmitter that plays a key role in the brain's reward system. | 多巴胺是一种神经递质,在大脑的奖励系统中发挥关键作用。 | |
左旋多巴 | L-DOPA is commonly used in the treatment of Parkinson's disease. | 左旋多巴通常用于治疗帕金森病。 |
反义词
解药 | The antidote was administered immediately after the poisoning. | 在中毒后立即给予了解药。 | |
抑制剂 | 该抑制剂有效降低了酶的活性。 |
例句
1.Conclusion: We can produce a large quantity of RPE cells for in vitro experiments and DOPA staining proves effective in identification of RPE cells.
结论:培养的大量细胞可用于RPE的体外实验研究,多巴染色是鉴定rpe细胞一种较好的方法。
2.Often patients are given prescriptions for levodopa, or L-dopa, which is converted into dopamine by enzymes in the brain.
经常患者拿着左旋多巴的处方,左旋多巴在脑细胞中在酶的作用可以转变为多巴胺。
3.L-dopa, when complexed with diverse metal ions , shows different colors.
用左旋多巴与多种金属离子生成络合物,产生各自不同的颜色;
4.The affinity of PO with catechol is near to that with L-DOPA, both are higher than pyrogallol.
钉螺酚氧化酶对邻苯二酚的亲和力近似于L -多巴,两者均高于对焦性没食子酸的亲和力。
5.People with Parkinson's or taking L-dopa should not use methyl donors like TMG without a physician's specific approval and supervision.
患有帕金森或左旋多巴的人,不应使用甲基供体像甜菜碱,在没有医生的具体审批和监督的情况下。
6.Objective To attach importance to the nursing of dopa- responsive dystonia. Methods 7 cases from 5 families were treated and nursed with Dopa- therapy.
笔者通过对来自5个家庭7例多巴反应性肌张力障碍患者的护理。
7.L-dopa, the most popular medication for Parkinson's disease, increases the frequency and vividness of dreams, whereas antipsychotic drugs that block dopamine reduce dreaming.
治疗帕金森综合症的常用药“L - Dopa”会增加做梦的次数和活性,而抑制多巴胺的安定药会减少做梦。
8.Thus A2A receptors in forebrain neurons may contribute to the behavioral sensitization to L-DOPA, perhaps indicating that A2A antagonists could reduce the risk of LID.
额叶神经细胞的阿糖腺苷a2a受体可能导致对左旋多巴的行为的敏感性,也许表明阿糖腺苷a2a受体拮抗剂能够降低LID的风险。
9.The doctor prescribed a medication that increases the levels of dopa 多巴胺 in the brain.
医生开了一种药物,可以增加大脑中dopa 多巴胺的水平。
10.Researchers found that low dopa 多巴胺 levels are linked to depression.
研究人员发现,低dopa 多巴胺水平与抑郁症有关。
11.Certain foods can help boost your body's natural dopa 多巴胺 production.
某些食物可以帮助提高你体内自然产生的dopa 多巴胺水平。
12.Parkinson's disease is associated with a deficiency of dopa 多巴胺 in the brain.
帕金森病与大脑中dopa 多巴胺的缺乏有关。
13.Exercise can increase dopa 多巴胺 levels, improving mood and motivation.
运动可以提高dopa 多巴胺水平,从而改善情绪和动力。
作文
Dopa, a term often associated with the neurotransmitter dopamine, plays a crucial role in our understanding of brain chemistry and its effects on human behavior. In the realm of neuroscience, dopa (多巴胺) is recognized for its significant influence on motivation, pleasure, and reward. It is a precursor to dopamine, meaning that it is converted into this vital neurotransmitter within the body. Understanding dopa is essential for grasping how our brains function and how various substances can alter our mental states. The discovery of dopa has led to numerous advancements in medical science, particularly in the treatment of neurological disorders such as Parkinson's disease. Patients suffering from this condition often experience a deficiency of dopamine, which leads to symptoms like tremors, rigidity, and bradykinesia. By administering dopa (多巴胺), doctors can help restore the balance of neurotransmitters in the brain, alleviating some of these debilitating symptoms. This has not only improved the quality of life for many patients but has also paved the way for further research into similar treatments for other disorders. Moreover, dopa is also a topic of interest in psychology, as it is linked to the brain's reward system. When we engage in activities that bring us joy or satisfaction, our brains release dopamine, reinforcing those behaviors. This mechanism can explain why we often seek out pleasurable experiences, whether it be through social interactions, hobbies, or even substance use. The relationship between dopa (多巴胺) and our choices highlights the complexity of human motivation and the impact of biological processes on our actions. In recent years, the study of dopa has expanded into the field of addiction research. Substances like drugs and alcohol can artificially elevate dopamine levels, leading to a cycle of dependency. Understanding the role of dopa in addiction can provide insights into how to develop effective prevention and treatment strategies. For instance, interventions that target the dopamine system may help individuals struggling with substance use disorders regain control over their lives. Furthermore, the implications of dopa extend beyond clinical settings. In everyday life, our understanding of this neurotransmitter can inform how we approach motivation and reward in various contexts. For example, educators can utilize knowledge about dopa to create more engaging learning environments that stimulate students' interest and enthusiasm. Similarly, employers can design workplaces that foster motivation by recognizing and rewarding employees' achievements, tapping into the natural processes governed by dopa (多巴胺). In conclusion, dopa is not just a scientific term; it embodies the intricate relationship between our biology and behavior. From its critical role in treating neurological disorders to its influence on motivation and addiction, understanding dopa (多巴胺) opens up a world of possibilities for improving mental health and enhancing our daily lives. As research continues to evolve, the significance of dopa will undoubtedly remain at the forefront of discussions surrounding brain health and human behavior, making it a vital concept for both scientists and the general public alike.
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