rhinovirus
n. [病毒] 鼻病毒
2026-03-22 06:44 浏览次数 19
n. [病毒] 鼻病毒
rhinovirus type鼻病毒Ⅱ型
Bovine rhinovirus牛鼻病毒
rhinovirus s鼻病毒
Human rhinovirus人鼻病毒
rhinovirus vaccine[病毒]
Equine rhinovirus马鼻病毒组
Rhinovirus chemotherapy的翻译是鼻病毒化疗
rhinovirus infection鼻病毒感染
in a freezer in marseille, france, sits a virus that is by far the biggest virus known to science; it is huge, around thirty times bigger than the rhinovirus that gives you a common cold.
在法国马赛的一个冷藏库里,栖息着一种病毒,出奇的大,是科学上已知的最大病毒;说它巨大,大约比令你患感冒的鼻病毒大三十倍。
they detected rhinovirus on 35 percent of a total of 150 surfaces tested in the hotel rooms.
在测试的旅馆中150件物品表面有35%检测到鼻病毒。
the subjects then made a list of all of the objects they had touched, and hendley's group swabbed 10 sites on the list and tested for rhinovirus rna.
研究对象然后列出了他们所接触过的所有物品清单,hendley的研究组擦拭了清单上的10个物品的表面,并进行鼻病毒rna测试。
the facts the rhinovirus that causes most cases of the common cold comes in many strains — at least 99, to be exact.
引发大多数感冒的鼻病毒,通常以诸多菌株(至少99种)的形式出现,这个事实是成立的。
the volunteers were given nasal drops containing one of two types of rhinovirus which causes the common cold .
在这些人的鼻中滴入会引发普通感冒的两种鼻病毒中的一种。
that family tree shows that some regions of the rhinovirus genome are changing all the time but that others never change.
从家系树上可以看出,鼻病毒基因组的某些区域一直在改变而其他区域则不变。
industry hurdles aside, perhaps the biggest reason the common cold has long defied treatment is that the rhinovirus has so many strains and presents a moving target for any drug or vaccine.
抛开工业方面的障碍,可能感冒难治的最大理由是,鼻病毒有很多类型而且对任何药物或疫苗都呈现出移动靶标。
the fact that researchers have sequenced the genomes of all 99 strains of the human rhinovirus is cold comfort for my raw nose.
研究人员已经对所有99种已知鼻病毒的基因组完成了排序。不过这个事实并不能对我发痛的鼻子带来什么帮助。
they then created a rhinovirus family tree by comparing the sequences, as well as various physical features of each virus.
他们接着通过比较基因序列以及每一种病毒的不同物理特征而制作了一个鼻病毒的系谱图。
rhinovirus is one of the common cold virus, about 75% of the common cold caused by it.
鼻病毒是普通感冒病毒之一,约75%的普通感冒由它引起。
a defense against rhinoviruses might nonetheless succeed by exploiting hidden similarities among the rhinovirus strains.
虽然如此,通过利用各种鼻病毒之间隐藏着的共同点,针对鼻病毒的某种防御机制仍可获得成功。
dr. liggett said he believed that one such target lies at the very beginning of the rhinovirus genome, where its genetic material is folded into a clover-leaf shape.
liggett说他相信这样的靶点位于鼻病毒基因组的起始处,在那里它的遗传物质被折叠成三叶草的形状。
in addition to helping focus drug research, these findings should lay the groundwork for researchers to investigate rhinovirus evolution, diversity and drug-resistance.
除了能够帮助人们研发药物之外,这些发现还将为研究人员研究鼻病毒的演变、多样性和耐药性打下基层。
all strains of rhinovirus have much the same sequence of units at this region and all could be vulnerable to the same drug.
其序列单位可被感染细胞的蛋白质翻译结构迅速读取。所有的鼻病毒在此区域都有相同的序列也可以被同一种药攻击。
however, systematic screening for rhinovirus could change perceptions and lead us to revisit this dogma.
然而,系统筛查鼻病毒可以改变我们的认识并重新反思这个说法。
but they found a similar drug being tested against a rhinovirus -- another cause of the common cold.
但是他们又发现了一种类似的用于对抗鼻病毒的药物,这种病毒是诱发普通感冒的另一个原因。
rhinovirus infections are also a major cause of acute attacks of asthma and copd and, therefore, exert a huge impact on health care costs.
鼻病毒感染也是引起哮喘和copd急性发作的主要原因,因此,对医疗体系造成巨大影响。
objective application of human rhinovirus 14 3c protease as a tool-enzyme for more stringent sequence specificity and efficient cleavage at low temperature.
目的人鼻病毒3c蛋白酶具有酶切物异性强且在低温下仍保持较强酶活性的特点而被用作工具酶。
however, further analysis revealed that only human rhinovirus (hrv) infection was significantly associated with asthma attacks, at an or of 2.38.
然而进一步研究显示,只有人鼻病毒(hrv)感染与哮喘发作明显相关,or为2.38。