Disease Detectives

[Music]

since the beginning of medicine

scientists and doctors have been playing

detective with new diseases

they have to find the who who’s getting

sick the what

what’s making them sick the how how is

it spreading

and the where where did it originate

if you think about it this is dangerous

work along comes a new disease that no

one knows anything about

no one knows what it does how it spreads

or where it came from

fortunately over the years scientists

have developed methods and tactics

to get to the bottom of any new disease

outbreak

this won’t mean an immediate cure for

the disease but it will help identify it

and track it

even though there are several more i’ll

just be focusing on two

genetic analysis and disease modeling

let’s start with genetic analysis

viruses contain deoxyribonucleic acid

also known as dna and ribonucleic acid

also known as rna giving them the power

to evolve

as the viruses and bacteria grow the

molecular material

which is the basic material inside cells

changes

though they don’t live for very long

viruses and bacterias are able to

recreate themselves

in huge quantities this evolutionary

change

which can be very fast is called the

molecular clock

when a virus travels to a new victim it

starts a new branch of that virus’s

genetic tree

then the clock will tick until the

victim is killed by the infection

or until the victim’s body manages to

defeat it

as a part of genetic analysis scientists

observe the genetic sequence

of of the virus in the victim’s body and

compare it

to the sequence of the same virus in

other people who might also be

experiencing

sickness researchers can also assume

that viruses with similar sequences come

from the same place

around the same time giving clues as to

how

a disease traveled from person to person

an example of a disease that genetic

analysis has been

used on is aids or hiv

there’s still no cure but with this

method a medicate

a medication was created to help control

the symptoms

more recently during the cove 19

pandemic

scientists using genetic analysis have

shared their sequencing

of thousands of coronavirus genomes this

is worldwide data

that helps scientists trace the origin

of new outbreaks

identify where and when the disease was

transmitted

and identify mutations for example

there’s growing evidence that of over 13

000 mutations

one of them in particular 614g

has made the virus more infectious

genetic sequencing has also enabled

rapid vaccine development

by helping researchers figure out which

part of the virus is best to target

so now you know about genetic analysis

and its relation to cova 19.

the second method is disease modeling

a disease model is something that helps

track and figure out how a disease will

spread

they’re made up of all the facts and

data that scientists have accumulated

about the disease

even if there’s very little information

to start with scientists can look at

similar diseases and think

what if this one will spread similarly

to that one

however if the data put into the model

isn’t of good quality

then the quality of the information

obtained from the same model won’t be

good either

so a disease model can help analyze a

disease outbreak

and help figure out the pattern of a

spread in a population

modeling can also be used to clarify

complex biological systems

for example scientists have used disease

models

to help develop new and more precise

treatments for many types of cancer

of course this method is also being used

now during the coronavirus pandemic

disease modeling is being used by local

and federal governments

to help organize their resources

the data informs decisions about social

distancing measures

and other needs such as a number of

hospital beds

so it’s greatly helping the situation

now you know a little bit more about

tracking diseases

i hope this was helpful and that you

enjoyed the talk thank you so much for

listening

[音乐]

自医学诞生以来,

科学家和医生一直在

研究新疾病,

他们必须找出谁

生病了,是

什么让他们生病了,

它是如何传播的,

以及它起源于哪里,

如果你想一想 这是一项危险的

工作伴随而来的是一种新的疾病,没有

人知道

任何人都不知道它是如何传播

的,

幸运的是多年来它来自哪里,科学家们

已经开发出方法和策略

来查明任何新疾病

爆发的根源

这并不意味着可以立即治愈

该疾病,但它将有助于识别

并跟踪它,

即使还有更多我将

只关注两个

遗传分析和疾病建模

让我们从遗传分析开始

含有脱氧核糖核酸的病毒

也已知 作为 dna 和核糖核酸,

也称为 rna,赋予它们

随着病毒和细菌生长而进化的能力,

这是基础的分子材料 c 细胞内的物质会

发生变化,

尽管它们不会存活很长时间

病毒和细菌能够

大量自我重建

这种可以非常快速的进化变化被称为

分子钟

当病毒传播到新的受害者身上时,它会

开始一个新的

作为遗传分析的一部分,科学家

观察

受害者体内病毒的基因序列并

进行比较,直到受害者被感染杀死或受害者的身体设法击败它

研究人员还可以

假设具有相似序列的病毒

大约在同一时间来自同一个地方,从而

为疾病如何在人与人之间

传播提供线索

已经

使用基因分析的疾病是艾滋病或艾滋病毒

,仍然无法治愈,但使用这种

方法可以

创造药物 ed 以帮助控制

最近在海湾 19

大流行期间的症状

使用遗传分析的科学家

分享了他们

对数千个冠状病毒基因组的测序 这

是全球数据

,可帮助科学家追踪

新爆发的起源

确定疾病的

传播地点

和时间并识别突变 例如

,越来越多的证据表明,在超过 13

000 个突变

中,其中一个突变尤其是

614g 使病毒更具传染性

基因测序还

通过帮助研究人员确定

病毒的哪个部分最适合靶向,

从而实现了快速疫苗的开发,所以现在你知道了 基因分析

及其与 cova 的关系

  1. 第二种方法是疾病

建模 疾病模型有助于

跟踪和弄清楚疾病将如何

传播,

它们由科学家积累的有关疾病的所有事实和

数据组成,

甚至 如果

开始的信息很少,科学家可以看看

类似的 疾病并

想一想如果这个疾病的传播方式

与那个疾病相似,

但是如果放入模型的数据

质量不佳,

那么

从同一模型获得的信息的质量也不会

很好,

因此疾病模型可以提供帮助 分析

疾病爆发

并帮助找出人口模型中的传播模式

也可用于阐明

复杂的生物系统

,例如,科学家已经使用疾病

模型

来帮助开发针对多种癌症的新的和更精确的

治疗

方法当然这种方法 现在也在

冠状病毒大流行期间

被使用 地方和联邦政府正在使用疾病模型

来帮助组织他们的

资源 数据为有关社会疏远措施

和其他需求(例如医院病床数量)的决策

提供信息,

因此它对您现在的情况有很大帮助

对追踪疾病有更多了解,

我希望这对您有所帮助,并且您

喜欢这次谈话,非常感谢您 r