ABOUT THE SPEAKER
David Camarillo - Bioengineer
David Camarillo's research focuses on understanding and preventing traumatic brain injury.

Why you should listen

Dr. David Camarillo, Ph.D., is Assistant Professor of Bioengineering and (by courtesy) Mechanical Engineering at Stanford University. He holds a B.S.E in Mechanical and Aerospace Engineering from Princeton University (2001), a Ph.D. in Mechanical Engineering from Stanford University (2008) and completed his postdoctoral research fellowship in Biophysics at the University of California, San Francisco in 2011.

Camarillo worked in the surgical robotics industry at Intuitive Surgical and Hansen Medical, before launching his laboratory at Stanford in 2012. His current research focuses on designing force measurement devices for multiple clinical and scientific applications including embryo development, brain trauma and cardiac therapy.

Camarillo was recently awarded the Hellman Fellowship for his work in robot-assisted reproduction as well as the Office of Naval Research Young Investigator Program award for his research in brain biomechanics.

More profile about the speaker
David Camarillo | Speaker | TED.com
TEDxStanford

David Camarillo: Why helmets don't prevent concussions -- and what might

David Camarillo: 为什么头盔不能预防脑震荡?什么才可以呢?

Filmed:
1,515,171 views

什么是脑震荡?脑震荡或许与你想象中的截然不同。David Camarillo,生物工程学家、前橄榄球运动员,带来了这个尖端研究领域的演讲,他会向我们展示脑震荡中到底发生了什么,同时解释为什么标准运动头盔无法预防脑震荡,未来脑震荡预防又会向哪个方向发展。
- Bioengineer
David Camarillo's research focuses on understanding and preventing traumatic brain injury. Full bio

Double-click the English transcript below to play the video.

00:12
The word concussion震动 evokes唤起 a fear恐惧
these days more so than it ever has,
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“脑震荡”一词从未引起过如此之大的恐慌
00:17
and I know this personally亲自.
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我自己也患过脑震荡
00:19
I played发挥 10 years年份 of football足球,
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我曾打过十年橄榄球
00:22
was struck来袭 in the head thousands数千 of times.
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数千次被球打中脑袋
00:24
And I have to tell you, though虽然,
what was much worse更差 than that
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但我可以告诉你
自行车事故中我遭受的脑震荡要更为严重
00:28
was a pair of bike自行车 accidents事故 I had
where I suffered遭遇 concussions脑震荡,
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00:33
and I'm still dealing交易 with the effects效果
of the most recent最近 one
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现如今当我站在你面前时
00:36
today今天 as I stand in front面前 of you.
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我还在从最近的那次脑震荡中恢复
00:39
There is a fear恐惧 around concussion震动
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对脑震荡的恐惧
00:42
that does have some evidence证据 behind背后 it.
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有些是有道理的
00:45
There is information信息
that a repeated重复 history历史 of concussion震动
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有证据表明
反复多次脑震荡
00:48
can lead to early dementia痴呆,
such这样 as Alzheimer's老年痴呆症,
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会导致早期痴呆 比如阿耳茨海默氏病
00:52
and chronic慢性 traumatic创伤 encephalopathy脑病.
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也会导致慢性的创伤性脑病
00:54
That was the subject学科
of the Will Smith工匠 movie电影 "Concussion震动."
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这是威尔•史密斯主演的电影《震荡效应》的主题
00:58
And so everybody每个人 is caught抓住 up in football足球
and what they see in the military军事,
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几乎每个人在橄榄球比赛中 或是在部队里
都会遭受脑震荡
01:02
but you may可能 not know
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但你可能不知道
01:03
that bike自行车 riding骑术 is the leading领导 cause原因
of concussion震动 for kids孩子,
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对孩子们而言 骑自行车才是脑震荡的主要成因
01:07
sports-related体育相关 concussion震动, that is.
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即运动相关脑震荡
01:11
And so another另一个 thing
that I should tell you
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我还想告诉在座各位一件事
01:13
that you may可能 not know
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你们或许也不知道
01:14
is that the helmets头盔 that are worn磨损的
in bicycling骑自行车 and football足球
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诸如自行车和橄榄球等运动
01:17
and many许多 activities活动,
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所规定佩戴的头盔
01:19
they're not designed设计 or tested测试
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并不是为了防止或减轻脑震荡而设计的
01:22
for how well they can protect保护
your children孩子 against反对 concussion震动.
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01:26
They're in fact事实 designed设计 and tested测试
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事实上
此类头盔的目的在于保护头骨 预防头骨骨折
01:27
for their ability能力 to protect保护
against反对 skull头骨 fracture断裂.
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01:31
And so I get this question
all the time from parents父母,
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家长们总是问我这样一个问题
01:37
and they ask me,
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他们问我
01:39
"Would you let your own拥有 child儿童
play football足球?"
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“你会让你自己的小孩儿打橄榄球吗?”
01:41
Or, "Should I let my child儿童 play soccer足球?"
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或者“我应该让我小孩儿踢足球吗?”
01:44
And I think that as a field领域,
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我认为从一个学科领域的角度来讲
01:47
we're a long way from giving an answer回答
with any kind of confidence置信度 there.
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我们远没有信心在此回答这样一个问题
01:53
So I look at that question
from a bit of a different不同 lens镜片,
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所以我从另外一个角度思考了这个问题
01:57
and I want to know,
how can we prevent避免 concussion震动?
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我想知道 我们如何预防脑震荡?
02:00
Is that even possible可能?
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这能做到吗?
02:02
And most experts专家 think that it's not,
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绝大多数专家认为不能
02:06
but the work that we're doing in my lab实验室
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但我的实验室目前所从事的研究
02:08
is starting开始 to reveal揭示 more
of the details细节 around concussion震动
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将揭示脑震荡的更多细节
02:13
so that we can have
a better understanding理解.
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从而我们会对脑震荡有更深刻的认知
02:15
The reason原因 we're able能够
to prevent避免 skull头骨 fracture断裂 with helmets头盔
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戴头盔能预防颅骨骨折的原因非常简单
02:18
is because it's pretty漂亮 simple简单.
We know how it works作品.
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我们知道这一原理
02:21
Concussion震动 has been
much more of a mystery神秘.
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而脑震荡至今仍是未解之谜
02:24
So to give you a sense of what might威力
be happening事件 in a concussion震动,
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为了让在座各位对脑震荡有更直观的了解
02:29
I want to show显示 you the video视频 here
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我要放一段影片
02:31
that you see when you type类型 into Google谷歌,
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你可以在谷歌搜索如下字样
02:33
"What is a concussion震动?"
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What is a concussion?
什么是脑震荡?
02:35
The CDCCDC website网站 comes up,
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然后打开CDC(美国疾病控制与预防中心)网页
02:36
and this video视频 essentially实质上
tells告诉 the whole整个 story故事.
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网页上的这段视频就会讲述脑震荡的成因
02:40
What you see is the head moves移动 forward前锋,
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你可以看到:头部向前移动
02:42
the brain lags滞后 behind背后,
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脑组织移动延后
02:44
then the brain catches渔获 up
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接着脑组织跟了上来也向前移
02:46
and smashes摔破 into the skull头骨.
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撞向颅骨
02:48
It rebounds篮板 off the skull头骨
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被颅骨弹回
02:50
and then proceeds收益 to run
into the other side of the skull头骨.
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然后向另一边颅骨撞去
02:55
And what you'll你会 notice注意 is highlighted突出
in this video视频 from the CDCCDC,
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CDC影片中高亮的那部分
02:58
which哪一个 I'll note注意 was funded资助 by the NFLNFL,
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顺带说一下 这一影片由
NFL(美国国家橄榄球联盟)资助
03:01
is that the outer surface表面 of the brain,
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是脑组织的外部边缘
03:04
where it was to have
smashed被砸 into the skull头骨,
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这部分脑组织之前曾撞向颅骨
03:07
looks容貌 like it's been damaged破损 or injured受伤,
so it's on the outer surface表面 of the brain.
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看起来它受到了损伤
所以高亮部分是在脑组织的外部边缘
03:11
And what I'd like to do with this video视频
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我放这段影片
03:13
is to tell you that there are
some aspects方面 that are probably大概 right,
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是为了告诉各位
这段影片的部分内容
03:17
indicative指示 of what the scientists科学家们
think happens发生 with concussion震动,
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或许确实正确地表述了科学家对脑震荡的理解
03:20
but there's probably大概 more
that's wrong错误 with this video视频.
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但这段影片更多地方是错误的
03:23
So one thing that I do agree同意 with,
and I think most experts专家 would,
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其中一点我个人是同意的
我相信绝大多数专家也同意
03:26
is that the brain
does have these dynamics动力学.
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那就是脑部确实有这样的动态
03:28
It does lag落后 behind背后 the skull头骨
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它的运动迟于颅骨
03:30
and then catch抓住 up and move移动
back and forth向前 and oscillate摆动.
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接着逐渐追赶上 并向前向后振动
03:33
That we think is true真正.
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这一点上我们认为它是正确的
03:35
However然而, the amount of motion运动
you see in the brain in this video视频
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然而 视频中所示的脑部的运动大小
03:39
is probably大概 not right at all.
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可能并不准确
03:40
There's very little room房间
in the cranial vault拱顶,
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颅顶的空间极小
03:44
only a few少数 millimeters毫米,
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只有几微米
03:45
and it's filled填充 entirely完全
with cerebral颅内 spinal fluid流体,
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同时这些空间填满了脑脊液
03:49
which哪一个 acts行为 as a protective保护的 layer.
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这些脑脊液对脑部来说是一个保护层
03:51
And so the brain as a whole整个 probably大概
moves移动 very little inside the skull头骨.
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所以说 整体来看 脑部在颅骨内的移动极为微小
03:56
The other problem问题 with this video视频
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视频中还有另外一个问题
03:58
is that the brain is shown显示
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视频中所示的脑部
04:00
as a kind of rigid死板 whole整个
as it moves移动 around,
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在它移动时像是一个坚硬体
04:03
and that's not true真正 either.
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这也是错的
04:05
Your brain is one of the softest柔软的
substances物质 in your body身体,
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人类的大脑是人体上最柔软的物质之一
04:09
and you can think of it
kind of like jello果冻.
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你可以把它想象成果冻
04:11
So as your head is moving移动 back and forth向前,
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所以当头部前后晃动时
04:13
your brain is twisting盘曲
and turning车削 and contorting被扭曲,
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脑部在旋转、扭曲
04:16
and the tissue组织 is getting得到 stretched拉伸.
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部分组织会被拉抻
04:18
And so most experts专家, I think, would agree同意
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我认为绝大多数专家都会同意这样一个观点
04:21
that concussion震动 is not likely容易
to be something that's happening事件
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脑震荡可能不是发生在
04:24
on this outer surface表面 of the brain,
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脑部的外部边缘
04:26
but rather it's something
that's much deeper更深
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而是发生在脑部的深处
04:28
towards the center中央 of the brain.
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接近脑部中央的位置
04:31
Now, the way that we're
approaching接近 this problem问题
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当下 我们通过这样一个设备研究这一问题
04:33
to try to understand理解
the mechanisms机制 of concussion震动
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从而试图理解脑震荡产生机制
04:36
and to figure数字 out if we can prevent避免 it
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并确定我们是否可以防治脑震荡
04:38
is we are using运用 a device设备 like this.
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我们所采用的是这样一个设备
04:40
It's a mouthguard牙套.
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它是个牙套
它里面包含了
04:42
It has sensors传感器 in it
that are essentially实质上 the same相同
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和手机内置传感器类似的
04:45
that are in your cell细胞 phone电话:
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04:47
accelerometers加速度计, gyroscopes陀螺仪,
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加速计和陀螺仪
04:49
and when someone有人 is struck来袭 in the head,
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当一个人被击中头部时
04:51
it can tell you how their head moved移动
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它可以以每秒钟一千次的速度
04:54
at a thousand samples样本 per second第二.
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记录下头部的移动方式
04:58
The principle原理 behind背后
the mouthguard牙套 is this:
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这个牙套的原理在于
05:01
it fits适合 onto your teeth.
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它固定在牙齿上
05:02
Your teeth are one of the hardest最难
substances物质 in your body身体.
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而牙齿是人体内最坚硬的物质之一
05:05
So it rigidly严格 couples情侣 to your skull头骨
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所以相当于它直接连接在颅骨上
05:07
and gives you the most precise精确
possible可能 measurement测量
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从而可以最为精确地测算出
05:10
of how the skull头骨 moves移动.
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颅骨的运动模式
05:12
People have tried试着
other approaches方法, with helmets头盔.
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研究者们也曾试验过其他方法 比如头盔
05:14
We've我们已经 looked看着 at other sensors传感器
that go on your skin皮肤,
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我们也曾实验过 将传感器贴在皮肤上
05:18
and they all simply只是 move移动 around too much,
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但是它们移动得太多了
05:20
and so we found发现 that this
is the only reliable可靠 way
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所以我们发现这是可以得到精确测算的
05:23
to take a good measurement测量.
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唯一可信方式
05:27
So now that we've我们已经 got this device设备,
we can go beyond studying研究 cadavers尸体,
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现如今我们有了这一设备
就可以不仅限于研究尸体了
05:31
because you can only
learn学习 so much about concussion震动
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因为在尸体身上对脑震荡的研究
05:34
from studying研究 a cadaver尸体,
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已经近乎到达极限
05:35
and we want to learn学习
and study研究 live生活 humans人类.
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我们想要进行活体实验
05:38
So where can we find
a group of willing愿意 volunteers志愿者
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在哪里才可以找到一组
05:42
to go out and smash粉碎 their heads
into each other on a regular定期 basis基础
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愿意经常出去 把头乱撞
05:46
and sustain支持 concussion震动?
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从而患上脑震荡的志愿者呢?
05:47
Well, I was one of them,
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嗯 我就是其中一员
05:49
and it's your local本地 friendly友善
Stanford斯坦福 football足球 team球队.
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他们是你们友好的斯坦福橄榄球队
05:53
So this is our laboratory实验室,
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所以这就是我们的实验室
05:55
and I want to show显示 you
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我将向各位展示
05:57
the first concussion震动
we measured测量 with this device设备.
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我们通过这一设备测量到的第一例脑震荡
06:00
One of the things that I should point out
is the device设备 has this gyroscope陀螺仪 in it,
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我需要指出一点:该设备中含有陀螺仪
06:04
and that allows允许 you
to measure测量 the rotation回转 of the head.
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它可以测出头部的旋转
06:07
Most experts专家 think
that that's the critical危急 factor因子
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而绝大多数专家认为
头部的旋转或许是解释脑震荡成因的关键因素
06:09
that might威力 start开始 to tell us
what is happening事件 in concussion震动.
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06:12
So please watch this video视频.
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请看这段视频
06:15
Announcer播音员: Cougars美洲狮 bring带来
extra额外 people late晚了, but Luck运气 has time,
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解说员:Cougars带了大批人马但是已经晚了
Luck现在有机会了
06:18
and Winslow温斯洛 is crushed.
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Winslow被撞了
06:22
I hope希望 he's all right.
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希望他还好
06:23
(Audience听众 roars怒吼)
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(观众吼叫)
06:30
Top最佳 of your screen屏幕,
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屏幕上方
06:32
you'll你会 see him come on
just this little post岗位 route路线,
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你可以看到他选择了这一短程球门柱路线
06:34
get separation分割, safety安全.
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被分开 安全了
06:40
Here it comes at you in real真实 speed速度.
You'll你会 hear this.
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现在您看到的是常速回放
你会听到
06:44
The hit击中 delivered交付 by --
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由--的这一击
06:47
David大卫 Camarillo卡马里奥: Sorry, three times
is probably大概 a little excessive过多 there.
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抱歉 放了三次可能有点儿多
但你应该会看明白
06:51
But you get the idea理念.
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06:52
So when you look at just the film电影 here,
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当你看这段影片时
06:55
pretty漂亮 much the only thing you can see
is he got hit击中 really hard and he was hurt伤害.
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你可能只会看出 他被击打得很严重 他受伤了
但当我们从他戴的牙套中
06:59
But when we extract提取 the data数据
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07:00
out of the mouthguard牙套 that he was wearing穿着,
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提取到数据后
我们可以看到更多细节、更多信息
07:02
we can see much more detail详情,
much richer更丰富 information信息.
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07:05
And one of the things that we noticed注意到 here
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我们可以注意到
07:08
is that he was struck来袭
in the lower降低 left side of his face面对 mask面具.
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他的左下侧面罩被击中
07:12
And so that did something first
that was a little counterintuitive有悖常理.
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所以有点违反直觉的是
07:15
His head did not move移动 to the right.
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他的头并没有向右移
07:17
In fact事实, it rotated旋转 first to the left.
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相反 它首先向左旋转
07:19
Then as the neck颈部 began开始 to compress压缩,
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接着颈部开始弯曲
07:21
the force of the blow打击 caused造成 it
to whip鞭子 back to the right.
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最后这一下击打的力度才让头部向右移动
07:25
So this left-right左右 motion运动
was sort分类 of a whiplash-type挥鞭型 phenomenon现象,
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这样的左右移动是鞭打现象的一种
07:30
and we think that is probably大概
what led to the brain injury.
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我们认为也许是这样的移动
造成了脑损伤
07:35
Now, this device设备 is only limited有限 in such这样
that it can measure测量 the skull头骨 motion运动,
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当下 这个设备仅能测量出颅骨的运动
07:39
but what we really want to know
is what's happening事件 inside of the brain.
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但我们真正想知道的是
脑部内部的情形
所以我们与瑞典的Svein Kleiven团队合作
07:42
So we collaborate合作 with
Svein斯韦恩 Kleiven'sKleiven的 group in Sweden瑞典.
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07:46
They've他们已经 developed发达 a finite有限 element元件
model模型 of the brain.
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他们研发出了一种脑部有限元素模型
07:49
And so this is a simulation模拟
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这是一个模拟图
07:51
using运用 the data数据 from our mouthguard牙套
from the injury I just showed显示 you,
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模拟所用数据是刚才影片中那次受伤后
我们从牙套中得到的数据
07:55
and what you see is the brain --
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你会看到
07:57
this is a cross-section横截面 right in the front面前
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如我之前所述
07:59
of the brain twisting盘曲
and contorting被扭曲 as I mentioned提到.
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脑部正前方左右脑交界处发生旋转、扭曲
08:02
So you can see this doesn't
look a lot like the CDCCDC video视频.
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所以这和CDC视频中所描述的并不一致
08:05
Now, the colors颜色 that you're looking at
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这里不同颜色所代表的是
08:07
are how much the brain tissue组织
is being存在 stretched拉伸.
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脑组织被拉伸的程度
08:11
And so the red is 50 percent百分.
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红色代表百分之五十
08:13
That means手段 the brain has been stretched拉伸
to 50 percent百分 of its original原版的 length长度,
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这意味着红色区域的这部分脑组织
08:16
the tissue组织 in that particular特定 area.
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被拉长了原来长度的50%
值得注意的是红色点状区域的分布
08:18
And the main主要 thing I want to draw
your attention注意 to is this red spot.
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它们非常接近脑部中心
08:21
So the red spot is very close
to the center中央 of the brain,
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08:25
and relatively相对 speaking请讲,
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相对而言
08:26
you don't see a lot of colors颜色 like that
on the exterior外观 surface表面
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和CDC影片中所示不同
08:31
as the CDCCDC video视频 showed显示.
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脑组织外部红色区域较少
08:34
Now, to explain说明 a little more detail详情
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接下来 我会更详细地阐释
08:36
about how we think
concussion震动 might威力 be happening事件,
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我们对脑震荡成因的观点
08:40
one thing I should mention提到
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值得一提的是
08:41
is that we and others其他 have observed观察到的
that a concussion震动 is more likely容易
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我们和其他同行都观察到
08:44
when you're struck来袭 and your head
rotates旋转 in this direction方向.
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如果头部被击打 并像这样旋转
更容易造成脑震荡
08:48
This is more common共同
in sports体育 like football足球,
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橄榄球等运动中这种情况(前后晃动)更为常见
但这种(左右晃动)似乎更为危险
08:51
but this seems似乎 to be more dangerous危险.
So what might威力 be happening事件 there?
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所以这种情况中脑部发生了什么呢?
08:54
Well, one thing that you'll你会 notice注意
in the human人的 brain
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值得注意的是 人类大脑与其他动物的并不相同
08:57
that is different不同 than other animals动物
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主要差异在于
08:59
is we have these two very large lobes.
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我们有两块儿相当大的大脑额叶
09:01
We have the right brain
and the left brain.
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它们是我们的右脑和左脑
09:04
And the key thing
to notice注意 in this figure数字 here
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这幅图中值得注意的是
09:07
is that right down the center中央
of the right brain and the left brain
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左右脑中间的正下方
09:10
there's a large fissure裂缝
that goes deep into the brain.
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有一个深入脑组织的裂缝
09:13
And in that fissure裂缝,
what you can't see in this image图片,
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虽然这幅图中看不到
09:16
you'll你会 have to trust相信 me,
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但你得相信我
09:17
there is a fibrous纤维 sheet of tissue组织.
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裂缝中有一层纤维化组织
09:19
It's called the falx,
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它被称为脑镰
09:20
and it runs运行 from the front面前 of your head
all the way to the back of your head,
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脑镰连通头部的最前方和最后方
09:24
and it's quite相当 stiff僵硬.
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它很硬
09:25
And so what that allows允许 for
is when you're struck来袭
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当你头部被击中
09:28
and your head rotates旋转
in this left-right左右 direction方向,
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并左右旋转时
09:31
forces军队 can rapidly急速 transmit发送
right down to the center中央 of your brain.
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脑镰可以让受力迅速传至脑部中央
09:35
Now, what's there
at the bottom底部 of this fissure裂缝?
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所以 裂缝的底部有什么?
09:39
It's the wiring接线 of your brain,
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那里有脑部的“线路”
09:41
and in fact事实 this red bundle
here at the bottom底部 of that fissure裂缝
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事实上 裂缝底部红色的那一捆“线路”
09:46
is the single largest最大 fiber纤维 bundle
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是最大的单个纤维束
09:49
that is the wiring接线 that connects所连接
the right and left sides双方 of your brain.
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也就是它连接着你们的左右脑
09:53
It's called the corpus文集 callosum胼胝体.
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它被称为脑胼胝体
09:55
And we think that this might威力 be
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我们认为
09:57
one of the most common共同
mechanisms机制 of concussion震动,
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这也许是脑震荡最为常见的成因
10:01
and as the forces军队 move移动 down,
they strike罢工 the corpus文集 callosum胼胝体,
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击打力向下移动 撞机脑胼胝体
10:06
it causes原因 a dissociation离解
between之间 your right and your left brain
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导致左右脑之间的连接断裂
10:09
and could explain说明 some
of the symptoms症状 of concussion震动.
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这样就可以脑震荡的一些症状
10:12
This finding发现 is also consistent一贯
of what we've我们已经 seen看到
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此外 这项发现与我之前提过的
10:15
in this brain disease疾病 that I mentioned提到,
chronic慢性 traumatic创伤 encephalopathy脑病.
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脑震荡引起的诸如慢性创伤性脑病等
脑部疾病的症状相符
10:19
So this is an image图片 of a middle-aged中年
ex-professional前专业 football足球 player播放机,
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这是一个中年前橄榄球职业运动员的脑部图片
10:25
and the thing that I want to point out
is if you look at the corpus文集 callosum胼胝体,
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我想指出的是 如果你仔细观察脑胼胝体
10:29
and I'll page back here so you can see
the size尺寸 of a normal正常 corpus文集 callosum胼胝体
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我们看一下上一页的这张图片
这是一个正常脑胼胝体的大小
10:33
and the size尺寸 of the person here
who has chronic慢性 traumatic创伤 encephalopathy脑病,
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这是那位患有慢性创伤性脑病的脑胼胝体
10:37
it is greatly非常 atrophied萎缩.
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它大幅萎缩了
10:40
And the same相同 goes
for all of the space空间 in the ventricles心室.
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脑室的大小也有变化
10:43
These ventricles心室 are much larger.
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然而它们却变大很多
10:45
And so all of this tissue组织
near the center中央 of the brain
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这意味着脑部中央附近的组织细胞
10:47
has died死亡 off over time.
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已经逐渐凋亡
10:49
So what we're learning学习
is indeed确实 consistent一贯.
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这也印证了我们的研究发现
10:53
Now, there is some good news新闻 here,
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但是 这里我也要带来一些好消息
10:56
and I hope希望 to give you a sense
of hope希望 by the end结束 of this talk.
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希望能给在座各位一些希望
10:59
One of the things that we've我们已经 noticed注意到,
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我们注意到一些损伤机制的细节
11:01
specifically特别 about
this mechanism机制 of injury,
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11:04
is although虽然 there's a rapid快速 transmission传输
of the forces军队 down this fissure裂缝,
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虽然力在裂缝中的向下传导非常迅速
11:08
it still takes a defined定义 amount of time.
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它还是需要一定的时间的
11:11
And what we think is that if we can
slow the head down just enough足够
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所以我们设想 如果能够减缓头部的向下移动
11:15
so that the brain
does not lag落后 behind背后 the skull头骨
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那么脑部运动就不会落后于颅骨
11:19
but instead代替 it moves移动
in synchrony同步 with the skull头骨,
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而是与颅骨同步
11:22
then we might威力 be able能够 to prevent避免
this mechanism机制 of concussion震动.
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这样我们或许就能预防脑震荡
11:25
So how can we slow the head down?
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那我们该如何减缓头部的向下移动?
11:30
(Laughter笑声)
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(笑声)
11:32
A gigantic巨大 helmet头盔.
231
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可以佩戴巨型头盔
11:35
So with more space空间, you have more time,
232
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空间变大 缓冲时间就会变长
11:38
and this is a bit of a joke玩笑,
but some of you may可能 have seen看到 this.
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当然这是个玩笑 虽然你们有人可能见过这个
11:41
This is bubble泡沫 soccer足球,
and it's a real真实 sport运动.
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这是泡泡足球 而且它真是一项运动
11:43
In fact事实, I saw some young年轻 adults成年人
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事实上 前几天
11:45
playing播放 this sport运动 down the street
from my house the other day,
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我就在我家附近的街上看到一些年轻人在玩儿它
11:48
and as far as I know
there have been no reported报道 concussions脑震荡.
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据我所知 没有这种运动中发生脑震荡的报道
11:51
(Laughter笑声)
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(笑声)
11:52
But in all seriousness严肃,
this principle原理 does work,
239
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4416
但严肃地说 这一原则确实有效
11:56
but this has gone走了 too far.
240
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但它有点过头儿了
11:58
This isn't something that's practical实际的
for bike自行车 riding骑术 or playing播放 football足球.
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毕竟对于自行车和橄榄球运动来讲 这不大现实
12:03
And so we are collaborating合作
with a company公司 in Sweden瑞典 calledvdingvding.
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目前 我们正和瑞典Hövding公司合作 研发一个产品
12:07
Some of you may可能 have seen看到 their work,
243
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可能有人见过它
12:10
and they're using运用 the same相同 principle原理
of air空气 to give you some extra额外 space空间
244
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它实际上运用了同一项原则 利用空气提供更多空间
12:14
to prevent避免 concussion震动.
245
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从而预防脑震荡
12:17
Kids童装, don't try this at home please.
246
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小孩子请勿在家尝试
12:20
This stuntman替身演员 does not have a helmet头盔.
247
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这个特技演员没有戴头盔
12:24
He instead代替 has a neck颈部 collar,
248
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而是戴了一个颈环
12:26
and this neck颈部 collar has sensors传感器 in it,
249
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这个颈环内置传感器
12:29
the same相同 type类型 of sensors传感器
that are in our mouthguard牙套,
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这些传感器和我们的牙套中的传感器同属一个类型
12:32
and it detects检测 when he's likely容易
to have a fall秋季,
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当骑行者要摔倒时 它可以感测到
12:35
and there's an airbag安全气囊
that explodes爆炸 and triggers触发器,
252
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并且弹出安全气囊
12:38
the same相同 way that an airbag安全气囊
works作品 in your car汽车, essentially实质上.
253
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这一引发机制和汽车中的基本一致
12:42
And in the experiments实验
we've我们已经 doneDONE in my lab实验室 with their device设备,
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我的实验室对这一设备进行了一系列实验
12:44
we found发现 that it can greatly非常 reduce减少
the risk风险 of concussion震动 in some scenarios场景
255
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3736
我们发现与普通自行车头盔相比
12:48
compared相比 to a normal正常 bicycle自行车 helmet头盔.
256
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这一设备在一些情境下可以大幅降低脑震荡风险
12:50
So it's a pretty漂亮 exciting扣人心弦 development发展.
257
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这是个很令人激动的新发展
12:53
But in order订购 for us to actually其实 realize实现
the benefits好处 of technology技术
258
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4696
但为了真正利用这一可以预防脑震荡的技术
12:58
that can prevent避免 concussion震动,
259
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13:00
it needs需求 to meet遇到 regulations法规.
260
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它必须得符合监管的要求
13:03
That's a reality现实.
261
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这是个现实问题
13:05
And this device设备 is for sale拍卖 in Europe欧洲
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这一设备目前在欧洲出售
13:08
but is not for sale拍卖 in the US,
and probably大概 won't惯于 be any time soon不久.
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但目前却没有 很可能近期都不会 在美国出售
13:11
So I wanted to tell you why.
264
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我会告诉各位这是为什么
13:13
There are some good reasons原因 and then
there are some not so good reasons原因.
265
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有些原因很合理 而有些却不是
13:17
Bike自行车 helmets头盔 are federally联邦政府 regulated调控.
266
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自行车头盔由联邦政府监管
13:19
The Consumer消费者 Product产品 Safety安全 Commission佣金
has been given特定 jurisdiction管辖权
267
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美国消费品安全委员会有权
13:23
to approve批准 any bike自行车 helmet头盔 for sale拍卖,
268
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批准自行车头盔产品上市
13:25
and this is the test测试 they use.
269
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他们用这样的测试方法
13:26
This is back to what I was telling告诉 you
at the beginning开始 about skull头骨 fracture断裂.
270
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这又回到了我们开始时候谈到的颅骨骨折问题
而这正是这一测试的目的
13:30
That's what this test测试 is for.
271
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这一测试很重要
13:31
And that's an important重要 thing to do.
272
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它能挽救生命 但我得说 它不够全面
13:33
It can save保存 your life,
but it's not sufficient足够, I would say.
273
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13:36
So for example, one thing
this test测试 doesn't evaluate评估
274
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2736
比如说 这一测试没有评估
13:39
is it doesn't tell you
is that airbag安全气囊 going to trigger触发
275
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安全气囊能否在正确地时间地点弹出
13:41
at the right time and place地点,
and not trigger触发 when it doesn't need to?
276
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也没有评估它在不需要弹出的情况是否会弹出
同样 这一测试也不能判断
13:45
Similarly同样, it's not going to tell you
277
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13:47
is this helmet头盔 likely容易
to prevent避免 concussion震动 or not?
278
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这一头盔是否能够预防脑震荡
13:51
And if you look at football足球 helmets头盔,
which哪一个 aren't regulated调控,
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其实橄榄球头盔虽然未被联邦政府监管
13:55
they still have a very similar类似 test测试.
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但他们的测试基本相同
13:57
They're not regulated调控
by the government政府, anyway无论如何.
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虽然它们并未被政府监管
但如同绝大多数行业一样
有一个行业机构负责此事
13:59
They have an industry行业 body身体,
which哪一个 is the way most industries行业 work.
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但我得说 这一机构极力反对更新它们的标准
14:02
But this industry行业 body身体, I can tell you,
has been quite相当 resistant
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14:06
to updating更新 their standards标准.
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所以我们实验室不仅研究脑震荡机制
14:07
So in my lab实验室, we are working加工 on not only
the mechanism机制 of concussion震动,
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还想研究如何才能采用更好的测试标准
14:10
but we want to understand理解
how can we have better test测试 standards标准?
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14:14
And we hope希望 that the government政府
can use this type类型 of information信息
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我们希望政府可以利用这类信息鼓励创新
14:18
to encourage鼓励 innovation革新
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14:20
by letting出租 consumers消费者 know
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让消费者了解某一特定头盔的保护能力
14:22
how protected保护 are you with a given特定 helmet头盔.
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14:25
And I want to bring带来 this back finally最后
to the original原版的 question I asked,
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最后我想要回到最初我常被问到的那个问题
14:29
which哪一个 is, would I feel comfortable自在
letting出租 my child儿童 play football足球
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我会让我的小孩打橄榄球吗?
14:32
or ride a bicycle自行车?
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会让它骑自行车吗?
14:34
And this might威力 be just a result结果
of my own拥有 traumatic创伤 experience经验.
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因为我自己的痛苦经历
14:37
I'm much more nervous紧张
about my daughter女儿, Rose玫瑰, riding骑术 a bicycle自行车.
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当我女儿Rose骑自行车时 我会非常紧张
14:42
So she's a year and a half old,
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她现在才一岁半
14:44
and she's already已经, well, wants to anyway无论如何,
race种族 down the streets街道 of San Francisco弗朗西斯科.
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就已经很想冲下旧金山的街道
14:50
This is the bottom底部
of one of these streets街道.
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这张图片拍摄于某条街道的末尾
14:52
And so my personal个人 goal目标
is to -- and I believe this is possible可能 --
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所以我个人的目标是进一步研发这些技术
14:57
is to further进一步 develop发展 these technologies技术,
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而且我认为这一肯能行很大
14:59
and in fact事实, we're working加工
on something in my lab实验室 in particular特定
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事实上 我的实验室尤其致力于研究
15:02
that really makes品牌 optimal最佳 use
of the given特定 space空间 of a helmet头盔.
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头盔内部空间的最佳使用方式
15:05
And I am confident信心
that we will be able能够 to,
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我敢肯定我们能在我女儿可以骑两轮自行车前
15:08
before she's ready准备 to ride a two-wheeler两轮车,
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做到这一点
15:11
have something available可得到
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研发出能够真正减少脑震荡风险
且符合监管机构要求的头盔
15:12
that can in fact事实 really reduce减少
the risk风险 of concussion震动
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15:16
and comply执行 with regulatory监管 bodies身体.
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15:19
And so what I'd like to do --
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我希望再过几年
15:21
and I know that this is for some of you
of more immediate即时 nature性质,
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15:24
I've got a couple一对 years年份 here --
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15:26
is to be able能够 to tell parents父母
and grandparents祖父母 when I'm asked,
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我可以告诉孩子家长和祖父母
15:30
it is safe安全 and healthy健康 for your children孩子
to engage从事 in these activities活动.
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孩子们可以安全、健康地骑自行车、打橄榄球
15:34
And I'm very fortunate幸运
to have a wonderful精彩 team球队 at Stanford斯坦福
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非常有幸我能在斯坦福有这样一个
15:37
that's working加工 hard on this.
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致力于研究脑震荡的团队
15:39
So I hope希望 to come back in a few少数 years年份
with the final最后 story故事,
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我希望过几年我可以再来讲最后的故事
15:43
but for now I will tell you,
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但现在我可以各位
15:45
please don't just be afraid害怕
when you hear the word concussion震动.
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当你听到脑震荡一词时不要害怕
15:48
There is hope希望.
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这还有希望
15:49
Thank you.
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谢谢各位
15:51
(Applause掌声)
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(掌声)
Translated by Chen Wang
Reviewed by Diana Li

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ABOUT THE SPEAKER
David Camarillo - Bioengineer
David Camarillo's research focuses on understanding and preventing traumatic brain injury.

Why you should listen

Dr. David Camarillo, Ph.D., is Assistant Professor of Bioengineering and (by courtesy) Mechanical Engineering at Stanford University. He holds a B.S.E in Mechanical and Aerospace Engineering from Princeton University (2001), a Ph.D. in Mechanical Engineering from Stanford University (2008) and completed his postdoctoral research fellowship in Biophysics at the University of California, San Francisco in 2011.

Camarillo worked in the surgical robotics industry at Intuitive Surgical and Hansen Medical, before launching his laboratory at Stanford in 2012. His current research focuses on designing force measurement devices for multiple clinical and scientific applications including embryo development, brain trauma and cardiac therapy.

Camarillo was recently awarded the Hellman Fellowship for his work in robot-assisted reproduction as well as the Office of Naval Research Young Investigator Program award for his research in brain biomechanics.

More profile about the speaker
David Camarillo | Speaker | TED.com

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