Beyond what our Eyes Perceive

it is often said

that we don’t see through our eyes but

instead

with our brain the eyes enable light to

enter our system

but in order to make sense of the world

around us

the electrically powered piece of meat

we are carrying inside our skulls

needs to get working so what kind of

work does the brain need to do

well the simple answer as in most

psychological research

is pretty straight we are not sure yet

but before i tell you how my institution

spends resources in order for me

to waste hours drinking coffee and

thinking over this

let me give you some examples on how the

brain sees

an obvious example would be dreaming or

imagination

that extraordinary ability of

experiencing images

without them actually being them many

scientists

are curious about understanding this

phenomenon despite

the many practical difficulties but

unfortunately for you unfortunately for

them

i’m not one of those scientists so i

can’t really tell you much on the topic

however i’m kind of curious about stuff

like this

this is the widely known penrose

triangle

it’s quite funny i got this t-shirt

really cheap

because the whole triangle is misspelled

on it

let me make it a bit easier for you to

see

at first glance it looks like an

ordinary triangle

but the more you stare at it the more

you realize that

in reality this shape cannot exist

it’s an optical illusion optical

illusions

are an interesting way to understand

that

beyond one rise perceive beyond the

visual information that’s right in front

of our eyes

the brain does all the hard work to put

that information together

and of course as i know from my personal

life too

hard work does not necessarily mean good

work

sorry boss i know that you’re probably

watching this

arise get constantly bombarded by a huge

influx of visual information and many

times

the brain can get confused distracted

or even miss some of the information

here’s an example of the brain getting

confused

these are the rotating snakes by

akioshikitoka

even though this picture is static our

brains pick up spontaneous movement

as if the snakes are rotating i know

brains are really weird now

of course the way that we perceive the

world

has a lot to do with where and how we

pay attention

where the focus is now

i don’t usually take selfies but i think

there’s

no better way to explain this so i want

you to have a look

here keep going

depending on where you focus your

attention your brain

interprets the perspective of this photo

differently

despite having only one image in front

of your eyes

the brain puts it together in a

prejudiced way

what’s right in front of you in

combination with what we know

about that something for the example

here

the brain has learned that faces can

only have one single perspective

it searches beyond the single image

that’s right in front of

the eyes and puts it all somehow

together

based on what makes sense for the brain

as i mentioned earlier brains can also

get

distracted or even miss some of the

information

for example you probably haven’t noticed

that i switched to what i was wearing

from my right hand to my left hand

there’s a number of reasons why this

happens one reason

is that your brain uses existing

knowledge some sort of

common sense in order to save energy

while figuring things out

if you saw the watch before you know i’m

wearing it

it doesn’t really make sense for me to

switch hands

so why would your brain pay any more

attention to it

it assumes when it sees the watch that

it’s always been

on my left hand

unless of course somebody is trying to

make a point

i know what you’re thinking the screen

is small

the watch is even smaller the setup is

quite big

i have a very pretty face it’s easy to

get away with it

but let me give you a better example our

brains

know that in order to change clothes we

need

to take the ones we’re currently wearing

off and change them with other ones

and one does not simply do that while

giving a speech

or at least that’s what the organizers

told me

that could explain why you probably

haven’t noticed that the word triangle

is now spelled correctly on my t-shirt

trust me this would have been much

cooler if i was doing this on stage

i pointed at my t-shirt before you saw

it you probably read what was written on

it

and your brain processed the information

it knows that the print on it is not

something likely to change

so why give it any more attention the

brain

prefers to save its resources and tries

to avoid

what it thinks is unnecessary it uses

this

common sense to

assume that the t-shirt will remain the

same

or that the watch was always on my left

hand

similarly to how when you see somebody

with glasses

you assume that they have some sort of a

visual impairment

well guess what these glasses

have no lenses in them

well i told you i was trying to make a

point

this brain limitation is something that

magicians have come across and um

often they use this destruction

to impress us with their magic

so try and remember that next time you

spot a magician

now knowing that the brain has all these

capabilities

and limitations we now understand

that somehow the brain using specific

processes

turns all this visual influx into

conscious representations

so beyond polarized perceived

something is happening in some areas of

the brain

that actually allow us to understand the

world around us

such a process is visual short-term

memory

in simple words visual short-term memory

is our brain’s ability

to handle visual information just for a

few seconds

while that information is no longer

available

and therefore we can achieve some goals

to help you understand i want you to

imagine

that you’re building one of those model

aeroplanes or a model boat

you have all these pieces laid in front

of you in the table and of course you

have this huge

booklet with instructions you open up

the instruction manual to the first page

and have a look at the first piece

you’re going to need

what you’re doing is you’re trying to

remember the image

of the first piece in your mind

and you put the instructions away you

turn to all the pieces on the table

trying to find the one that you’re

holding into your memory

trying to remember and handle all this

visual information

which is no longer present is what the

visual short-term memory process

is in our lab

we don’t really build mobile aeroplanes

or model boats but part of our work

relates to which brain areas are

involved during visual short-term memory

specifically we study the primary visual

cortex

which is an area on the back of the

brain somewhere around here

the primary visual cortex is the first

brain area

that processes visual information right

after the light

passes through our eyes and the optic

nerve

it even consists of special cells

special neurons

which have been shown to be particularly

responsible for processing some basic

visual features

in other words some neurons in the

primary visual cortex

are exclusively there to process some

basic

visual characteristics such as contrast

and orientation

however we are still not sure whether

this brain area

is able to hold on to this visual

characteristics

let’s say whether the primary visual

cortex

is able to remember them or whether

other brain areas need to be recruited

in order to do so

so how do we find out well

the first thing we need to do is design

some tasks

computer tasks which will present to

people

visual information and people will have

to remember it

think of it as some sort of a very

boring video game

so basically what we do is we present

an image to the participants

the image then disappears and the

participants are trying to remember it

after a few seconds a second image

appears

then participants need to tell us if the

second image

is the same as the first one or if it’s

a different one

so far so good

these kinds of computer tasks have been

used in cognitive science for decades

and it is something we use in our lab as

well

apparently part of my job is to spend

hours

designing these very boring memory games

while of course

making sure the whole lab’s computer

system doesn’t crash

these tasks help us gather evidence

about visual short-term memory enabling

us to study it

and explore it but

that’s the easy part we still need to

figure out a way

to investigate how the primary visual

cortex

is involved during the process of visual

short-term memory

now the most reliable way to do this

and bear with me that’s the best way to

do it

is the following we bring people to the

lab

to play these very boring video games we

design which the goal is to remember

something visually so

we show them the first image and when

the first image disappears

we slice open the skulls surgically

remove the primary visual cortex

completely from the brain

and put it right back just before the

second image appears

while of course keeping them conscious

and alive

and uh by the way we only have about

two seconds to do so before the second

image

appears of course when i told my lab

team this idea

they were staring at me as if i was

standing naked in the room

i almost lost my job and some people

won’t talk to me anymore

so obviously this is not a realistic

scenario

it might indeed be the best way to find

out

but clearly is not something that can be

done

so what now after the shock of that

meeting called down

and my supervisor decided to start

talking to me again

we turned to state-of-the-art technology

to find the answers we were looking for

non-invasive

brain stimulation science and technology

have developed amazing techniques that

today

allow us to interfere with the brain’s

regular activity

as if we are removing a brain part in a

safe

non-invasive and reliable way we use

magnetic stimulation

to target the primary visual cortex

disrupt its regular activity

and study how this temporal disruption

affects cognitive processes

such as visual short-term memory

at the start of this talk i mentioned

that the brain is electrically powered

this exact fat is what makes brain

stimulation

possible we use magnetic energy

which we know is safe for humans because

this energy can manipulate electrical

fields

such as the one our brain generates

therefore by manipulating the brain’s

regular activity

during visual short-term memory we can

study how the primary visual cortex

is involved during this process

now as in all sciences a very important

question needs to be asked

which is probably something you’re

thinking right now

so what what’s the importance of this

why do we do it well first of all

it is because we are curious scientists

want to know why

or how the world works

this is what has driven science

throughout the years and this is what

drives

many scientists around the world today

the brain is very difficult to

understand

these experiments add a very small piece

to the puzzle

of unraveling how the brain works

they help us better understand

mesmerizing questions

like why or how are we conscious

further this kind of work can be

translated into the practical world

helping us solve everyday problems

for example many accidents are caused by

the human factor

and often by how our brains get confused

distracted or even misinformation

with this said i want to close by saying

that

beyond every scientist work was an

infinite stream of curiosity

and a dream of making the world a better

place

thank you

人们常说

,我们不是通过眼睛看东西,而是

通过我们的大脑,眼睛使光线能够

进入我们的系统,

但是为了理解

我们周围的世界,

我们头骨中携带的一块电动肉

需要 要开始工作,那么

大脑需要做好什么样的工作?

在大多数心理学研究中,简单的答案

是相当直接的,我们还不确定,

但在我告诉你我的机构如何

花费资源让

我浪费时间喝咖啡之前

考虑到这一点,

让我给你一些例子,说明

大脑如何看待

一个明显的例子,一个明显的例子是做梦或

想象

,在没有

图像的情况下体验图像

的非凡能力,尽管存在许多实际困难,但许多

科学家

对理解这种现象感到好奇,

不幸的是 不幸的是,对

他们来说,

我不是那些科学家中的一员,所以我

无法真正告诉您有关该主题的太多信息,

但是我很喜欢 对这样的东西很好奇

这是广为人知的彭罗斯

三角形

这很有趣我买了这件T恤

真的很便宜

因为整个三角形拼错

让我让你更容易

看到它看起来像 一个

普通的三角形,

但你越是盯着它看,

你就越

意识到实际上这种形状是不存在的,

它是一种视错觉,视错觉

是一种有趣的方式来理解

超越一个上升,感知超越

我们眼前的视觉信息

大脑做了所有艰苦的工作来把

这些信息放在一起

,当然,正如我从我的个人生活中知道的那样,

努力并不一定意味着做得很好

对不起老板,我知道你可能

正在看着这种

情况不断被大量

涌入的人轰炸 视觉信息,很多

时候大脑会感到困惑 分心

甚至错过一些信息

这是大脑感到

困惑

的一个例子 e akioshikitoka 的旋转蛇

即使这张照片是静态的,我们的

大脑

也会像蛇在旋转一样进行自发运动 我知道

现在的大脑真的很奇怪

当然,我们感知世界的方式与

我们在哪里以及如何

注意

现在的焦点

我通常不自拍但我认为

没有更好的方法来解释这一点所以我希望

你看看

这里继续

根据你的注意力集中在哪里

你的大脑会

解释这张照片的视角

不同的是,

尽管你眼前只有一个图像,

但大脑会以一种

偏见的方式

将你面前的

事物与我们所知道的相结合,例如

这里

的例子,大脑已经了解到面部

只能有一个 透视

它搜索的只是眼前的单一图像

并根据我提到的耳朵对大脑有意义的东西以某种方式将它们放在一起

更糟糕的大脑也可能

分心甚至错过一些

信息

,例如你可能没有

注意到我从右手换到左手穿的衣服

有很多原因导致这种

情况发生的原因之一

是你的 大脑使用现有

知识某种

常识来节省能量,

同时弄清楚

如果您在知道我戴上手表之前就看到了手表,

对我来说换手真的没有意义,那

您的大脑为什么要付出任何代价 更加

注意它

当它看到手表时它假设

它总是

在我的左手上,

除非当然有人

试图指出

我知道你在想什么 屏幕

很小 手表更小 设置

很大

我有一张非常漂亮的脸,很容易

摆脱它,

但让我举一个更好的例子,我们的

大脑

知道,为了换衣服,我们

需要拿掉我们现在正在穿的衣服

,然后换上其他的

并且一个人不会在演讲时简单地这样做,

或者至少组织者告诉我

这可以解释为什么你可能

没有注意到三角形这个

词现在在我的 T 恤上拼写正确

相信我这会很多

更酷如果我在舞台上这样做

,我在你看到它之前指着我的 T 恤

,你可能已经阅读了上面写的

内容,

并且你的大脑处理了

它知道上面的印刷不太

可能改变的信息,

所以为什么要给它 大脑

更喜欢节省资源并试图

避免它认为不必要的事情它使用

这种

常识来

假设 T 恤将保持

不变

或者手表总是在我的

左手上 看到

戴眼镜的人,

您会假设他们有某种

视力障碍,请

猜猜这些眼镜

里面没有镜片是

什么,我告诉过您,我试图说明这

一点,

这种大脑限制是

魔术师遇到过,嗯,

他们经常利用这种破坏

来用他们的魔法给我们留下深刻印象,

所以试着记住,下次你

发现一个魔术师时,

现在知道大脑具有所有这些

能力

和限制,我们现在明白

,大脑使用特定过程会以某种方式

转动 所有这些视觉涌入到

有意识的表征中

,超出了两极分化的感知

,大脑的某些区域正在发生一些事情,

这实际上让我们能够理解

我们周围的世界

这样一个过程就是视觉短期

记忆

,简单来说,视觉短期记忆

是我们大脑的

能够在信息不再可用时仅处理几秒钟的视觉信息

,因此我们可以实现一些目标

来帮助您理解我希望您

想象您正在建造其中一架模型

飞机或模型

船 这些作品摆在

你面前的桌子上,当然你

有这本巨大的

小册子,上面有你的说明

打开说明书到第一页

,看看你需要的第一件

你正在做的事情是你试图

在你的脑海中记住第一件的形象,

然后你把说明收起来

你翻遍桌子上的所有碎片,

试图找到

你记忆中的碎片,

试图记住和处理所有这些

不再存在的视觉信息,这就是我们实验室的

视觉短期记忆过程

不是真的建造移动飞机

或模型船,但我们的部分工作

涉及视觉短期记忆中涉及的大脑区域,

特别是我们研究初级视觉

皮层

,它是

大脑后部某处附近

的区域 视觉皮层是

光线

通过我们的眼睛和视神经后立即处理视觉信息的第一个大脑区域,

它甚至由特殊细胞组成,

特殊神经元

已被证明具有参与性 主要

负责处理一些基本的

视觉特征

,换句话说,

初级视觉皮层

中的一些神经元专门处理一些

基本的

视觉特征,例如对比度

和方向,

但是我们仍然不确定

这个大脑区域

是否能够保持这种视觉

特征

让我们说初级视觉

皮层

是否能够记住它们,或者是否

需要招募其他大脑区域

才能做到这一点

那么我们如何很好地找出

我们需要做的第一件事是设计

一些任务

计算机任务将呈现 对

人们来说,

视觉信息和人们

必须记住它

把它想象成某种非常

无聊的电子游戏,

所以基本上我们所做的就是

向参与者展示一个图像,

然后图像消失,

参与者在一段时间后试图记住它

几秒钟后,第二张图片

出现,

然后参与者需要告诉我们

第二张图片

是否与第一张相同,或者是否

到目前为止,这是一个非常好的

不同类型的计算机任务

已经在认知科学中使用了几十年

,这也是我们在实验室中使用的东西,

显然我的工作的一部分是花

几个小时

设计这些非常无聊的记忆游戏,

同时当然要

制作 确保整个实验室的计算机

系统不会崩溃

这些任务帮助我们收集

有关视觉短期记忆的证据,使

我们能够对其进行研究

和探索,但这

是我们仍然需要

找出一种方法

来研究初级视觉皮层如何

参与视觉

短期记忆的过程

现在最可靠的方法是做到这一点

并忍受我这是最好的方法

是下面我们带人们去

实验室玩我们设计的这些非常无聊的视频游戏

目标是在

视觉上记住一些东西,所以

我们向他们展示第一张图像,

当第一张图像消失时,

我们切开颅骨,通过手术

将初级视觉皮层从大脑中

完全移除。 大脑

并在第二张图像出现之前将其放回原处,

同时当然要让它们保持清醒

和活力

,呃顺便说一句

,当我告诉我的实验室

团队这个想法

时,在第二张图像出现之前我们只有大约两秒钟的时间这样做 盯着我,好像我

赤身裸体地站在房间里,

我差点丢了工作,有些人

不再和我说话了,

所以显然这不是一个现实的

场景,

它可能确实是找出答案的最好方法,

但显然不是 可以

做的事情

,那么现在在那次会议的震惊之后

,我的主管决定再次开始

与我交谈,

我们转向最先进的技术

来找到我们正在寻找的答案,我们正在寻找

非侵入性

脑刺激 科学和技术

已经开发出惊人的技术,

今天

让我们能够干扰大脑的

正常活动

,就好像我们正在以一种

安全的

非侵入性和可靠的方式移除大脑的一部分,我们使用

磁刺激

来治疗 rget 初级视觉皮层

扰乱其正常活动,

并研究这种时间中断

如何影响认知过程,

例如视觉短期记忆

在本次演讲开始时我

提到大脑是由电力驱动的,

正是这种脂肪使我们使用大脑

刺激成为

可能

我们知道对人类来说是安全的磁能,因为

这种能量可以操纵

诸如我们大脑产生的电场,

因此通过

在视觉短期记忆期间操纵大脑的常规活动,我们现在可以

研究初级视觉皮层

在这个过程中是如何参与的

就像在所有科学中一样,需要问一个非常重要的

问题,

这可能是您现在正在

思考的问题,

那么这有什么重要性

?为什么我们首先要做好

它,因为我们是好奇的科学家,

想知道为什么

或 世界是如何运作的

这是多年来推动科学发展的动力

,也是

推动

许多科学家的动力 在当今

世界,大脑很难

理解

这些实验为解开大脑如何工作的难题添加了一小部分

它们帮助我们更好地理解

令人着迷的问题,

例如我们为什么或如何进一步有意识

这种工作可以

转化为 现实世界

帮助我们解决日常问题

,例如许多事故是

由人为因素造成的,

而且通常是由我们的大脑如何混淆

分心甚至是错误信息造成的

,我想说

除了每个科学家的工作之外,还有

无限的好奇心

和让世界变得更美好的梦想

谢谢