Tuesday, 4 October 2011

專訪《TIME》百大人物、《奇蹟》作者 吉兒.泰勒(Jill Bolte Taylor)博士

【遠見雜誌】2009年4月號 ---  專訪《TIME》百大人物、《奇蹟》作者 吉兒.泰勒(Jill Bolte Taylor)博士

左腦惹的風暴,只有靠右腦救贖

是命運的捉弄,還是上天的恩典?讓一名年輕的哈佛大學腦神經專家遇上一場突如其來的腦中風意外,與病魔纏鬥八年後,卻又奇蹟似地痊癒。
            
1996年12月一個早晨,37歲的吉兒.泰勒(Jill Bolte Taylor)博士突然遭逢左腦血管爆裂,失去了自主控制身體的能力。
嚴重腦溢血的她並沒有難過放棄,反而憑著自己對腦神經的專業知識,努力找出病因、並設法求援。
  
歷經一場腦部手術以及八年的復健,她神奇地完全康復了!病魔留給她的,僅有左腦殼上一道9英吋長的疤痕;但她卻從病魔身上學到了一堂無價的醫療實習課:親身體驗中風患者的患病、痛苦,以致復健、痊癒的全過程。
     
在這段患病的歷程中,由於左腦的受創,意外開啟她右腦與宇宙間的特殊溝通體驗,讓她進入一種妙不可言的平和喜樂境界。

吉兒.泰勒(Jill Bolte Taylor)的故事,是個活生生的傳奇。康復後的她,依然致力於腦神經醫療研究,同時在全美各地巡迴演說,協助人們更瞭解中風這種疾病。
    
「透過不斷地演講與寫作,她可能是世界上向人們最詳盡介紹中風這種疾病的人,」五年前不幸中風的知名美國電視主持人迪克.克拉克(Dick Clark)如此形容泰勒。
泰勒的傑出貢獻,也讓她獲選為《TIME》雜誌2008年百大最有影響力人物之一。《遠見》特別邀請泰勒接受越洋專訪,這也是她首度接受財經媒體訪問。以下是訪談精華:
       

認識兩腦 理性運用兩種自己

《遠見》問(以下簡稱「問」):《奇蹟》這本書中,你最希望傳達的理念如何?希望傳遞給誰?

吉兒.泰勒答(以下簡稱「答」):最重要的訊息是:任何想要找到平靜的人,都可以在自己的「腦」中找到。當我們愈瞭解左腦與右腦的關聯,愈能把這樣的平衡與平靜投注在日常生活中。

問:一般讀者多數沒有中風經驗,他們要怎麼讀你的書?

答:其實這本書適合所有人閱讀。我們的腦袋是由兩個完全分割的半球所構成的,中間只靠纖維相連,左腦與右腦有完全不同的個性與特質。左腦是比較重視獨立的我,與個人有關,右腦則更在意整體,可以看到更大的局面與周圍所有事務的關聯性。當我們愈理解這兩種腦袋的不同運作,我們愈可以理智地選擇要對世界展現哪一個部分的自己。
             
問:大部分的時候,我們都是右腦思考,還是左腦思考?

答:因人而異。大體來說,西方世界的價值觀比較傾向左腦,像是關心「我」的家庭,「我」的經濟狀況,並且驅迫自己追求物質上的成就,關心的都是個人的居多。巴西與亞洲國家的文化則非常不同,更集體性,把個人視為整體的一部分,更看重每一個時刻、更看重自己的身體、更活在當下、更願意表達內心情感,而不帶批判。
      
平衡兩腦 感受人類能量連結

問:你從中風後復原至今,且親身經歷了兩腦不同的運作之後,有什麼改變?

答:我覺得活得更平衡,更有同情心、更有情感,感受到與全人類的相連。雖然還是忙碌,但可以在忙碌的空檔中,享受有品質的平靜。

問:你的意思是,最理想的人生是兩腦平衡對嗎?對於一般忙碌的上班族,要如何經歷這樣身心的平靜?

答:是的。通常我們的左腦啟動的時候,只想要逼迫自己做得更多,不想放鬆。有時要刻意地把自己的腦袋關掉,就算只有一、兩分鐘也好。平靜與放鬆對於身心都很有幫助。可以用冥想、禱告,或是放鬆大笑的方式達成。

問:你體驗了左腦關閉後、出現一種特殊的神祕感受。你在書中幾次提到「涅槃」的概念,是否與佛教思想雷同?

答:我並沒有宗教上的特別信仰。從小在基督徒的環境中長大,就像大部分美國人一樣,我傾向「追求如何活得更好」。另一方面,我是科學家,習慣從分析、觀察中理解事務運作的真相。我的這些一般人看來是「神祕」的體驗,是完全來自經歷左腦中風,腦袋關機的結果。這樣的體驗,使我擁有了與我所理解的「佛教」相類似的看法,那就是,所有事情都是能量、所有事物都有連結,同情與愛是生命的核心。因為這個失去左腦的珍貴經驗,使我的理性安靜下來,經歷了這份一般人要透過冥想或祈禱才能得到的答案。 

倖存心得 在醫護體系引迴響

問:你的書主要吸引哪些人?

答:其一是中風倖存者,我的書讓他們的生命有了希望。其二是照護者,很多人把這本書當作病人照護指南在使用,因為從中可以瞭解病人經歷什麼且需要什麼。當然醫學界迴響最大,每個醫療工作者個人的改變,也將加速了整體組織與制度的改變。

問:怎麼樣的改變?能不能舉例說明?

答:對於西方國家而言,對於重大傷病患者的腦部復建是:如果你前六個月沒有恢復,那你就沒救了。事實上這是不公平且不正確的觀念。醫生的一個決定,宣告了病人與家屬的嘗試都只是浪費時間。如果我的書可以帶給醫療體系比較開放的觀念,說明病人沒有跡象的外表下,腦中無時不在經歷細胞的復甦與再生,勢必也會改良?醫護人員對於醫療與復健的方法。這樣的改革在體制龐大的美國需要時間,但是在人口比較稀少的小國家如荷蘭,就有顯著的效果。

問:出版這本書後,帶給你生活哪些改變?

答:帶來更多的電子郵件(笑)。我現在平均一天收100封email。這些來自世界各地的迴響,徹底打開我的眼界。我看到全球的人,其實都在面對同樣的問題,也同樣對大腦的運作無知。我同時也理解到不同文化的人,如何體驗右腦的平靜經驗,這使我的眼界大開。我更加確信,我們都是能量的生命體,彼此相連,儘管左腦始終試圖告訴我們,自己是獨立、個人的。但是我們身體裡面其實是有壓迫感的。這樣的壓力與焦慮,阻隔了將自己視為萬物一體的平靜體驗。

問:所以你現在可說是雙腦平衡了嗎?

答:確實如此。雖然還是忙碌,但是非常容易在忙碌的空檔中,進入平靜的心靈狀態,非常美好。
經濟失衡 向右思考新時代

問:身為一位腦神經學家,你怎麼看目前全球的經濟情勢?我們似乎陷入了某種失衡?

答:追求財務與經濟的價值,這些都是屬於左腦的意識。現在的情況也是我們的左腦過度主宰而失衡的結果,我們太逼迫自己成功、以賺大錢為人生目標。如果換右腦的角度思考,我們每個人都命運相連,是全球經濟體的一環,隸屬全人類的的大社群。因此如何永續生存並取得自然界的平衡,比追求個人財務更為重要。未來的生存方式,應從左腦思考轉換到右腦思考。

問:你曾經被財經媒體訪問過嗎?你對企業人士做決策時有何建議?

答:這是我首度接受財經雜誌專訪,但我曾受邀前往企業的會議上演說。我當時給他們的意見是,如果我們想知道如何找回全球經濟的平衡,我們就要先向內找,去看我們身體這個大宇宙,與無數細胞的小宇宙之間的反映與關連。細胞可以維持我們人體的生存,而我們從細胞上可以學習到一件事:當一個有機體、或一個動物與周遭環境發生不平衡的矛盾現象時,細胞便會走向自我毀滅,這有點像我們人類與地球之間的關係。所以,歸根結柢地說,我們應該去看我們人類究竟做了哪些事情,才造成現在這種局面。

如果你從生物系統的觀點去研究細胞,會發現細胞裡頭其實有兩種反應群因素(feedback groups):正向反應群和負向反應群。正向反應群會促使你想要更多同樣的東西,比方說你想吃冰淇淋,那這個反應群就會促使你去找冰淇淋來吃。這概念用在經濟上,就會出現「我想要錢,好,我就去賺錢,賺更多更多的錢。」這會衍生出需求永遠無法獲得滿足的結果,最後就導致自我的滅絕。這種情形與我們現在金融界的氛圍相當類似。

但如果是右腦就會說:「拿一部分的錢就好,其他的錢讓它留著、好讓整個系統能永續經營下去。」當它得到部分的滿足後,它就會變換焦點,轉向一種帶給他人補償的利他行徑。所以我給企業人士的建議是,如果能從生物本能上去觀察學習,用右腦的邏輯來處理事情,那今天一切就會全然不同。但現在金融海嘯發生了,也迫使我們不得不採取不同於以往的思惟邏輯來處理一切。

以愛迴向 幫助更多中風病患

問:你曾被《TIME》雜誌選為「2008年全球100大有影響力人物」之一,你認為自己對世界的影響力或貢獻是什麼?

答:聽到這消息時,我也很驚喜,畢竟我從沒想過要得到什麼樣的榮譽。我想我的貢獻應該是為左右兩個半腦搭起一座橋樑,並且協助人們認識到我們每個人頭腦裡都有兩個非常美妙的半腦,它們彼此迥異、各有高超能力,但瞭解它們的差異可以幫助我們更圓滿地處理生活中的各種關係,更準確地將心中的思想、情感投射到外部世界裡,並且理性地選擇我們所要的生活方式。

問:你在美國各地巡迴演講,最難忘的經驗是?

答:是「愛」。我很驚喜地發現,很多人認為我的言論相當有參考價值,而且他們都用不同的方式來表達他們心中的感動與愛。記得有次,演講後一個十幾歲的年輕人就走過來,跟我道謝,並且問我,「可不可以給他一次擁抱?」我答應了。

我也發現,我帶給大家的訊息,其實是跨種族、跨區域的,不同的人都可以發現這些訊息其實很有價值。

問:有計畫撰寫一本關於如何防治中風的書嗎?

答:我沒有寫書的任何規劃,目前我的心力主要放在研發一種比較平價的、新的腦神經復健醫療設備,希望能協助患有腦部重創或者中風的病人。我曾經在網站上放了一部影片,結果短短一、兩週內就獲得來自全球各地的無數迴響,因此我認為用影片來和讀者溝通交流會比寫書來得更有時效,以後我可能會繼續透過影片和讀者交流,這樣會比較即時、有效率。

問:台灣有不少長年中風病患,有的甚至患病數十年,他們現在還有機會治療、康復嗎?

答:當然有機會。我在面對中風患者時,不是看他們哪個部位癱瘓了,而是去看他們的腦細胞,只要腦細胞能再次運作、不斷地彼此聯繫溝通,就有機會康復。所以我們要提供病患一個適合他們恢復腦細胞運作的環境,細心提供照護。

問:有到台灣訪問的規劃嗎?
答:我非常希望能到世界各地去巡迴訪問,但我目前的演講行程相當緊湊,而且還要參與腦神經復健醫療設備的研發工作,而且我的身體狀況很容易疲憊,無法適應長途飛行的旅程。所以只好暫緩。(楊瑪利、李康莉、黃浩榮採訪;李康莉、黃浩榮整理)

Sunday, 25 September 2011

Jackie Evancho first audition Americas Got Talent full with result and c...

如何解讀別人的心思Rebecca Saxe




Today I'm going to talk to you about the problem of other minds. And the problem I'm going to talk about is not the familiar one from philosophy, which is, "How can we know whether other people have minds?" That is, maybe you have a mind, and everyone else is just a really convincing robot. So that's a problem in philosophy. But for today's purposes I'm going to assume that many people in this audience have a mind, and that I don't have to worry about this.
 
There is a second problem that is maybe even more familiar to us as parents and teachers and spouses, and novelists. Which is, "Why is it so hard to know what somebody else wants or believes?" Or perhaps, more relevantly, "Why is it so hard to change what somebody else wants or believes?"
 
I think novelists put this best. Like Philip Roth, who said, "And yet, what are we to do about this terribly significant business of other people? So ill equipped are we all, to envision one another's interior workings and invisible aims." So as a teacher, and as a spouse, this is, of course, a problem I confront every day. But as a scientist, I'm interested in a different problem of other minds, and that is the one I'm going to introduce to you today. And that problem is, "How is it so easy to know other minds?"
 
So to start with an illustration, you need almost no information, one snapshot of a stranger, to guess what this woman is thinking, or what this man is. And put another way, the crux of the problem is the machine that we use for thinking about other minds, our brain, is made up of pieces, brain cells, that we share with all other animals, with monkeys, and mice, and even sea slugs. And yet, you put them together in a particular network, and what you get is the capacity to write Romeo and Juliet. Or to say, as Alan Greenspan did, "I know you think you understand what you thought I said, but I'm not sure you realize that what you heard is not what I meant." (Laughter)
 
So the job of my field of cognitive neuroscience is to stand with these ideas, one in each hand. And to try to understand how you can put together simple units, simple messages over space and time, in a network, and get this amazing human capacity to think about minds. So I'm going to tell you three things about this today. Obviously the whole project here is huge. And I'm going to tell you just our first few steps about the discovery of a special brain region for thinking about other people's thoughts. Some observations on the slow development of this system as we learn how to do this difficult job. And then finally, to show that some of the differences between people, in how we judge others, can be explained by differences in this brain system.
 
So first, the first thing I want to tell you is that there is a brain region in the human brain, in your brains, whose job it is to think about other people's thoughts. This is a picture of it. It's called the Right Temporo-Parietal Junction. It's above and behind your right ear. And this is the brain region you used when you saw the pictures I showed you, or when you read Romeo and Juliet, or when you tried to understand Alan Greenspan. And you don't use it for solving any other kinds of logical problems. So this brain region is called the RTPJ. And this picture shows the average activation in a group of what we call typical human adults. They're MIT undergraduates. (Laughter)
 
The second thing I want to say about this brain system is that although we human adults are really good at understanding other minds, we weren't always that way. It takes children a long time to break into the system. I'm going to show you a little bit of that long, extended process. The first thing I'm going to show you is a change between age three and five, as kids learn to understand that somebody else can have beliefs that are different from their own. So I'm going to show you a five-year-old who is getting a standard kind of puzzle that we call the false belief task.
 
Video: This is the first pirate. His name is Ivan. And you know what pirates really like?
 
Pirates really like cheese sandwiches.
 
Child: Cheese? I love cheese!
 
R.S.: Yeah. So Ivan has this cheese sandwich. and he says "Yum yum yum yum yum! I really love cheese sandwiches." And Ivan puts his sandwich over here, on top of the pirate chest. And Ivan says, "You know what? I need a drink with my lunch." And so Ivan goes to get a drink. And while Ivan is away the wind comes, and it blows the sandwich down onto the grass. And now, here comes the other pirate. This pirate is called Joshua. And Joshua also really loves cheese sandwiches. So Joshua has a cheese sandwich and he says, "Yum yum yum yum yum! I love cheese sandwiches." And he puts his cheese sandwich over here on top of the pirate chest.
 
Child: So, that one is his.
 
R.S.: That one is Joshua's. That's right.
 
Child: And then his went on the ground.
 
R.S.: That's exactly right.
 
Child: So he won't know which one is his.
 
R.S.: Oh. So now Joshua goes off to get a drink. Ivan comes back and he says, " I want my cheese sandwich." So which one do you think Ivan is going to take?
 
Child: I think he is going to take that one.
 
R.S.: Yeah, you think he's going to take that one? Alright. Let's see. Oh yeah, you were right. He took that one.
 
So that's a five-year-old who clearly understands that other people can have false beliefs and what the consequences are for their actions. Now I'm going to show you a three-year-old who got the same puzzle.
 
Video: R.S.: And Ivan says, "I want my cheese sandwich." Which sandwich is he going to take? Do you think he's going to take that one? Let's see what happens. Let's see what he does. Here comes Ivan. And he says, "I want my cheese sandwich." And he takes this one. Uh-oh. Why did he take that one?
 
Child: His was on the grass.
 
R.S. So the three-year-old does two things differently. First he predicts Ivan will take the sandwich that's really his. And second, when he sees Ivan taking the sandwich where he left his, where we would say he's taking that one because he thinks it's his, the three-year-old comes up with another explanation. He's not taking his own sandwich because he doesn't want it, because now it's dirty, on the ground. So that's why he's taking the other sandwich. Now of course, development doesn't end at five. And we can see the continuation of this process of learning to think about other people's thoughts by upping the ante and asking children now, not for an action prediction, but for a moral judgement. So first I'm going to show you the three-year-old again.
 
Video: R.S.: So is Ivan being mean and naughty for taking Joshua's sandwich?
 
Child: Yeah.
 
R.S.: Should Ivan get in trouble for taking Joshua's sandwich?
 
Child: Yeah.
 
R.S.: So it's maybe not surprising he thinks it was mean of Ivan to take Joshua's sandwich. Since he thinks Ivan only took Joshua's sandwich to avoid having to eat his own dirty sandwich. But now I'm going to show you the five-year-old. Remember the five-year-old completely understood why Ivan took Joshua's sandwich.
 
Video: R.S.: Was Ivan being mean and naughty for taking Joshua's sandwich?
 
Child: Um, yeah.
 
R.S.: And so, it is not until age seven that we get what looks more like an adult response.
 
Video: R.S.: Should Ivan get in trouble for taking Joshua's sandwich?
 
Child: No, because the wind should get in trouble.
 
R.S. He says the wind should get in trouble for switching the sandwiches. (Laughter)
 
And now what we've started to do in my lab is to put children into the brain scanner and ask what's going on in their brain as they develop this ability to think about other people's thoughts. So the first thing is that in children we see this same brain region, the RTPJ, being used while children are thinking about other people. But it's not quite like the adult brain.
 
So where as in the adults, as I told you, this brain region is almost completely specialized. It does almost nothing else, except for thinking about other people's thoughts. In children it's much less so, when they are age five to eight, the age range of the children I just showed you. And actually if we even look at eight to 11-year-olds, getting into early adolescence, they still don't have quite an adult-like brain region. And so, what we can see is that over the course of childhood and even into adolescence, both the cognitive system, our mind's ability to think about other minds, and the brain system that supports it, are continuing, slowly, to develop.
 
But of course, as you're probably aware, even in adulthood, people differ from one another in how good they are at thinking of other minds, how often they do it, and how accurately. And so what we wanted to know was, could differences among adults, in how they think about other people's thoughts be explained in terms of differences in this brain region. So the first thing that we did is we gave adults a version of the pirate problem that we gave to the kids. And I'm going to give that to you now.
 
So Grace and her friend are on a tour of a chemical factory and they take a break for coffee. And Grace's friend asks for some sugar in her coffee. Grace goes to make the coffee and finds by the coffee a pot containing a white powder, which is sugar. But the powder is labeled "Deadly Poison". So Grace thinks that the powder is a deadly poison. And she puts it in her friend's coffee. And her friend drinks the coffee, and is fine.
 
How many people think it was morally permissible for Grace to put the powder in the coffee? Okay. Good. (Laughter) So we ask people how much should Grace be blamed in this case, which we call a failed attempt to harm.
 
And we can compare that to another case where everything in the real world is the same. The powder is still sugar, but what's different is what Grace thinks. Now she thinks the powder is sugar. And perhaps unsurprisingly, if Grace thinks the powder is sugar and puts it in her friend's coffee, people say she deserves no blame at all. Whereas if she thinks the powder was poison, even though it's really sugar, now people say she deserves a lot of blame, even though what happened in the real world was exactly the same.
 
And in fact they say she deserves more blame in this case, the failed attempt to harm, than in another case, which we call an accident. Where Grace thought the powder was sugar, because it was labeled "sugar" and by the coffee machine, but actually the powder was poison. So even though when the powder was poison, the friend drank the coffee and died, people say Grace deserves less blame in that case, when she innocently thought it was sugar, than in the other case, where she thought it was poison, and no harm occurred.
 
People, though, disagree a little bit about exactly how much blame Grace should get in the accident case. Some people think she should deserve more blame, and other people less. And what I'm going to show you is what happened when we look inside the brains of people while they're making that judgment. So what I'm showing you, from left to right, is how much activity there was in this brain region. and from top to bottom, how much blame people said that Grace deserved.
 
And what you can see is, on the left when there as very little activity in this brain region, people paid little attention to her innocent belief and said she deserved a lot of blame for the accident. Whereas, on the right, where there was a lot of activity, people payed a lot more attention to her innocent belief, and said she deserved a lot less blame for causing the accident.
 
So that's good, but of course what we'd rather is have a way to interfere with function in this brain region, and see if we could change people's moral judgment. And we do have such a tool. It's called Trans-Cranial Magnetic Stimulation, or TMS. This is a tool that lets us pass a magnetic pulse through somebody's skull, into a small region of their brain, and temporarily disorganize the function of the neurons in that region.
 
So I'm going to show you a demo of this. First I'm going to show you, to show you that this is a magnetic pulse, I'm going to show you what happens when you put a quarter on the machine. When you hear clicks we're turning the machine on. So now I'm going to apply that same pulse to my brain, to the part of my brain that controls my hand. So there is not physical force, just a magnetic pulse.
 
Video: Woman: Ready? Rebecca Saxe: Yes.
 
Okay, so it causes a small involuntary contraction in my hand by putting a magnetic pulse in my brain. And we can use that same pulse, now applied to the RTPJ, to ask if we can change people's moral judgments. So these are the judgments I showed you before, people's normal moral judgments. And then we can apply TMS to the RTPJ and ask how people's judgments change. And the first thing is, people can still do this task overall.
 
So their judgments of the case when everything was fine remain the same. They say she deserves no blame. But in the case of a failed attempt to harm, where Grace thought that it was poison, although it was really sugar, people now say it was more okay, she deserves less blame for putting the powder in the coffee.
 
And in the case of the accident, where she thought that it was sugar, but it was really poison and so she caused a death, people say that it was less okay, she deserves more blame. So what I've told you today is that people come, actually, especially well equipped to think about other people's thoughts.
 
We have a special brain system that lets us think about what other people are thinking. This system takes a long time to develop, slowly throughout the course of childhood, and into early adolescence. And even in adulthood, differences in this brain region can explain differences among adults in how we think about and judge other people.
 
But I want to give the last word back to the novelists. And to Philip Roth, who ended by saying, "The fact remains that getting people right is not what living is all about anyway. It's getting them wrong that is living. Getting them wrong and wrong and wrong, and then on careful reconsideration, getting them wrong again." Thank you. (Applause)
 
Chris Anderson: When you start talking about using magnetic pulses to change people's moral judgments, that sounds alarming. (Laughter) Please tell me that you're not taking phone calls from the Pentagon, say.
 
Rebecca Saxe: I'm not. I mean, they're calling, but I'm not taking the call. (Laughter)
 
C.A.: They really are calling? So, then seriously, then seriously, you must lie awake at night sometimes wondering where this work leads. I mean you're clearly an incredible human being. But someone could take this knowledge and in some future not torture chamber, do acts that people here might be worried about.
 
R.S.: Yeah, we worry about this. So, there is a couple of things to say about TMS. One is that you can't be TMSed with out knowing it. So it's not a surreptitious technology. It's quite hard actually to get those very small changes. The changes I showed you are impressive to me because of what they tell us about the function of the brain. But they're small on the scale of the moral judgments that we actually make.
 
And what we changed was not people's moral judgments when they're deciding what to do, when they're making action choices. We change their ability to judge other people's actions. And so I think of what I'm doing not so much as studying the defendant in a criminal trial, but studying the jury.
 
C.A.: Is your work going to lead to any recommendations in education, to perhaps bring up a generation of kids able to make fairer moral judgments?
 
R.S.: That's one of the idealistic hopes. The whole research program here, of studying the distinctive parts of the human brain, is brand new. Until recently what we knew about the brain were the things that any other animal's brain could do too. So we could study it in animal models. We knew how brains see, and how they control the body, and how they hear and sense. And the whole project of understanding how brains do the uniquely human things, learn language, and abstract concepts, and thinking about other people's thoughts, that's brand new. And we don't know yet, what the implications will be of understanding it.
 
C.A.: So I've got one last question. There is this thing called the hard problem of consciousness, that puzzles a lot of people. The notion that you can understand why a brain works, perhaps. But why does anyone have to feel anything? Why does it seem to require these beings who sense things for us to operate? You're a brilliant young neuroscientist. I mean, what chances do you think there are that at some time in your career someone, you or someone else, is going to come up with some paradigm shift in understanding what seems an impossible problem.
 
R.S.: I hope they do. And I think they probably won't.
 
C.A.: Why?
 
R.S.: It's not called the hard problem of consciousness for nothing. (Laughter)
 
C.A.: That's a great answer. Rebecca Saxe, thank you very much. That was fantastic. (Applause)