结果偏差与解释者:我们的思维如何混淆技能与运气
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10 月 15 日,2013:结果偏见与解释者——我们的大脑如何混淆技能与运气
Outcome Bias and the Interpreter How Our Minds Confuse Skill and Luck October 15, 2013
Authors
Authors
Michael J. Mauboussin [email protected]
Michael J. Mauboussin [email protected]
丹·卡拉汉,特许金融分析师,[email protected]
Dan Callahan, CFA [email protected]
结果偏差指人们在不考虑决策真正质量的情况下,仅凭结果来评判。
Outcome bias occurs when people judge outcomes without considering the true quality of the decision.
这种偏见在商业、投资、体育和政治领域比比皆是。
This bias is rife in business, investing, sports, and politics.
大脑左半球有一个模块叫做“解释器”,它会看到任何结果,然后毫不费力地、迅速地捏造出一个原因来解释它。
There is a module in the left hemisphere of the brain called “the interpreter” that takes any effect that it sees and effortlessly and rapidly creates a cause to explain it.
翻译天生是模式寻找者,与运气毫不相干。这导致无数糟糕的决策。
The interpreter is a natural pattern seeker and knows nothing of luck. This leads to numerous poor decisions.
为了管理这个“解读者”,提前了解运气在某个活动中对结果的影响有多大是很有用的,并在运气成分很大的情况下专注于自己的决策过程。
To manage the interpreter it is useful to know ahead of time how much luck determines results in an activity and to focus on one’s decision-making process in instances where luck is ample.
Introduction
Introduction
以下是周一早间媒体的一则引述:
Here is one quote from Monday morning’s media:
每周我们都会在 NFL 看到糟糕的教练决策,但我从来——我真的是说从来——没见过比爱国者队教练比尔·贝利切克周日晚对阵小马队时做出的决定更愚蠢的了。
“Each and every week we see bad coaching decisions in the NFL, but never, and I mean never, have I seen one as dumb as the decision Patriots coach Bill Belichick made Sunday night against the Colts.
他的头脑比泰德·威廉姆斯还要僵化。
His brain was more frozen than Ted Williams’.”1
众多媒体报道都在重复同一个观点。以下是引发这场风波的场景:2009 年 11 月 15 日晚,新英格兰爱国者队以 34 比 28 的比分领先主场作战的印第安纳波利斯小马队。比赛还剩两分多钟,爱国者队在本方 28 码线持球,第四档进攻仅需推进 2 码。
Numerous press accounts echoed this sentiment. Here was the situation that created the stir. On the evening of November 15, 2009, the New England Patriots were leading the home team, the Indianapolis Colts, by the score of 34-28. There were just over two minutes remaining in the game, the Patriots had the ball on their own 28 yard line, and it was fourth down with 2 yards to go.
新英格兰爱国者队主教练比尔·贝利奇克有两个选择。他可以让球队弃踢,这很可能会把球权交给天赋出众的小马队,让对手在大约自己 35 码线处拿球,迫使他们在有限时间内一路推进到达阵区,完成反超比分的达阵。
Bill Belichick, the head coach of the Patriots, had two choices. He could instruct his team to punt, which would likely give the ball to the talented Colts around their own 35 yard line and force them to march downfield to score the game-winning touchdown in limited time.
或者比尔·贝利切克也可以选择在第四次进攻时放手一搏。如果这次进攻成功,几乎就等于为爱国者队锁定胜局,让小马队吞下赛季首败。但若进攻失败,球权就会转给小马队,而且落在场上对他们极为有利的位置——这将大幅提升小马队得分并赢下比赛的概率。
Or Belichick could go for it on fourth down. A successful conversion would effectively win the game for the Patriots and hand the Colts their first loss of the season. But a failure to convert would turn the ball over to the Colts at a very attractive position on the field, substantially increasing the probability that the Colts would score and win.
七周前,爱国者队在对阵亚特兰大猎鹰队时就遇到过类似局面。当时他们选择了强攻,拿到了首攻,锁定了胜局。而在今晚,爱国者队再次选择强攻,却被判在距离首攻线还差一点的地方倒地。片刻之后,小马队达阵得分。最终比分:小马队 35 比 34 战胜爱国者队。
The Patriots had faced a similar situation seven weeks earlier against the Atlanta Falcons. They went for it, got the first down, and clinched the game. On this night, the Patriots went for it again and were ruled down just shy of the marker. Moments later, the Colts scored a touchdown. Final score: Colts 35, Patriots 34.
第二天,贝利奇克在球队面前毫无歉意地表示:“我最后做出的那个决定,是基于我认为什么对这支球队最有利,以及我们赢球的最佳机会。我只是告诉你们,我做了我认为最好的选择。但结果没成。” 随后,他又补充道:“出门时门上的牌子写着‘忽略噪音’。这是最重要的事。忽略噪音。我希望你们相信这一点,因为这是事实。我永远会跟你们说实话。”
Belichick was unapologetic as he addressed his team the next day: “My decision there at the end was based on what I felt was best for the football team and our best chance to win. I’m just telling you I did what I thought was best. And it didn’t work out.” Later, he added, “The sign on the door when you walk out says ‘ignore the noise.’ That’s the most important thing. Ignore the noise. I hope you believe it because it’s the truth. I’ll always tell you the truth.”2
贝利奇克做出了正确的决定吗?体育数据分析圈很快给出了结论,共识是他做对了。Advanced NFL Stats 的布莱恩·伯克总结道:“更好的决定是强攻四档,而且优势还相当明显。”尽管伯克的分析建立在许多假设之上,但很难给出什么可信的概率,能把天平倒向弃踢那一边。³
Did Belichick make the correct decision? The sports analytics community quickly rendered its verdict, and the consensus was that he did the right thing. Brian Burke at Advanced NFL Stats summed it up by saying, “The better decision would be to go for it, and by a good amount.” While Burke’s analysis relied on numerous assumptions, it would have been hard to assign credible probabilities that would have flipped the odds in favor of punting.3
如果贝利奇克从统计角度确实做出了正确的决定,为什么媒体会对他口诛笔伐?我们认为,原因在于一种称为“结果偏差”的现象,即“人们以与决策真正质量无关的方式将结果纳入考量”。⁴ 结果偏差在商业、投资、体育和政治领域比比皆是。我们将探讨结果偏差背后的心理过程,最后提出一些应对思路。
If Belichick indeed made the right decision from a statistical standpoint, why was he excoriated in the press? We argue that the reason is something called outcome bias, which says that “people take outcomes into account in a way that is irrelevant to the true quality of the decision.”4 Outcome bias is rife in the worlds of business, investing, sports, and politics. We will discuss the mental processes that underlie outcome bias and will finish with some ideas about how to cope with it.
结果偏见如此普遍,这不仅是一个有趣的心理学观察,还会助长糟糕的决策。你可以想象一位工作不如贝利奇克那么稳固的教练的心理过程。
That outcome bias is so widespread is not just an interesting psychological observation. It also encourages poor decisions. You might imagine the mental process of a coach who is less secure in his job than Belichick.
那位教练会发现,“安全”却次等的弃踢选择更合心意,恰恰因为这么做能让他免遭球迷、媒体、甚至球队老板的怒火。
That coach would find the “safe” but inferior choice to punt the ball preferable precisely because it would shield him from the wrath of the fans, the press, and perhaps even the team’s owners.
每一天,那些做出了正确决策但短期结果不佳的人,都面临着丢掉工作的风险。这包括好莱坞影业公司里没能推出大片的部门主管、做了深思熟虑的投资却遭遇亏损的首席执行官,或者一两个季度业绩惨淡的基金经理。对许多专业人士来说,做出更好但更大胆的决策所面临的职业风险可能高到让他们无法承受。大多数领导者选择了逃避。
Every day, people who make good decisions with bad short-term outcomes risk losing their jobs. This might include the head of a studio in Hollywood who failed to deliver a blockbuster, a chief executive officer who made a reasoned investment that soured, or a money manager with poor results for a quarter or two. The career risk in making better but bolder decisions can be too high for many professionals to handle. Most leaders punt.
结果决定决策质量的评估
Outcomes Dictate Assessments of Decision Quality
结局偏见只有在特定条件下才会出现。考虑两方,做出决策的人与评判决策的人。如果评判者完全不知道决策者当时掌握的信息,那么将糟糕的结果等同于糟糕的决策是合理的——评判者没有其他依据可循。
Outcome bias only arises when certain conditions are in place. Consider two parties, the person making the decision and the person judging the decision. If the judge knows nothing of the information that decision maker had, it is reasonable to equate poor outcomes with poor decisions. The judge has nothing else to go on.
但当法官和决策者接触到相同信息,却仍将好结果等同于高超技能、坏结果等同于拙劣技能时,结果偏见就发生了。对于那些结果中包含了相当程度运气成分的决策而言,这种偏见尤为明显。
But when the judge has access to the same information as the decision maker and still equates a good outcome with good skill and a bad outcome with bad skill, outcome bias is at work. The bias is especially pronounced for decisions with outcomes that include a healthy dose of luck.
乔纳森·巴伦与约翰·赫希,这两位决策科学的学者,通过一项实验来展示这种偏见。在其中一个版本中,实验对象本身充当了评判者。他们被告知,一位 25 岁的男性赢得了一个奖项,这名男子未婚且拥有一份稳定的工作。该奖项提供两个选择:要么稳拿 200 美元,要么有 80% 的几率获得 300 美元、20% 的几率一无所获。研究人员告诉受试者,这名男子选择了赌一把。
Jonathan Baron and John Hershey, scholars of decision science, ran an experiment to show this bias. In one version, the subjects of the experiment were the judges. They were told that a 25-year-old man won a prize and that the man was unmarried and held a steady job. The prize was a choice between winning $200 for certain or an 80 percent chance of winning $300 and a 20 percent chance of winning nothing. The researchers told the subjects that the man selected the gamble.
研究人员随后向受试者展示了两种不同的结果:一种情况下,这名男子赢了 300 美元;另一种情况下,他什么都没得到。然后他们让受试者在 30 分(明显正确,相反决定不可接受)到 -30 分(错误且不可原谅)的范围内,对该男子决策的质量进行评分。由于评判者与做决策的男子拥有相同的信息,他们本应完全基于决策本身来评分,而不考虑结果。但实际情况并非如此。
The researchers then showed the subjects two different outcomes. In one the man won $300 and in the other he won nothing. They then asked the subjects to rate the quality of the man’s decision on a scale from 30 (clearly correct, the opposite decision would be unacceptable) to -30 (incorrect and inexcusable). Since the judges had the same information as the man making the decision, they should have rated the quality based solely on the decision itself, irrespective of the outcome. But that’s not what happened.
当受试者被告知那人赢了钱时,他们对他的决策质量打出了 7.5 分。
When the subjects were told that the man had won the money, they rated the quality of his decision a 7.5.
研究人员告知实验对象,这名男子一无所获后,实验对象给其决策打出了 –6.5 分。(见图表 1。)这些评分清楚表明,结果对实验对象如何评估决策产生了深刻影响。不知何故,实验对象未能将两个独立的问题区分开来:决策的质量和决策产生的结果。5
When the researchers told the subjects that the man had earned nothing, they rated his decision a -6.5. (See Exhibit 1.) These ratings are clear evidence that the outcomes deeply influenced how the subjects assessed the decision. Somehow, the subjects didn’t distinguish between two independent issues: the quality of the decision and the outcome from the decision.5
附件 1:实验揭示的结果偏差
Exhibit 1: Outcome Bias Revealed in an Experiment
选择揭示的结果评分(-30 至 +30)
Choice Revealed Outcome Rating (-30 to +30)
$200 with 100% chance $300 7.5
$200 with 100% chance $300 7.5
300 美元有 80% 概率归零
-6.5
来源:Jonathan Baron and John C. Hershey,“Outcome Bias in Decision Evaluation”,Journal of Personality and Social Psychology,Vol. 54,No. 4,April 1988,569-579。
$300 with 80% chance $0 -6.5 Source: Jonathan Baron and John C. Hershey, “Outcome Bias in Decision Evaluation,” Journal of Personality and Social Psychology, Vol. 54, No. 4, April 1988, 569-579.
我们可以从这一角度审视围绕贝利切克那次决定所引发的争议。尽管统计数据显示“放手一搏”的成功率
We can examine the furor around Belichick’s decision in this light. Even though the statistics on “going for it”
作出这一决定之前,相关数据广为流传,但多数人在评判这一决定的优劣时,手上并没有掌握这些数字。如果当时没有任何信息来源,要客观评判这一选择的质量会非常困难。因此,尽管对比利切克决定的批评显得有失偏颇,但鉴于他作出决定的那一刻,几乎没人了解他所掌握的信息,这种批评至少是可以理解的。
were widely available before the decision, most people assessing the quality of the decision did not have the numbers at their fingertips. Had there been no information from any source, it would have been very difficult to judge the quality of the choice objectively. So while the criticism of Belichick’s decision appears misplaced, it is at least understandable given that few knew what he did at the moment he decided.
巴伦和好时公司的实验结论更有力,因为它表明,即便手握那些信息的人,也很难将其与结果区分清楚。法官们怎么可能在只看到不同结果的情况下,对完全相同的决策给出不同评级?接下来我们来探究,为什么区分决策过程的品质和最终呈现的结果如此困难。
Baron and Hershey’s experiment is even more powerful, as it suggests that even those who have that information struggle to disentangle it from the outcome. How could judges place a different rating on the identical decision given only a different outcome? We’ll now explore why it’s so hard to distinguish between the quality of the process of making decisions and the outcomes that appear.
深入解读:解释器如何主导一切
A Look Under the Hood: How the Interpreter Rules the Day
迈克尔·加扎尼加是加州大学圣巴巴拉分校的神经科学家,他以对裂脑患者的精彩研究而闻名。这些患者曾饱受致残性癫痫发作的折磨。一位医生观察到,其中一名患者在胼胝体(连接大脑左右半球的神经束)上长出肿瘤后,癫痫症状得到了缓解。
Michael Gazzaniga is a neuroscientist at the University of California, Santa Barbara, who is best known for his fascinating study of split-brain patients. These are people who at one point suffered from debilitating epileptic seizures. A doctor observed that one of his patients got relief after he developed a tumor on his corpus callosum, the bundle of nerves connecting the left and right hemispheres of the brain.
因此,1940 年,医生们首次通过手术切断胼胝体来治疗这些患者,这实际上阻断了大脑两个半球之间的通信。这种治疗方法非常成功,癫痫发作次数急剧减少,患者们术后都报告感觉良好。但就我们的目的而言,这个手术最引人入胜的部分在于,它创造了一种非凡的实验条件,让神经科学家能够判断每个半球内部发生了什么。
So for the first time in 1940, doctors started treating these patients by surgically severing the corpus callosum, effectively stunting communication between the brain’s hemispheres. The treatment was very successful as the number of seizures decreased sharply and the patients all reported feeling fine after the operation. But for our purpose, the fascinating part of this procedure is that it created an extraordinary experimental condition that allowed neuroscientists to determine what happens in each of the hemispheres.6
这项研究最引人注目的发现之一是,左脑存在一个加扎尼加称之为“诠释器”的模块。大脑的这一部分会针对它看到的任何结果,轻松而迅速地编造出一个原因来解释它。诠释器“持续利用当前认知状态提供的输入和周围环境的线索来解释世界”,并且不考虑信息的来源或完整性。此外,诠释器“天生倾向于推断因果关系”。它对概率、随机性或运气一无所知。
One of the most remarkable findings from this research is that there is a module in the left hemisphere that Gazzaniga calls “the interpreter.” This part of the brain takes any effect that it sees and creates, effortlessly and rapidly, a cause to explain it. The interpreter “continually explains the world using inputs that it has from the current cognitive state and cues from the surroundings” and doesn’t consider the source or completeness of the information. Further, the interpreter is “driven to infer cause and effect.” It knows nothing of probability, randomness, or luck.7
加扎尼加通过对裂脑患者的实验,确定了解释器的位置和功能。
Gazzaniga figured out the location and function of the interpreter through experiments with split-brain patients.
这里有个例子。科学家给左脑看一张鸟爪的图片,给右脑看一张雪景的图片。由于胼胝体已被切断,每个半球都无法获取闪给另一个半球的图像。
Here’s an example. The scientists showed the left hemisphere a picture of a bird’s foot and the right hemisphere a picture of a snowy scene. Because the corpus callosum is cut, neither hemisphere has access to the image flashed to the other one.
研究人员随后要求患者指向与所看到图片一致的一个物体。
The researchers then asked the patient to point to an object that was consistent with the picture they saw.
与左脑相连的那只手选了一只鸡,再选了一根与鸡脚匹配的火柴;而与右脑相连的那只手则选了一把铲子——同样,面对雪景图片,这也是正确的选择。患者们毫不费力地做出了这些准确的选择。但掌管语言能力的左脑此刻却面临信息冲突。它能够观察到那只手指向铲子,但无从得知雪景图片的存在。
The hand affiliated with the left hemisphere selected a chicken, a match with the bird’s foot, and the hand affiliated with the right hemisphere picked a shovel—again, the correct choice given the image of the snowy scene. The patients made these accurate choices with ease. But the left hemisphere, where the capacity for language resides, now confronted discordant information. It could observe the hand pointing to the shovel, but had no access to the image of the snowy scene.
研究员问患者为什么指着铲子。正确的回答本该是“我不知道”。但翻译员毫不迟疑,告诉科学家他用铲子是为了清理鸡舍。请注意这里发生了什么:翻译员看到了一个结果(指向铲子),便编造了一个故事(用铲子清理鸡舍)来解释原因。大多数情况下,翻译员讲的故事是真的,而且紧贴事实。但关键在于,事实并不能约束翻译员——即便它只抓住了一个情境的大意,它也会运作。
The researcher asked the patient why he was pointing at the shovel. The correct answer would have been, “I don’t know.” But the interpreter didn’t miss a beat, informing the scientist that he needed a shovel to clean out the chicken shed.8 Note what’s going on here. The interpreter sees an effect (pointing to the shovel) and creates a story (a shovel to clean the shed) to explain the cause. More often than not, the story the interpreter tells is true and follows the facts closely. But the essential point is that facts do not constrain the interpreter. It operates even if it only gathers the gist of a situation.
加扎尼加和他的同事进行了另一项测试,称为概率猜测实验,旨在理解左右半球如何运作。在这个实验中,受试者看到电脑屏幕顶部或底部闪烁的灯光。受试者的目标是猜测灯光会闪烁在中线以上还是以下。科学家将闪烁设置为顶部出现 80% 的概率。
Gazzaniga and his colleagues ran another test, called the probability guessing experiment, to understand how the left and right hemispheres operate. In this experiment, the subject sees lights that flash either at the top or the bottom of the computer screen. The subject’s objective is to guess whether the light will flash above or below the midpoint. The scientists set the flashes so that they appeared at the top 80 percent of the time.
研究人员用鸽子、老鼠和四岁以下儿童做过类似版本的实验。
Researchers have done a version of this experiment with pigeons, rats, and children under the age of four.
科学家给动物和幼儿受试者提供了奖励,用于正确猜测。它们每一个的行为都像一个“最大化者”。一旦它们发现闪光主要出现在上方,就会每次都选择上方,正确率达到 80%。它们最大化自己的奖励。
The scientists give the animal and young human subjects rewards for correct guesses. Each of them behaves as a “maximizer.” Once they figure out that the flashes are predominantly on the top, they select the top every time and are correct 80 percent of the time. They maximize their reward.
但四岁以上的人类是模式搜寻者,会试图找出随机闪灯的顺序。结果就是,他们答对的概率只有约三分之二。科学家把那些试图猜测模式的人称为“频率匹配者”。频率匹配者虽然知道 80% 的亮灯在中点以上,但不会每次都猜顶部,而是努力去洞察某种规律。
But humans older than four are pattern seekers, and try to determine the order in which the random lights flash. As a result, they answer correctly only about two-thirds of the time. Scientists call those who try to guess the pattern “frequency matchers.” While frequency matchers recognize that 80 percent of the flashes are above the midpoint, they are not content to guess the top every time but rather attempt to discern a pattern.
对于裂脑患者,加扎尼加可以观察到这种寻找模式倾向在大脑中的位置。当研究人员向右脑呈现概率猜测实验时,他们发现右脑和鸽子、老鼠以及小孩一样,是一个最大值追求者。但在同样的实验中,左脑却表现得像一个频率匹配器。左脑正是你大脑中负责寻找模式的部分。
With split-brain patients, Gazzaniga could see where this tendency to search for patterns resides. When the researchers presented the probability guessing experiment to the right hemisphere, they found that it was a maximizer just as the pigeons, rats, and little kids were. But with the same experiment the left hemisphere acted as a frequency matcher. It is the part of your brain that is responsible for finding patterns.
这一切把我们带到了哪里?我们知道,当我们看到一个结果,却不了解决策者当时掌握的信息时,我们的头脑会下意识地把好结果与好决策挂钩,坏结果则归因于能力不足。我们还知道,大脑中有个部分能流畅自动地完成这套动作。如果掌握了充分的信息,这个解释器会编出正确的故事。但它也乐意凭空编造,强行给世界赋予秩序,哪怕它并不掌握所有必要的信息。
Where does all of this leave us? We know that when we see an outcome and don’t know what information the decision maker had, our minds assume that good outcomes are associated with good decisions and bad outcomes are linked to poor skill. Further, we know that there is a part of our brain that does this fluently and automatically. The interpreter will come up with a correct story if it has the proper information. But it is willing to make up a story, imposing order on the world, even if it doesn’t have all of the proper information.
研究人员在裂脑患者身上分离出了脑内解释器的功能,但这个机制每天都在我们所有人的脑子里运行。结果是,它让我们自己做出糟糕的决策,也让我们对他人判断的评价出现偏差。
Researchers have isolated the function of the interpreter in split-brain patients, but it runs in all of our heads every day. And this leads us to make poor decisions ourselves and to craft faulty assessments of the judgments of others.
运气把诠释者耍得团团转。
Luck Throws the Interpreter for a Loop
当随机性和运气在结果中扮演重要角色时,阐述者(interpreter)的校准能力往往特别差。它看到了结果,却很难看清明确的原因,于是不得不推断出某种技能或其他因果机制。
The interpreter tends to be particularly poorly calibrated when randomness and luck play a large role in determining results. The interpreter sees the effect but has a difficult time seeing a clear-cut cause, so it has to infer some skill or other causal mechanism.
近期一项实验表明,我们有多么难以接受随机性的作用。⁹ 研究人员将受试者分成两组:A 组 20 人,B 组 28 人。在第一阶段,A 组成员需预测五次硬币抛掷的结果,每猜对一次获得 2 欧元,猜错则没有任何收入。B 组成员则仅在一旁观察。
A recent experiment shows just how hard it is for us to accept the role of randomness.9 The researchers separated their subjects into two groups. Group A had 20 players and group B had 28. In phase I of the experiment, members of group A were asked to call five coin tosses and received €2 for every correct call and nothing for a wrong call. Those in group B simply observed the action.
接着,研究人员让 A 组中六名成员离开房间,这六人的正确率涵盖了从全部正确(5 题全对)到全部错误(5 题全错)的完整区间。
The researchers then asked six members of group A, representing a range of success rates from all correct (5-of-5) to all incorrect (0-of-5), to leave the room.
第二阶段中,研究人员告诉 B 组成员:A 组中有两名选手——第一阶段猜对次数最多的那位和猜错最多的那位——将额外进行一轮五次抛硬币的猜测。B 组成员每人获得 10 欧元,并被告知其中某位选手的猜测结果将决定他们的收益——猜对一次获 4 欧元,猜错一次扣 2 欧元。
In Phase II, the researchers told the members of group B that two players from group A, the individual who got the most calls right and the individual who got the most wrong in Phase I, would engage in an additional round of calling five coin tosses. Group B members were given €10 and were told that the calls of one of the players would determine their payoff—they would receive €4 for a correct call and lose €2 for an incorrect call.
问题就在这里:B 组的全部玩家默认分配给了第一阶段猜对次数最少的那个人。
Here was the catch: All players in group B were assigned by default to the player who had the fewest correct calls in Phase I.
研究人员随后向 B 组成员提供了一个选择:他们可以坚持默认分配,即那个扔硬币结果很差的呼叫者,或者从自己的 10 欧元中拿出一定金额,用以交换到那个猜对次数最多的学生。此时,B 组成员表示了他们愿意支付多少来换取调换。
The researchers then presented the members of group B with a choice. They could either stick with the default assignment, the bad coin toss caller, or offer to pay some amount of their €10 to switch to the student who called the most right. At this point, the group B players indicated how much they would be willing to pay to switch.
这项实验的对象是接受过系统随机性教育的金融专业学生。既然抛硬币的结果完全由随机性决定,实验对象根本没有理由更换人选。如果他们需要为此支付费用,尤其不应该这么做。然而,B 组有 82%(28 人中的 23 人)给出了代表他们愿意为更换而支付的金额。那些选择从猜对 0 次的人换到猜对全部 5 次的人的 B 组玩家,平均愿支付近 3 欧元(见表 2)。
The subjects in this experiment were students of finance who were explicitly taught about randomness. Given that the coin tosses were truly left to chance, the subjects had no basis to switch. This was especially true if they had to pay a price to do so. Yet 82 percent of group B (23 of 28) provided a price representing their willingness to pay to switch. The players in group B who switched stated an average price of almost €3 to switch from a person who called none correct to one who called all five (see Exhibit 2).10
我们可以把这一实验的结果理解为结果偏差。我们的头脑看到某个结果,就推断作出决定的人拥有或好或坏的能力。你或许倾向于认为,这种行为在商业世界不会持续存在。但我们总能见到它的各种版本。
We can interpret the result of this experiment as outcome bias. Our minds see an outcome and infer that the person making the decision has good or bad skill. You might be inclined to believe that such behavior wouldn’t persist in the business world. But we see versions of it all the time.
附录 2:在一场随机游戏中,受试者愿意为过去的好运气买单
Exhibit 2: Subjects Are Willing to Pay for Past Good Luck in a Random Game
A 组成员对五次抛硬币的结果进行猜测。研究人员从中找出猜对次数最多的人和猜错次数最多的人。
Group A members call five coin Best Worst tosses. Researchers isolate person who called the most Group A correct and person who called the most incorrect.
所有 B 组成员被分配给 A 组玩家,B 组中错误喊牌次数最多的成员出局。
All Group B members assigned to Group A player Group B with most incorrect calls.
Best Worst
Best Worst
Group A
Group A
B 组成员享有 82% 的薪酬,18% 享有以现金转换的选择权,无需为转换付费。
Group B members given 82% pay 18% the option to pay money to switch don’t pay to switch.
Group B
Group B
来源:Silvia Bou、Jordi Brandts、Magda Cayón 和 Pablo Guillén,《运气的价格》,悉尼大学经济学工作论文系列 2013-10,2013 年 6 月。
Source: Silvia Bou, Jordi Brandts, Magda Cayón, and Pablo Guillén, “The Price of Luck,” The University of Sydney Economics Working Paper Series 2013-10, June 2013.
举个例子,有证据表明,个人和机构投资者都明显倾向于抛售表现不佳的资金或资产类别,转而买入表现好的。个人尤其热衷于买入热门品种,以至于学者们给这种现象起了个名字:“蠢钱效应”。这项研究显示,平均而言,如果个人投资者当初只是原地不动、持有原有投资,而不是换到新的上面,他们的回报率本可以高出 1 个百分点。这与那些愿意花钱去听“好投手”猜硬币的人如出一辙——投资者也愿意承受成本,去换到热门基金。
Take, for instance, the evidence that individual and institutional investors have a clear tendency to shed funds or asset classes that have done poorly and buy those that have done well. Individuals have such a proclivity to buy what’s hot that academics have a name for it: “the dumb money effect.” This research shows that individual investors, on average, would have earned one percentage point more in returns if they had simply stayed put with their prior investments versus switching to new ones. Similar to the subjects who were willing to pay to have access to the good coin toss caller, investors are willing to incur costs to switch to hot funds.11
机构投资者虽然表面上看更加老练,但也未能免于这种偏见。对资产配置决策的分析——无论是从一个资产类别转向另一个资产类别,还是在同一资产类别内从一个管理人转向另一个管理人——都表明,机构通常无法增加价值。它们买入的产品表现不如它们卖出的产品。据估算,这种损失高达 1700 亿美元,即使考虑到数万亿美元的资产管理规模,这仍然是一笔可观的数字。¹²
Institutional investors, despite their ostensibly greater sophistication, are not immune to the bias. Analysis of asset allocation decisions, both from one asset class to another and from one manager to another within an asset class, show that institutions generally fail to add value. The institutions buy products that underperform the ones they sell. One estimate places the foregone value at $170 billion, a sizeable sum even considering the trillions of assets under management.12
另一个例子是决定从另一家公司挖来一位明星员工。哈佛商学院组织行为学教授鲍里斯·格罗伊斯伯格详细研究过这个话题。他的其中一项研究针对的是《机构投资者》评出的顶级卖方分析师,这些分析师从一家公司跳槽到另一家公司。结果偏误让人以为,这些分析师的出色表现完全反映的是他们个人的技能,因此这种技能应该能带到另一家公司。
Another example is the decision to hire a star from another company. Boris Groysberg, a professor of organizational behavior at Harvard Business School, has examined this topic in detail. One of his studies was of top-rated sell-side analysts, as determined by Institutional Investor, who switched from one firm to another. Outcome bias would suggest that the excellent performance of the analysts was perceived to be solely a reflection of their skill. That skill, as a result, should be portable to another company.
格罗斯伯格发现,跳槽的股票分析师其业绩“大幅下滑”。成功的分析师受益于他们所工作的机构,很可能还沾了大量好运气的光。这两样东西都不会随着他们转会而转移。这就是招聘版的“傻钱效应”。 参考资料 13
Groysberg found that the performance of analysts who switched firms “plunged sharply.” Successful analysts benefit from the organization in which they work and likely a large dose of good luck. Neither of those transfers from one firm to the next. This is the hiring version of the “dumb money effect.”13
如何管住那位"解读者"
How to Keep the Interpreter in Check
考虑到结果偏见如此普遍以及由此引发的大量错误决策,问题在于该如何应对。
Given the prevalence of outcome bias and the poor decisions that it spawns, the question is what to do about
以下是根据要求的译文输出(仅一个段落):
它。你可以采取以下两个步骤来约束这个“解释者”:
it. Here are two steps you can take to help keep the interpreter in check:
衡量这项活动中运气的成分。生活中很少有确定无疑的事情。大多数事件只是以某种概率发生。第一步是判断其中有多少空间是留给解读者的——
Measure the amount of luck in the activity. There are few sure things in life. Most events only happen with some probability. The first step is determining how much room there is for the interpreter to
在存在随机性的地方,解读者的作乱空间就很大。在那些因果难以确定、专家也不善于预测结果的领域,解读者的言行需要受到严密监控。在特定领域中,存在相当精确的方法来估算技能与运气各自的相对贡献。14
run. Where there is randomness, there is ample opportunity for the interpreter to get into mischief. For realms where causality is hard to pinpoint and experts are poor at predicting outcomes, the interpreter requires close monitoring. In certain fields, there are reasonably precise methods for estimating the relative contributions of skill and luck.14
运气起作用的地方,要看过程。当结果完全由技能决定时,结果本身就能准确衡量技能。想想百米赛跑中的短跑运动员,或是舞台上的音乐会钢琴师——因果链条清晰明确,没有理由担心结果偏差。
Where there is luck, focus on the process. When skill exclusively determines results, outcomes alone are an accurate measure of skill. Think of the sprinter in a 100-meter dash or a concert pianist on stage. The link from cause to effect is clear, and there is no reason to worry about outcome bias.
当运气对结果产生影响时,你必须审视决策形成的全过程。虽然良好的流程在长期内能带来最佳结果的最大概率,但在短期内,流程与结果之间的联系是松散的。在这个领域,你必须勤勉地抵御结果偏差。结果不应影响你对决策质量的判断。请注意,如果你无法完全了解决策者的流程,你的大脑会将糟糕的结果与糟糕的技能联系起来。
When luck contributes to results, you must consider the process by which the decision was made. While a good process leads to the highest probability of good results over time, the link between process and outcome is loose in the short run. This is the realm where you must diligently fend off outcome bias. The results should not color your assessment of the quality of the decision. Note that if you don’t have full access to the decision maker’s process, your mind will associate poor results with poor skill.
一个相关的要点是:你不应该假设好的结果就一定反映了好的过程。这是伦理学中的一个重要主题。例如,研究表明,“人们会因为他人做出了合理决策却遭遇不幸结果,而过于严厉地指责他们”,同时,“我们在很长时间内对道德上有问题的决定视而不见,直到它们导致负面结果,即便这些结果很容易被预料到”。
A related point is that you should not assume that good results are a reflection of a good process. This is an important topic in ethics. For instance, research shows that “people blame others too harshly for making sensible decisions that have unlucky outcomes,” and “we let ethically-questionable decisions slide for a long time until they result in negative outcomes, even in cases in which such outcomes are easily
可预测的。”15 后者的一例是审计师独立性。大量研究表明,如果审计师同时兼任一家公司的顾问,他们将很难保持客观。包括安然、世通和泰科在内的一系列著名失败案例,暴露了这种利益冲突的弊端。
predictable.”15 An example of the latter is auditor independence. A substantial amount of research shows that it is difficult for auditors to remain objective if they are also engaged as a firm’s consultant. A handful of high-profile failures, including Enron, WorldCom, and Tyco, revealed the downside of these conflicts.
然而,尽管这些公司产生了看似令人满意的结果,它们的决策过程却很少受到质疑。
Yet while these companies generated what appeared to be satisfactory outcomes, their processes were rarely questioned.
我们的头脑真是奇妙。尤其是那个“解释器”,它在建立因果关联方面的能力令人惊叹。事实上,有些科学家认为,推断因果关系的能力正是人类区别于其他物种的关键所在。这个解释器会不费吹灰之力地吸收已有信息,然后编造出一个故事来解释它。在因果联系紧密的领域,这没有问题。但在那些结果是技巧与运气共同作用、或者复杂性掩盖了因果关系的领域,解释器就会犯下严重错误。而这可能导致糟糕的决策。
Our minds are wondrous. The interpreter, in particular, is amazing at associating cause and effect. Indeed, some scientists argue that the ability to infer cause and effect is essential to what distinguishes humans from other species.16 The interpreter effortlessly takes information that it has and creates a narrative to explain it. In areas where cause and effect are closely linked, there is no problem. But in areas where results are a combination of skill and luck or where complexity hides causality, the interpreter blunders badly. This can lead to poor decisions.
迈克尔·加扎尼加对裂脑患者的开创性研究,为我们理解大脑的运作方式提供了至关重要的洞见。其中一个关键启示是,解释器在我们所有人的脑海里不知疲倦地编织故事。了解解释器何时容易出错,对于改善决策极为宝贵。
Michael Gazzaniga’s pathbreaking research on split-brain patients allowed for crucial insight into how the mind works. A key lesson is that the interpreter tirelessly spins its tales in all of our heads. Knowing when the interpreter is likely to stumble is very valuable in improving decision making.
Endnotes:
Endnotes:
1 Pete Prisco,<Colts Make Pats Pay for Bill's Unusually Dumb Decision>,《CBSSports.com》,2009 年 11 月 16 日。对于不熟悉最后那句话背后故事的人,特德·威廉姆斯是一位著名棒球运动员,他去世后头部被低温冷冻,寄望未来科技能让他复活。
1 Pete Prisco, “Colts Make Pats Pay for Bill’s Unusually Dumb Decision,” CBSSports.com, November 16, 2009. For those unfamiliar with the story behind the final line, Ted Williams was a famous baseball player whose head was cryogenically frozen after he died in the hope that a technology in the future would be able to bring him back to life.
2 “A Football Life: Bill Belichick,” NFL Films, (NFL Network: August 29, 2011).
2 “A Football Life: Bill Belichick,” NFL Films, (NFL Network: August 29, 2011).
3 Brian Burke,“Belichick 在对阵小马队时的第四档决策”,Advanced NFL Stats,2009 年 11 月 16 日。详见 http://www.advancednflstats.com/2009/11/belichicks-4th-down-decision-vs-colts.html。
3 Brian Burke, “Belichick’s 4th Down Decision vs the Colts,” Advanced NFL Stats, November 16, 2009. See http://www.advancednflstats.com/2009/11/belichicks-4th-down-decision-vs-colts.html.
伯克的推算如下。他假设在这种情况下,第四档转换的成功率为 60%,而如果爱国者队丢掉球权,对手得分的概率为 53%。那么获胜概率就是:
Burke’s calculation is as follows. He assumed that a fourth down conversion in that situation would occur 60 percent of the time and that if the Patriots were to turn the ball over, the opposing team would score 53 percent of the time. So the win probability would be:
(0.60 * 1) + (0.40 * (1 - 0.53)) = 0.79 WP 从那个位置弃踢通常会让对手从本方 34 码线开始进攻,而球队在剩余时间内得分的概率是 30%。因此爱国者队选择弃踢的获胜概率为:(1 - 0.30) * 1 = 0.70 WP 这些隐含概率假设的是联盟平均水平。可以说,爱国者队的进攻组转换成功的概率高于 60%——那场比赛球队总进攻码数为 477 码——而小马队进攻组在接手进攻后的得分概率也可能更高。但即使你把假设条件往有利于小马队的方向拉伸,也很难从分析角度为弃踢而非强攻四档找到理由。4 Jonathan Baron and John C. Hershey,“决策评估中的结果偏差”,《人格与社会心理学杂志》,第 54 卷,第 4 期,1988 年 4 月,第 569-579 页。
(0.60 * 1) + (0.40 * (1-0.53)) = 0.79 WP A punt from that spot on the field typically places the opponent on their own 34 yard line, and teams score on 30 percent of their chances within that amount of time. So the Patriots win probability for punting would be: (1-0.30) *1 = 0.70 WP These underlying probabilities assume league averages. Arguably, the Patriots offense had a probability of converting that was higher than 60 percent—the team had 477 yards in total offense that game—and the Colts offense perhaps had a higher probability of scoring after taking over on downs. But even if you stretch the assumptions in favor of the Colts, it’s hard to make an analytical case for punting versus going for it. 4 Jonathan Baron and John C. Hershey, “Outcome Bias in Decision Evaluation,” Journal of Personality and Social Psychology, Vol. 54, No. 4, April 1988, 569-579.
5 Ibid.
5 Ibid.
迈克尔·S·加扎尼加,《谁说了算?:自由意志与大脑科学》(纽约:哈珀柯林斯出版社,2011 年),第 53-54 页。
6 Michael S. Gazzaniga, Who’s In Charge?: Free Will and the Science of the Brain (New York: HarperCollins, 2011), 53-54.
7 Ibid., 86.
7 Ibid., 86.
8 Michael S. Gazzaniga,《再探裂脑研究》(The Split Brain Revisited),《科学美国人》杂志,1998 年 7 月,第 50-55 页。
8 Michael S. Gazzaniga, “The Split Brain Revisited,” Scientific American, July 1998, 50-55.
9 Silvia Bou,Jordi Brandts,Magda Cayón,和 Pablo Guillén,《运气的代价》,悉尼大学经济工作论文系列 2013-10,2013 年 6 月。
9 Silvia Bou, Jordi Brandts, Magda Cayón, and Pablo Guillén, “The Price of Luck,” The University of Sydney Economics Working Paper Series 2013-10, June 2013.
10 在第三阶段,研究人员确定了 B 组中哪些成员确实进行了转换,并设定了额外五轮的收益。例如,被分配到“差劲打电话者”的 B 组受试者每轮下注 2 欧元,如果打电话者成功击中则赢得 4 欧元,如果未中则获得零。因此,B 组玩家最多只会损失初始的 10 欧元。
10 In Phase III, the researchers determined which members of group B did indeed switch and established payoffs for the additional five rounds. For example, group B subjects assigned to the poor caller bet €2 per round, winning €4 if the caller got a hit and receiving zero for a miss. So no group B player could lose more than the €10 they started with.
11 Andrea Frazzini 和 Owen A. Lamont,《傻钱:共同基金资金流与股票回报的截面分析》,《金融经济学杂志》,第 88 卷,第 2 期,2008 年 5 月,第 299-322 页。
11 Andrea Frazzini and Owen A. Lamont, “Dumb Money: Mutual Fund Flows and the Cross-Section of Stock Returns,” Journal of Financial Economics, Vol. 88, No. 2, May 2008, 299-322.
Scott D. Stewart,CFA,John J. Neumann,Christopher R. Knittel,以及 Jeffrey Heisler,CFA,《价值的缺失:机构计划发起人投资配置决策分析》,《金融分析师杂志》,第 65 卷,第 6 期,2009 年 11 月/12 月,第 34-51 页。另见 Amit Goyal 与 Sunil Wahal,《计划发起人对投资管理公司的选择与终止》,《金融学刊》,第 63 卷,第 4 期,2008 年 8 月,第 1805-1847 页;以及 Jeffrey Heisler,Christopher R. Kittel,John J. Neuman,与 Scott D.
12 Scott D. Stewart, CFA, John J. Neumann, Christopher R. Knittel, and Jeffrey Heisler, CFA, “Absence of Value: An Analysis of Investment Allocation Decisions by Institutional Plan Sponsors,” Financial Analysts Journal, Vol. 65, No. 6, November/December 2009, 34-51. Also, Amit Goyal and Sunil Wahal, “The Selection and Termination of Investment Management Firms by Plan Sponsors,” Journal of Finance, Vol. 63, No. 4, August 2008, 1805-1847; and Jeffrey Heisler, Christopher R. Kittel, John J. Neuman, and Scott D.
斯图尔特,“机构计划发起人为何聘用和解雇他们的投资经理?”《商业与经济研究期刊》,第 13 卷,第 1 期,2007 年春季,第 88-118 页。
Stewart, “Why Do Institutional Plan Sponsors Hire and Fire Their Investment Managers?” Journal of Business and Economic Studies, Vol. 13, No. 1, Spring 2007, 88-118.
13 鲍里斯·格罗伊斯伯格,《追逐明星:人才神话与绩效的可移植性》(普林斯顿,新泽西州:普林斯顿大学出版社,2010 年);以及鲍里斯·格罗伊斯伯格、莱克斯·桑特和罗宾·亚伯拉罕斯合著,“当‘明星’
13 Boris Groysberg, Chasing Stars: The Myth of Talent and the Portability of Performance (Princeton, NJ: Princeton University Press, 2010); and Boris Groysberg, Lex Sant, and Robin Abrahams, “When ‘Stars’
迁移后,它们还能保持明星级表现吗?《麻省理工斯隆管理评论》,第 50 卷,第 1 期,2008 年秋季,第 41-46 页。
Migrate, Do They Still Perform Like Stars?” MIT Sloan Management Review, Vol. 50, No. 1, Fall 2008, 41- 46.
14 Michael J. Mauboussin,《成功方程式:解开商业、体育和投资中的技能与运气》(马萨诸塞州波士顿:哈佛商业评论出版社,2012 年),第 67-90 页。
14 Michael J. Mauboussin, The Success Equation: Untangling Skill and Luck in Business, Sports, and Investing (Boston, MA: Harvard Business Review Press, 2012), 67-90.
15 Francesca Gino、Don A. Moore 和 Max H. Bazerman,“无害即无过:道德判断中的结果偏差”,哈佛商学院工作论文 08-080,2009 年 4 月。
15 Francesca Gino, Don A. Moore, and Max H. Bazerman, “No Harm, No Foul: The Outcome Bias in Ethical Judgments,” Harvard Business School Working Paper 08-080, April 2009.
16 Lewis Wolpert, 《早餐前的六件不可能之事:信念的进化起源》(纽约:W.W. Norton 出版社,2007 年)。
16 Lewis Wolpert, Six Impossible Things Before Breakfast: The Evolutionary Origins of Belief (New York: W.W. Norton, 2007).