Simpson's Paradox
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Simpson's Paradox
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Re: Simpson's Paradox
#2Re: Simpson's Paradox
#3In short, Simpson's paradox occurs because probability distributions and causal claims are distinct things which behave differently. It's nothing more than a particular, insidious example of correlation not implying causation. It's perfectly possible for a probability distribution to have a "contradictory" shape, but perfectly impossible for logical statements about the world to be contradictory.
The resolution is that you shouldn't let your probability distributions turn into logical statements without analyzing your causal assumptions. This will lead you to whether or not excluding a variable is omitted variable bias (and whether including an improper one will lead to included variable bias, which is rarely recognized).
Re: Simpson's Paradox
#4The almost universally omitted variable is health-consciousness. Some people are health-conscious and some aren't. People who are health-conscious do a whole bunch of things, some of which help (like exercise, sleep well, eat moderately). They also do things that are widely believed to be good for you, like eating broccoli.
So if you do a study, you'll find that people who eat lots of broccoli are healthier. You'll be able to confirm pretty much any widely believed health folk wisdom, unless it's something quite harmful, as long as you omit health-consciousness as a variable.
Re: Simpson's Paradox
#5The Omitted Variable Problem is part of my mental framework that causes me to not believe most epidemiological studies, especially ones that confirm a popular belief. The almost universally omitted variable is health-consciousness. Some people are health-conscious and some aren't. People who are health-conscious do a whole bunch of things, some of which help (like exercise, sleep well, eat moderately). They also do t…
That is, if they can control for it, they can make assertions about smaller effects.
Re: Simpson's Paradox
#6Reminds me of Anscombe's Quartet: four datasets that have the same mean, variance, correlation, and linear regression, but are really very different. http://en.wikipedia.org/wiki/Anscombe%27s_quartet
Re: Simpson's Paradox
#7What is the meaning of the green and purple lines on the graph, why do they have different gradients and why can't I adjust them? Why does the Simpson's Paradox apply sometimes and not others? Why are there so many bars and donut charts? What does the gray circle around the donuts mean? Information overload.
Re: Simpson's Paradox
#8The Omitted Variable Problem is part of my mental framework that causes me to not believe most epidemiological studies, especially ones that confirm a popular belief. The almost universally omitted variable is health-consciousness. Some people are health-conscious and some aren't. People who are health-conscious do a whole bunch of things, some of which help (like exercise, sleep well, eat moderately). They also do t…
Re: Simpson's Paradox
#9Re: Simpson's Paradox
#10The Omitted Variable Problem is part of my mental framework that causes me to not believe most epidemiological studies, especially ones that confirm a popular belief. The almost universally omitted variable is health-consciousness. Some people are health-conscious and some aren't. People who are health-conscious do a whole bunch of things, some of which help (like exercise, sleep well, eat moderately). They also do t…
Surely some studies account for this? If you look for people who do X and people who don't and just analyze their lives, yes this problem is likely to exist. But if you take two randomized samples of a the population and say to group A, "do X," and to group B "don't do X," you have an effective control group. At least I think so. Don't some dietary studies even provide the participants with custom food regimens to tr…