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6.2 Hill's Criteria: Difference between revisions

From Sense & Sensibility & Science
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== Context ==
== Context ==


[Explanation of how the current topic into the larger context of the course by explaining how the previous topic(s) relate to the current topic and leaving cliffhangers for future topics where relevant throughout the lesson]
This is a discussion-based lesson that familiarises students with the concept of Hill’s criteria, which are used when an ideal experiment (e.g. RCT) could not be done due to resource or ethical considerations. The criteria themselves are not difficult, but students typically have trouble remembering their names, and they would benefit from a diverse range of examples.


=== Before ===
=== Before ===
 
: '''[[2.2 Causation and Correlation]]'''
: '''[[X.X Lesson Name]]'''
:* RCTs are introduced as ideal experiments. These are often not possible due to resource or ethical considerations, and we must resort to Hill’s criteria to examine the plausibility of a causation.
:: Explanation.
:* Causation is defined as correlation under manipulation. When manual manipulation is not possible, Hill’s criteria can still help establish causation.
:* Itemized explanation.
: '''[[3.1 Systematic and Statistical Uncertainty]]'''
:: When coming up with alternative explanations to an apparent correlation between two variables, it helps to consider factors that contribute to systematic and statistical uncertainties.


=== After ===
=== After ===


: '''[[X.X Lesson Name]]'''
: '''[[6.1 Probabilistic Thinking]]'''
:: Explanation.
:: In the upcoming lesson on Probabilistic Reasoning, students will explore how to use quantified credence (i.e., confidence) levels to track and communicate their certainty about claims and predictions. For example, a .50 credence level indicates a 50-50 chance the claim is false or true, whereas a 1.00 credence level indicates complete certainty. Because it is difficult to impossible to conclusively infer causation without an RCT, Hill’s criteria are typically used to infer causation with varying degrees of confidence, such that each additional piece of evidence (especially of new types) increases the confidence that the causal claim is true.
:* Itemized explanation.
: '''[[9.2 When Is Science Suspect]]'''
:: In this upcoming lesson, students will explore how science has sometimes been used to justify the oppression of certain human groups, e.g. by inferring from current differences in achievement fundamental differences in capacity, when in fact these differences in achievement can be fully explained by differences in opportunity. Because it is impossible to randomly assign individuals to human groups such as “African-Americans” or “women,” all of this science is observational, and subject to the limitations of observational research. In evaluating non-RCT evidence, it is important to remember these limitations of observational as opposed to experimental research, especially when data may be used to exacerbate existing injustices.


== Recommended Outline ==
== Recommended Outline ==

Revision as of 18:08, 26 November 2021


Learning Goals

[Link to PlayPosit]

[Link to instructional video]

More details

After this lesson, students should

  1. Identify cases in which “ideal” experiments are not possible, due to ethical or practical constraints.
  2. For a given scenario in which a causal hypothesis/claim is being made, identify plausible alternative hypotheses that could be consistent with the data.
  3. Identify additional sources of evidence that could be used to help mitigate flawed experiments, including prior plausibility, dose-response relationships, specificity, temporal ordering, and multiple consistency across contexts.
  4. Recognize when causal evidence in the absence of an RCT can be fairly compelling, especially if there are many different types of evidence combined.

Definitions

Hill's criteria:

  • Prior plausibility
    Can a plausible mechanism be constructed, or is there some other basis for interpreting the current evidence in terms of one causal structure over another, such as data from other studies?
  • Temporality/temporal sequence
    Did the hypothesized cause precede the effect?
  • Specificity
    Specific predictions for specific consequences that have come true are less likely to be caused by other factors.
  • Dose-response curve
    Do the quantities of the hypothesized cause correlate with the quantity, severity, or frequency of the hypothesized effect across ranges?
  • Consistency across contexts
    Does the correlation appear across diverse contexts?
It is not necessary for all of Hill’s criteria to be satisfied to infer causation. Each criterion adds to the case for causation. Some criteria are not applicable in certain situations (e.g. dose-response curve in whether light switches cause the light to turn on and off).

Common Misconceptions

  • Since we can't run a randomized controlled trial on whether CO2 emissions cause global warming, we can't ever know whether it does.
    A non-RCT study can still be serve as potentially weaker, but sometimes just as strong, evidence for causation.
  • Students are quick to notice small sample size, slower to notice problems with experimental design.
  • Students struggle to generate non-RCT types of evidence for causality, although they are better at recognizing it.
  • Identifying natural experiments is also difficult, probably because many students find the principles of RCTs slippery.

Context

This is a discussion-based lesson that familiarises students with the concept of Hill’s criteria, which are used when an ideal experiment (e.g. RCT) could not be done due to resource or ethical considerations. The criteria themselves are not difficult, but students typically have trouble remembering their names, and they would benefit from a diverse range of examples.

Before

2.2 Causation and Correlation
  • RCTs are introduced as ideal experiments. These are often not possible due to resource or ethical considerations, and we must resort to Hill’s criteria to examine the plausibility of a causation.
  • Causation is defined as correlation under manipulation. When manual manipulation is not possible, Hill’s criteria can still help establish causation.
3.1 Systematic and Statistical Uncertainty
When coming up with alternative explanations to an apparent correlation between two variables, it helps to consider factors that contribute to systematic and statistical uncertainties.

After

6.1 Probabilistic Thinking
In the upcoming lesson on Probabilistic Reasoning, students will explore how to use quantified credence (i.e., confidence) levels to track and communicate their certainty about claims and predictions. For example, a .50 credence level indicates a 50-50 chance the claim is false or true, whereas a 1.00 credence level indicates complete certainty. Because it is difficult to impossible to conclusively infer causation without an RCT, Hill’s criteria are typically used to infer causation with varying degrees of confidence, such that each additional piece of evidence (especially of new types) increases the confidence that the causal claim is true.
9.2 When Is Science Suspect
In this upcoming lesson, students will explore how science has sometimes been used to justify the oppression of certain human groups, e.g. by inferring from current differences in achievement fundamental differences in capacity, when in fact these differences in achievement can be fully explained by differences in opportunity. Because it is impossible to randomly assign individuals to human groups such as “African-Americans” or “women,” all of this science is observational, and subject to the limitations of observational research. In evaluating non-RCT evidence, it is important to remember these limitations of observational as opposed to experimental research, especially when data may be used to exacerbate existing injustices.

Recommended Outline

Before Class

  • [Any essential logistical things that need to be done for this class]
  • Prepare a seating chart.
  • Review PlayPosit and discussion questions and ask faculty, Gabriel, or Emlen any questions you have.
  • (Optional) Prepare a presentation.

During Class

  • (5 min) Come up with some fun way to assign the roles of spokesperson and notetaker (e.g. earliest birthday in the year, lives furthest from campus). Remind them of the responsibilities of these roles.
  • ([#] min) [Description of some module from #Lesson Content]
  • (5 min) Collect questions for plenary.

Lesson Content

Clicker Question

  1. Question
    1. Option 1
    2. Options 2

Activity 1: Name

[Brief description of and motivation for the activity]

Common misconceptions and any useful tricks, tips, guidelines, or other background

Instructions

Discussion Questions

  1. Question 1
    1. Subquestion a
      Possible misconception that may need to be corrected and clarified.
      Intended answer to the above question.
    2. Subquestion b

Collect Questions for Plenary

(5 min) Collect remaining questions from the students for faculty in plenary (can be questions for clarification, extension, discussion, etc.), and add [ here].