Motor control: feedback, timing and evidence
| English | Français |
|---|---|
| augmented feedback/ɔːɡˈmentɪd ˈfiːdbæk/ | augmented feedback |
| knowledge of results/ˈnɒlɪdʒ ɒv rɪˈzʌlts/ | knowledge of results |
What would explain this observation?
- A learner adjusts a slow movement after seeing an error, but a very fast action may end before visual feedback can change it. Timing constrains the role of feedback.
- Start with a prediction. State the quantities or features you would compare, then decide what evidence could distinguish two explanations.
Build the model
- Open-loop control emphasizes a pre-organized command during an action; closed-loop control uses feedback to compare the result with a goal and modify control. Many sporting actions combine feedforward preparation with feedback. Intrinsic feedback arises from the performer’s sensory information, while augmented feedback 附加反馈 is additional information supplied by another source.
- augmented feedback: Additional task information supplied beyond the performer’s own sensory feedback; knowledge of results 结果信息: Feedback about the outcome of an action.
Which comparison best examines persistence after practice?
Distinguish knowledge of results from knowledge of performance. A score reports the outcome; a description of arm position reports movement features. Feedback can guide practice, yet immediate success with continuous prompts may not persist when prompts are removed. Retention and transfer therefore provide stronger learning evidence than one practice score.
Match each technical term to its precise meaning.
Use the definitions to distinguish related quantities and processes.
Choose evidence that can test it
- Distinguish knowledge of results from knowledge of performance. A score reports the outcome; a description of arm position reports movement features. Feedback can guide practice, yet immediate success with continuous prompts may not persist when prompts are removed. Retention and transfer therefore provide stronger learning evidence than one practice score.
- Use a voluntary, low-risk seated target or tracing task. Define the outcome, keep practice opportunities equal, give an agreed feedback schedule and assess delayed performance without feedback. Counterbalance group order where feasible and use anonymous records. Do not claim the task completely models elite performance.
Which two habits make the investigation or model in this case more defensible?
Use a voluntary, low-risk seated target or tracing task. Define the outcome, keep practice opportunities equal, give an agreed feedback schedule and assess delayed performance without feedback. Counterbalance group order where feasible and use anonymous records. Do not claim the task completely models elite performance.
Work from known quantities
- State the known values and their units. Choose the relation because its assumptions fit this case, then rearrange before substitution.
- Known: one trial provides 20 attempts and 14 successes, or 70%. A delayed no-feedback test provides 20 attempts and 10 successes, or 50%. The decline is 20 percentage points, not a 20% relative decline; relative decline is (14−10)/14 ×100, approximately 28.6%. The observation supports investigating dependence on prompts, not a guaranteed explanation.
Success rate changes from 80% in practice to 55% in retention. Find the decrease in percentage points. Use the same sequence: known quantities → model → relation → substitution → unit and interpretation.
Success rate changes from 80% in practice to 55% in retention. Find the decrease in percentage points.
The result is 25 percentage points. Known: one trial provides 20 attempts and 14 successes, or 70%. A delayed no-feedback test provides 20 attempts and 10 successes, or 50%. The decline is 20 percentage points, not a 20% relative decline; relative decline is (14−10)/14 ×100, approximately 28.6%. The observation supports investigating dependence on prompts, not a guaranteed explanation.
Check the conclusion and its limits
- Open-loop and closed-loop are models, not a claim that an athlete’s nervous system uses only one mechanism. Feedback timing, task complexity and sensory availability affect what can be inferred.
- Return to the original observation. Explain what the result supports, which conditions it assumes, and one way to test a competing explanation.
A strong score with continuous prompts proves lasting motor learning. This claim is false: Open-loop and closed-loop are models, not a claim that an athlete’s nervous system uses only one mechanism. Feedback timing, task complexity and sensory availability affect what can be inferred.
Motor control: feedback, timing and evidence: Distinguish knowledge of results from knowledge of performance. A score reports the outcome; a description of arm position reports movement features. Feedback can guide practice, yet immediate success with continuous prompts may not persist when prompts are removed. Retention and transfer therefore provide stronger learning evidence than one practice score.
A strong score with continuous prompts proves lasting motor learning.
Open-loop and closed-loop are models, not a claim that an athlete’s nervous system uses only one mechanism. Feedback timing, task complexity and sensory availability affect what can be inferred.
Additional task information supplied beyond the performer’s own sensory feedback: write the technical term.
augmented feedback means Additional task information supplied beyond the performer’s own sensory feedback.