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This deck focuses on 6b Attention Information Processing, giving you a quick way to review the definitions, rules, and examples that matter most for MCAT Psychological Social Foundations.
Study 6b Attention Information Processing in MCAT Psychological Social Foundations with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
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What is sustained attention (vigilance) in the context of attention?
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Maintaining focus on a task or stimulus over an extended period. Sustained attention ensures prolonged engagement, vital for activities like monitoring that demand continuous vigilance without lapses.
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This deck focuses on 6b Attention Information Processing, giving you a quick way to review the definitions, rules, and examples that matter most for MCAT Psychological Social Foundations.
Work through these flashcards in short sessions. Try to answer each prompt before flipping the card, then revisit any cards you miss until the explanation feels automatic.
Answer: Maintaining focus on a task or stimulus over an extended period. Sustained attention ensures prolonged engagement, vital for activities like monitoring that demand continuous vigilance without lapses.
Answer: Primacy effect. The primacy effect stems from greater rehearsal opportunities, enabling transfer to long-term memory for early-positioned items.
Answer: Attending to one stimulus while filtering out competing stimuli. Cocktail party effect exemplifies this focused processing ability.
Answer: Selective attention that detects salient cues (for example, own name). Demonstrates that unattended info is monitored for relevance.
Answer: Integrates information across modalities and links to long-term memory. Added to explain how different systems interact coherently.
Answer: Failure to detect changes in a scene when attention is disrupted. Change blindness arises from disrupted attention during transitions, impairing the detection of alterations in visual scenes.
Answer: Exogenous (stimulus-driven) attention. Bottom-up process triggered by salient stimulus properties.
Answer: Serial search requiring attention to bind multiple features to find a target. Requires effortful, sequential scanning when features must be combined.
Answer: Selection occurs after semantic processing; response is then selected. All info is processed; attention affects response selection.
Answer: Phonological loop. The phonological loop temporarily stores and rehearses auditory-verbal information, aiding language processing and verbal memory tasks.
Answer: Task demand level that determines how much irrelevant input is processed. Perceptual load influences attentional capacity, determining the extent to which distractors are processed based on primary task demands.
Answer: Regulating attention to manage conflict, inhibit responses, and plan. Executive attention facilitates goal-directed behavior by overseeing conflict resolution and inhibitory control in complex cognitive operations.
Answer: Stepwise processing of features, typically one after another. Slower but allows focused analysis of complex stimuli.
Answer: Failure to notice an unexpected stimulus when attention is elsewhere. Demonstrates limits of attention (e.g., missing gorilla in video).
Answer: Unattended input is weakened, not blocked; salient items can pass. Treisman's model suggests attenuation reduces unattended signals' strength, allowing breakthrough of important stimuli via threshold adjustments.
Answer: Active system that holds and manipulates information for ongoing tasks. Working memory supports temporary storage and manipulation, essential for reasoning, comprehension, and learning in real-time tasks.
Answer: Bottom-up: data-driven; Top-down: expectation/knowledge-driven. Sensory input vs. prior knowledge guide processing.
Answer: Recency effect. The recency effect results from immediate accessibility in short-term memory, favoring recall of recently presented items.
Answer: Less distractor processing under high perceptual load. High perceptual load exhausts attentional resources on the main task, minimizing interference from irrelevant distractors.
Answer: Deutsch and Deutsch late selection model. Late selection allows semantic processing before response selection.
Answer: Better recall for early (primacy) and late (recency) list items. The serial position effect reflects memory dynamics, with enhanced recall for initial and final items due to differential encoding processes.
Answer: Automatic shift of attention toward novel or salient stimuli. Evolutionary mechanism for detecting potential threats or opportunities.
Answer: Failure to notice a visible stimulus due to attention elsewhere. Occurs when attention is fully engaged on another task.
Answer: Filtering occurs before semantic processing, based on physical features. Unattended info is completely blocked at sensory level.
Answer: Selective focusing of cognitive resources on specific stimuli. Mental process that prioritizes relevant information for processing.
Answer: Unattended input is weakened, not blocked; salient items can break through. Middle-ground theory allowing some semantic processing of unattended input.
Answer: Attention enhances processing in a limited region of the visual field. Metaphor for how attention moves and focuses spatially.
Answer: Attention enhances processing of a limited region like a movable spotlight. The spotlight model illustrates how attention selectively illuminates and enhances perception in a specific area, improving detail detection.
Answer: Bottom-up is data-driven; top-down is expectation- and knowledge-driven. Bottom-up processing relies on incoming sensory data, while top-down uses prior knowledge to interpret and guide perception efficiently.
Answer: Unattended input is weakened, not blocked; salient items break through. Explains why we notice our name in unattended conversations.
Answer: Attention enhances processing in a limited region of the visual field. Metaphor for how attention moves and focuses like a beam of light.
Answer: Allocating attention to multiple tasks or stimuli at once. Performance often decreases due to limited cognitive resources.
Answer: Focused attention binds separate features into a unified percept. Treisman's theory explaining how attention creates coherent objects.
Answer: Inattentional blindness. Focused attention on counting prevents noticing unexpected stimuli.
Answer: All stimuli are processed for meaning before selection. Selection occurs after semantic analysis of all inputs.
Answer: Filtering occurs early based on physical characteristics before meaning. Broadbent's model posits early filtering to prevent overload, selecting inputs based on sensory features before higher-level analysis.
Answer: Limited capacity (resource) model of attention. Explains why multitasking impairs performance.
Answer: Parallel search where a distinctive feature makes the target immediately salient. Single feature difference allows rapid, parallel visual processing.
Answer: Top-down processing. Context guides interpretation when sensory input is ambiguous.
Answer: Slower naming of ink color when the word meaning conflicts. The Stroop effect reveals automatic semantic processing interference, as conflicting word meanings disrupt controlled color-naming tasks.
Answer: Selection occurs after semantic processing; meaning is processed first. Late selection models argue that all stimuli undergo initial semantic analysis, with attention filtering only after meaning is extracted.
Answer: Temporary storage and manipulation of visual and spatial information. Processes mental imagery and spatial relationships.
Answer: Pop-out (feature) search. Single feature allows parallel processing without focused attention.
Answer: Endogenous (goal-directed) attention. Top-down process controlled by intentions and expectations.
Answer: Allocating attention to multiple tasks or stimuli at the same time. Divided attention enables multitasking by distributing cognitive resources, though performance may decline with increasing task complexity.
Answer: Focusing on one stimulus while filtering out competing stimuli. Selective attention allows efficient processing by prioritizing relevant information amid distractions, crucial for tasks requiring focus.
Answer: Failure to detect changes in a visual scene across disruptions. Shows how attention affects visual perception continuity.
Answer: Noticing salient stimuli (for example, your name) amid noise. Demonstrates selective attention to personally relevant stimuli.
Answer: Maintaining attention on a task over an extended time. Critical for tasks requiring prolonged focus like monitoring.
Answer: Directs attention and coordinates the subsystems of working memory. Manages cognitive resources and switches between tasks.
Answer: Temporary storage and rehearsal of verbal and auditory information. Limited to about 7±2 items; uses subvocal rehearsal.
Answer: Slower responses when word meaning conflicts with ink color. Automatic reading interferes with naming ink colors.
Answer: Failure to detect changes in a scene when attention is disrupted. Often occurs during brief interruptions like eye movements.
Answer: Treisman attenuation model. Attenuated channel allows breakthrough of personally relevant stimuli.
Answer: A fast rule-of-thumb strategy that reduces cognitive effort. Mental shortcuts that simplify complex decisions.
Answer: Judging likelihood by how easily examples come to mind. Recent or vivid events seem more probable than they are.
Answer: A cognitive framework that organizes and interprets information. Mental templates that guide perception and memory.
Answer: Attention binds separate features into unified percepts (objects). Feature integration theory explains that attention integrates disparate sensory features into coherent objects, preventing illusory conjunctions.
Answer: Bottom-up is stimulus-driven; top-down is expectation/goal-driven. Bottom-up uses sensory data; top-down uses prior knowledge.
Answer: Ability to detect salient stimuli (for example, own name) in noise. The cocktail party effect demonstrates selective attention's ability to detect personally relevant stimuli despite background noise interference.
Answer: Focusing on one stimulus while filtering out competing stimuli. Allows processing of relevant information while ignoring distractions.
Answer: Seeking or interpreting information to support existing beliefs. Leads to ignoring contradictory evidence.
Answer: Directing attention and coordinating the subsystems. The central executive oversees working memory by allocating attention and integrating information across subsystems for task execution.
Answer: Prior exposure facilitates processing of related stimuli later. Priming activates associated neural pathways, enhancing speed and accuracy in recognizing or responding to subsequent related stimuli.
Answer: Focusing on one stimulus while filtering out others. Allows focus on relevant information while ignoring distractions.
Answer: Top-down regulation of attention, including inhibition and task switching. Frontal lobe function managing attention allocation and focus.
Answer: Failure to notice a visible stimulus due to attention elsewhere. Inattentional blindness occurs because attention is limited, causing oversight of unexpected stimuli not aligned with the current focus.
Answer: Unattended input is weakened, not blocked; salient items may pass. Explains why we notice our name in unattended conversations.
Answer: Allocating attention to multiple tasks or stimuli simultaneously. Splits cognitive resources across tasks, reducing performance on each.
Answer: Organized cognitive framework that guides interpretation and memory. Schemas organize knowledge to facilitate efficient information processing, influencing perception, interpretation, and recall of new data.
Answer: Judging probability by similarity to a prototype. Ignores base rates when making probability judgments.
Answer: Filtering occurs before semantic processing of unattended input. Unattended information is blocked at sensory level.
Answer: Maintaining attention to a task over an extended time interval. Critical for monitoring tasks requiring continuous focus.
Answer: Inattentional blindness. Attention focused on phone prevents noticing environmental stimuli.
Answer: Simultaneous processing of multiple stimulus features. Allows rapid detection of multiple features at once.
Answer: Visuospatial sketchpad. The visuospatial sketchpad handles temporary storage and manipulation of visual and spatial data, supporting imagery and navigation.