Frequency-Specific Filtering Improves Speech Reception and Exam Grades in Low-Performing Female College Students

In low-performing female college students, frequency-specific filtering improved auditory processing in a controlled laboratory test and in class grades after recorded lectures. In a first test of efficacy, 76 listeners responded to a prerecorded command “Ready Charlie, go to [color] [number] now” with a simultaneous, competing distractor voice. An adaptive track estimated threshold signal-to-noise ratios (SNRs). Fifty-seven listeners heard unfiltered stimuli, and 19 heard filtered stimuli. In a second test of efficiency, 27 students in a senior-level neuroanatomy course volunteered to be randomized to receive both standard and filtered lecture recordings for review. Study 1 showed filtering improved speech detections in the lower third of performers (p = 0.006). Study 2 showed that listening to filtered lecture recordings improved the grades of the bottom third of overall performers (p = 0.01). A filtering algorithm improved auditory processing among low-performing female college students in an automated laboratory test and in grades following recorded lectures. An additional analysis of self-reported diagnosed and suspected ADHD suggests that the filtering could help young adult females with attention deficits.

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Publication Details

Journal
Auditory Perception & Cognition
Published
2026-09-24
DOI
https://doi.org/10.1080/25742442.2026.2736451
Primary Topic
Attention Deficit Hyperactivity Disorder
Type
article
Field-Weighted Citation Impact
0.00
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article

Frequency-Specific Filtering Improves Speech Reception and Exam Grades in Low-Performing Female College Students

Lincoln C Gray, Alan Brunton, Cassidy Shugrue, Bríd Collum et al.
Auditory Perception & Cognition
Attention Deficit Hyperactivity Disorder
article

Frequency-Specific Filtering Improves Speech Reception and Exam Grades in Low-Performing Female College Students

Lincoln C Gray, Alan Brunton, Cassidy Shugrue, Bríd Collum, Rebecca Hales, Katelyn (Hobbs) Bejarano
article en

Abstract

In low-performing female college students, frequency-specific filtering improved auditory processing in a controlled laboratory test and in class grades after recorded lectures. In a first test of efficacy, 76 listeners responded to a prerecorded command “Ready Charlie, go to [color] [number] now” with a simultaneous, competing distractor voice. An adaptive track estimated threshold signal-to-noise ratios (SNRs). Fifty-seven listeners heard unfiltered stimuli, and 19 heard filtered stimuli. In a second test of efficiency, 27 students in a senior-level neuroanatomy course volunteered to be randomized to receive both standard and filtered lecture recordings for review. Study 1 showed filtering improved speech detections in the lower third of performers (p = 0.006). Study 2 showed that listening to filtered lecture recordings improved the grades of the bottom third of overall performers (p = 0.01). A filtering algorithm improved auditory processing among low-performing female college students in an automated laboratory test and in grades following recorded lectures. An additional analysis of self-reported diagnosed and suspected ADHD suggests that the filtering could help young adult females with attention deficits.

Auditory Perception & Cognition
James Madison University (US), Eastern Virginia Medical School (US), Montclair State University (US), City University of New York (US), Children's Hospital Central California (US), CytRx (United States) (US)
Quality Education
Openalex Percentile: Top 11%
Attention Deficit Hyperactivity Disorder
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Frequency-Specific Filtering Improves Speech Reception and Exam Grades in Low-Performing Female College Students — Lincoln C Gray, Alan Brunton, et al. · Auditory Perception & Cognition (2026) | TGRS Research Map | TGRS