# A nurse is assessing a 65-year-old client who reports difficulty hearing conversations in noisy environments and trouble localizing sounds. The client's audiogram shows normal peripheral hearing thresholds but abnormal brainstem auditory evoked responses. Which assessment finding would be most indicative of central hearing loss?

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> subject: Adult Health

## 문제

A nurse is assessing a 65-year-old client who reports difficulty hearing conversations in noisy environments and trouble localizing sounds. The client's audiogram shows normal peripheral hearing thresholds but abnormal brainstem auditory evoked responses. Which assessment finding would be most indicative of central hearing loss?

## 보기

1. Asymmetric sensorineural loss on Rinne test with normal speech scores
2. Elevated air conduction thresholds on audiometry with poor localization
3. Retracted tympanic membranes on otoscopy with conductive pattern
4. Normal pure tone thresholds with poor speech discrimination in noise **✔ 정답**

**정답: 4**

## 해설

Central hearing loss is characterized by normal pure tone thresholds but poor speech discrimination in noise, indicating central auditory pathway dysfunction. Other options (conductive loss, bone conduction issues, cerumen impaction) represent peripheral hearing problems.

## 심화 해설

Understanding Central Hearing Loss

The client's presentation—difficulty hearing in noisy environments and trouble localizing sounds—combined with normal peripheral hearing thresholds but abnormal brainstem auditory evoked responses, points toward a deficit in the central auditory nervous system rather than the ear itself. This condition is formally recognized as Auditory Processing Disorder (APD), also referred to as central auditory processing disorder. The core definition, as highlighted in the provided literature, is "impaired neural processing of acoustic stimuli despite normal peripheral hearing"  or "listening difficulties in individuals with normal hearing thresholds but impaired processing of auditory information" [3].

The correct answer is the assessment finding that most directly reflects this central deficit: normal pure tone thresholds with poor speech discrimination in noise. Pure tone audiometry tests the peripheral auditory system's ability to detect sound, which is intact in APD. However, speech discrimination in noise tests the brain's ability to process and make sense of complex acoustic signals, a task that requires rapid temporal processing and binaural integration. A breakdown in this neural processing, particularly involving neurotransmitter systems like glutamate and GABA in the central auditory pathways , explains why a person can "hear" but not "understand," especially in challenging acoustic environments.

Why the Other Options Are Incorrect

- Option 1 (Asymmetric sensorineural loss on Rinne test with normal speech scores): This describes a peripheral lesion affecting the inner ear or auditory nerve (sensorineural hearing loss), not a central processing deficit. The Rinne test is a tuning fork test that differentiates conductive from sensorineural loss, and an asymmetric finding points to a unilateral peripheral pathology, which contradicts the normal peripheral thresholds noted in the question stem.

- Option 2 (Elevated air conduction thresholds on audiometry with poor localization): Elevated air conduction thresholds indicate a problem with the peripheral auditory system's sensitivity (either conductive or sensorineural). The question stem explicitly states the client has "normal peripheral hearing thresholds," making this finding incompatible with the client's audiogram.

- Option 3 (Retracted tympanic membranes on otoscopy with conductive pattern): This is a classic presentation of a conductive hearing loss, typically caused by middle ear dysfunction (e.g., eustachian tube dysfunction, otitis media with effusion). This is a mechanical problem of sound transmission in the periphery, not a central processing disorder.

Clinical Significance of the Central Deficit

The inability to understand speech in noise is a hallmark of APD and stems from a failure in the central auditory pathways to perform critical functions. These include auditory figure-ground (separating target speech from background noise) and binaural processing (using input from both ears to localize sound and segregate auditory streams) [3]. The abnormal brainstem auditory evoked responses in the question stem provide objective electrophysiological evidence of this neural dysfunction, confirming that the lesion is retrocochlear. This specific pattern—a discrepancy between normal peripheral hearing sensitivity (pure tones) and abnormal central processing (speech-in-noise performance)—is the most indicative clinical marker for a central auditory processing disorder [3].References (research sources)

- [3]Auditory Processing Disorder in childhood: a critical appraisal of diagnostic validity, functional assessment, and interdisciplinary practice.Research articleDos Santos JCC, Arruda MA, Masruha MR. (2026) · DOI: 10.3389/fnhum.2026.1715787

## 임상 시나리오

Central vs. Peripheral Hearing LossKey Clinical Indicators for Accurate Triage
Suspect central auditory processing disorder when a patient reports difficulty understanding speech in noise but has normal pure tone thresholds on an audiogram. The hallmark is a discrepancy between intact peripheral sound detection and impaired neural processing.

The most indicative assessment finding is poor speech discrimination in noise. This test challenges the brain's ability to process complex signals, revealing deficits in temporal processing and binaural integration that are not apparent on standard pure tone testing.

CautionDo not confuse central hearing loss with peripheral conditions. Findings like asymmetric sensorineural loss, elevated air conduction thresholds, or conductive patterns on otoscopy indicate cochlear, nerve, or middle ear pathologies, which require different management and referral pathways.

## 핵심 개념

- **중추성 청각처리장애 (Central Auditory Processing Disorder, CAPD)** — Peripheral hearing is normal, but there is a disorder in the brain's auditory pathways (especially the brainstem and cerebral cortex) affecting the ability to process, discriminate, and interpret sound information. Difficulties include understanding speech in noise, localizing sounds, and distinguishing rapidly changing sounds.
- **순음청력검사 (Pure Tone Audiometry)** — A test that measures the threshold of the quietest sound a person can hear by playing pure tones of various frequencies (high-pitched/low-pitched) and intensities. It is a basic test to evaluate the function of peripheral hearing (outer ear, middle ear, inner ear, auditory nerve).
- **언어 변별 검사 (Speech Discrimination Test)** — A test that evaluates the ability to understand and distinguish language by having the person listen to words or sentences and repeat them accurately. In particular, the 'Speech in Noise' test is an important functional assessment tool for screening central auditory processing disorder.
- **뇌간청성유발반응 (Brainstem Auditory Evoked Response, BAER)** — A test that records the brainstem's electrical response to sound stimuli. It evaluates the functional integrity of the auditory pathway from the auditory nerve to the midbrain and is used to detect damage in the central auditory pathway (e.g., stroke, multiple sclerosis).
- **전음성 난청 (Conductive Hearing Loss)** — Hearing loss caused by interference with sound conduction to the inner ear (cochlea) due to problems in the external auditory canal or middle ear (tympanic membrane, ossicles). Causes include earwax impaction, otitis media, and otosclerosis, and it is generally reversible with medical or surgical treatment.

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