Maryland Audiologist Licensing Exam
Practice Questions And Correct Answers
(Verified Answers) Plus Rationale 2026
Q&A| Instant Download Pdf
1. A 58-year-old patient presents to an audiology clinic in Maryland
complaining of progressive bilateral hearing difficulty, especially in
noisy environments. Pure-tone audiometry reveals a symmetrical
high-frequency sensorineural hearing loss beginning at 2000 Hz and
worsening through 8000 Hz. Speech discrimination scores are
moderately reduced bilaterally. The audiologist explains that the
patient’s hearing loss is most consistent with age-related cochlear
degeneration. Which additional finding would most strongly support
this diagnosis rather than conductive hearing loss or retrocochlear
pathology?
A. Significant air-bone gaps on audiometric testing
B. Normal tympanometric findings with reduced otoacoustic emissions
C. Unilateral tinnitus with asymmetrical speech discrimination decline
D. Fluctuating low-frequency hearing thresholds associated with vertigo
B. Normal tympanometric findings with reduced otoacoustic emissions
Rationale: Presbycusis is characterized by bilateral symmetrical
sensorineural hearing loss, usually affecting high frequencies first.
Tympanometry is typically normal because middle ear function remains
intact, while otoacoustic emissions are often reduced due to cochlear outer
hair cell degeneration. Air-bone gaps indicate conductive pathology, while
,asymmetry and vestibular symptoms may suggest retrocochlear or
Ménière-related conditions.
2. An audiologist in Maryland is evaluating a 4-year-old child with
delayed speech and language development. Behavioral audiometry
results are inconsistent because the child becomes distracted and
uncooperative during testing. Which assessment technique would
provide the most objective and frequency-specific estimate of the
child’s hearing sensitivity under these circumstances?
A. Tympanometry
B. Acoustic reflex testing
C. Auditory brainstem response testing
D. Speech reception threshold testing
C. Auditory brainstem response testing
Rationale: Auditory brainstem response (ABR) testing provides objective
electrophysiological information regarding auditory pathway function and
hearing thresholds, especially in pediatric or difficult-to-test populations.
Tympanometry evaluates middle ear status only, acoustic reflexes provide
limited threshold estimation, and speech reception testing requires active
patient participation.
3. A patient undergoing vestibular assessment reports episodes of severe
vertigo lasting several hours, accompanied by roaring tinnitus,
fluctuating hearing loss, and a sensation of aural fullness in one ear.
The audiologist suspects Ménière disease. Which audiometric
configuration is most commonly associated with the early stages of
this disorder?
A. Flat conductive hearing loss
B. High-frequency sensorineural hearing loss
C. Rising low-frequency sensorineural hearing loss
D. Cookie-bite mid-frequency hearing loss
C. Rising low-frequency sensorineural hearing loss
,Rationale: Early Ménière disease commonly presents with fluctuating low-
frequency sensorineural hearing loss due to endolymphatic hydrops
affecting cochlear mechanics. As the disorder progresses, hearing loss may
become more severe and involve additional frequencies. Conductive and
mid-frequency losses are less characteristic of Ménière disease.
4. During immittance testing, an audiologist obtains a Type B
tympanogram with normal ear canal volume in a pediatric patient
complaining of ear discomfort and hearing difficulty. Which condition
is most strongly associated with this tympanometric result?
A. Otosclerosis
B. Tympanic membrane perforation
C. Eustachian tube dysfunction without effusion
D. Middle ear effusion
D. Middle ear effusion
Rationale: A Type B tympanogram with normal ear canal volume usually
indicates reduced tympanic membrane mobility caused by fluid in the
middle ear space. Tympanic membrane perforation typically produces a
Type B tympanogram with abnormally large ear canal volume.
Otosclerosis often results in shallow compliance patterns such as Type As
tympanograms.
5. A Maryland audiologist is counseling a patient newly fitted with
bilateral hearing aids. The patient complains that environmental
sounds such as dishes clattering and paper rustling are uncomfortably
loud despite improved speech understanding. Which auditory
phenomenon best explains this complaint in individuals with cochlear
hearing loss?
A. Recruitment
B. Adaptation
C. Masking
D. Habituation
, A. Recruitment
Rationale: Recruitment refers to an abnormally rapid growth in perceived
loudness commonly associated with cochlear sensorineural hearing loss.
Patients may have reduced hearing sensitivity for soft sounds but perceive
moderate or loud sounds as excessively intense. This phenomenon
frequently affects hearing aid fitting and counseling.
6. An audiologist evaluates a factory worker with a long history of
occupational noise exposure. Audiometric testing demonstrates a
classic notch at 4000 Hz bilaterally. Which mechanism most likely
accounts for the vulnerability of this frequency region in noise-induced
hearing loss?
A. Increased ossicular chain stiffness at 4000 Hz
B. Resonance characteristics of the external auditory canal and cochlea
C. Reduced vascular supply to the middle ear cavity
D. Preferential degeneration of vestibular hair cells
B. Resonance characteristics of the external auditory canal and cochlea
Rationale: Noise-induced hearing loss commonly affects frequencies
around 3000–6000 Hz, especially 4000 Hz, due to resonance properties of
the external auditory canal and mechanical susceptibility of cochlear
structures in this region. These acoustic factors increase sound energy
exposure within the cochlea at these frequencies.
7. A patient reports sudden unilateral hearing loss accompanied by
tinnitus upon awakening. The audiologist recognizes this as a potential
otologic emergency requiring immediate medical referral. Which
additional symptom would further increase concern for retrocochlear
involvement?
A. Bilateral cerumen accumulation
B. Persistent unilateral facial numbness
C. Mild seasonal allergies
D. History of childhood otitis media
Practice Questions And Correct Answers
(Verified Answers) Plus Rationale 2026
Q&A| Instant Download Pdf
1. A 58-year-old patient presents to an audiology clinic in Maryland
complaining of progressive bilateral hearing difficulty, especially in
noisy environments. Pure-tone audiometry reveals a symmetrical
high-frequency sensorineural hearing loss beginning at 2000 Hz and
worsening through 8000 Hz. Speech discrimination scores are
moderately reduced bilaterally. The audiologist explains that the
patient’s hearing loss is most consistent with age-related cochlear
degeneration. Which additional finding would most strongly support
this diagnosis rather than conductive hearing loss or retrocochlear
pathology?
A. Significant air-bone gaps on audiometric testing
B. Normal tympanometric findings with reduced otoacoustic emissions
C. Unilateral tinnitus with asymmetrical speech discrimination decline
D. Fluctuating low-frequency hearing thresholds associated with vertigo
B. Normal tympanometric findings with reduced otoacoustic emissions
Rationale: Presbycusis is characterized by bilateral symmetrical
sensorineural hearing loss, usually affecting high frequencies first.
Tympanometry is typically normal because middle ear function remains
intact, while otoacoustic emissions are often reduced due to cochlear outer
hair cell degeneration. Air-bone gaps indicate conductive pathology, while
,asymmetry and vestibular symptoms may suggest retrocochlear or
Ménière-related conditions.
2. An audiologist in Maryland is evaluating a 4-year-old child with
delayed speech and language development. Behavioral audiometry
results are inconsistent because the child becomes distracted and
uncooperative during testing. Which assessment technique would
provide the most objective and frequency-specific estimate of the
child’s hearing sensitivity under these circumstances?
A. Tympanometry
B. Acoustic reflex testing
C. Auditory brainstem response testing
D. Speech reception threshold testing
C. Auditory brainstem response testing
Rationale: Auditory brainstem response (ABR) testing provides objective
electrophysiological information regarding auditory pathway function and
hearing thresholds, especially in pediatric or difficult-to-test populations.
Tympanometry evaluates middle ear status only, acoustic reflexes provide
limited threshold estimation, and speech reception testing requires active
patient participation.
3. A patient undergoing vestibular assessment reports episodes of severe
vertigo lasting several hours, accompanied by roaring tinnitus,
fluctuating hearing loss, and a sensation of aural fullness in one ear.
The audiologist suspects Ménière disease. Which audiometric
configuration is most commonly associated with the early stages of
this disorder?
A. Flat conductive hearing loss
B. High-frequency sensorineural hearing loss
C. Rising low-frequency sensorineural hearing loss
D. Cookie-bite mid-frequency hearing loss
C. Rising low-frequency sensorineural hearing loss
,Rationale: Early Ménière disease commonly presents with fluctuating low-
frequency sensorineural hearing loss due to endolymphatic hydrops
affecting cochlear mechanics. As the disorder progresses, hearing loss may
become more severe and involve additional frequencies. Conductive and
mid-frequency losses are less characteristic of Ménière disease.
4. During immittance testing, an audiologist obtains a Type B
tympanogram with normal ear canal volume in a pediatric patient
complaining of ear discomfort and hearing difficulty. Which condition
is most strongly associated with this tympanometric result?
A. Otosclerosis
B. Tympanic membrane perforation
C. Eustachian tube dysfunction without effusion
D. Middle ear effusion
D. Middle ear effusion
Rationale: A Type B tympanogram with normal ear canal volume usually
indicates reduced tympanic membrane mobility caused by fluid in the
middle ear space. Tympanic membrane perforation typically produces a
Type B tympanogram with abnormally large ear canal volume.
Otosclerosis often results in shallow compliance patterns such as Type As
tympanograms.
5. A Maryland audiologist is counseling a patient newly fitted with
bilateral hearing aids. The patient complains that environmental
sounds such as dishes clattering and paper rustling are uncomfortably
loud despite improved speech understanding. Which auditory
phenomenon best explains this complaint in individuals with cochlear
hearing loss?
A. Recruitment
B. Adaptation
C. Masking
D. Habituation
, A. Recruitment
Rationale: Recruitment refers to an abnormally rapid growth in perceived
loudness commonly associated with cochlear sensorineural hearing loss.
Patients may have reduced hearing sensitivity for soft sounds but perceive
moderate or loud sounds as excessively intense. This phenomenon
frequently affects hearing aid fitting and counseling.
6. An audiologist evaluates a factory worker with a long history of
occupational noise exposure. Audiometric testing demonstrates a
classic notch at 4000 Hz bilaterally. Which mechanism most likely
accounts for the vulnerability of this frequency region in noise-induced
hearing loss?
A. Increased ossicular chain stiffness at 4000 Hz
B. Resonance characteristics of the external auditory canal and cochlea
C. Reduced vascular supply to the middle ear cavity
D. Preferential degeneration of vestibular hair cells
B. Resonance characteristics of the external auditory canal and cochlea
Rationale: Noise-induced hearing loss commonly affects frequencies
around 3000–6000 Hz, especially 4000 Hz, due to resonance properties of
the external auditory canal and mechanical susceptibility of cochlear
structures in this region. These acoustic factors increase sound energy
exposure within the cochlea at these frequencies.
7. A patient reports sudden unilateral hearing loss accompanied by
tinnitus upon awakening. The audiologist recognizes this as a potential
otologic emergency requiring immediate medical referral. Which
additional symptom would further increase concern for retrocochlear
involvement?
A. Bilateral cerumen accumulation
B. Persistent unilateral facial numbness
C. Mild seasonal allergies
D. History of childhood otitis media