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Cervical and ocular vestibular evoked myogenic potential: A comparison of narrowband chirp, broadband chirp, tone burst and click stimulation. | LitMetric

AI Article Synopsis

  • The study aimed to compare the effectiveness of different auditory stimulus types (CE-Chirp, tone burst, and click) in eliciting cervical and ocular vestibular evoked myogenic potentials (c&oVEMPs).
  • The research involved 58 participants and measured response rates, latency, amplitude, and asymmetry ratios when using these stimuli.
  • Results showed that the narrowband CE-Chirp yielded the highest response rates and fastest latencies, suggesting it is a superior choice for clinical measurement of c&oVEMPs.

Article Abstract

Objectives: To compare the response rate and response parameters of cervical and ocular vestibular evoked myogenic potentials (c&oVEMP) elicited by narrowband (NB) and broadband (BB) CE-Chirp, with the more classical tone burst (TB) and click VEMPs.

Design: The response rate, latency, amplitude and asymmetry ratio of c&oVEMPs elicited by 95 dB nHL air conducted (AC) 500 Hz NB CE-chirp, BB CE-chirp, 500 Hz TB and click stimuli were recorded bilaterally.

Study Sample: 20 male and 38 female participants (19-39 years).

Results: For the cVEMP, the highest response rate was found for NB chirp (100%), followed by TB (91%), BB chirp (87%) and finally click (85%). A similar order was seen for oVEMP with percentages of 100%; 57%, 57%, and 43%. The 500 Hz NB CE-Chirp elicited significantly shorter cVEMP P1 and N1 latencies and significantly larger c&oVEMP amplitudes compared to all other stimuli. BB CE-Chirp elicited significantly shorter c&oVEMP P1 and N1 latencies with smaller amplitudes compared to TB. Asymmetry ratios were not statistically significant for all comparisons.

Conclusion: The 500 Hz NB CE-chirp provides the highest response rates, shorter latencies and larger amplitudes, and therefore seem a promising stimulus for reliably measuring c&oVEMPs in clinical practice.

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Source
http://dx.doi.org/10.1080/14992027.2022.2064924DOI Listing

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