2009ORLOpen access

Effect of Artificial Endolymph Injection into the Cochlear Duct on Perilymph Potassium

Akinobu Kakigi, Alec N. Salt, Taizo Takeda

Open full text 17 citations

Abstract

Objective: To investigate the relationship between endolymphatic hydrops and perilymphatic potassium. Methods: 20 pigmented guinea pigs were used: 10 for scala vestibuli study and 10 for scala tympani study. Acute endolymphatic hydrops was produced by microinjection of an artificial endolymph into the scala media. Injections were performed in the second turn at rates up to 500 nl/min for a period of 10 min. The injection volume was up to 5 µl. Endocochlear potential (EP) was monitored during injections. Simultaneous with the injections, the potassium concentrations in scala vestibuli (KSV) or tympani (KST) perilymph were measured with ion-sensitive double-barreled microelectrodes sealed into in the scalae in the 3rd turn with cyanoacrylate glue. Results: For endolymphatic injections of ≤3 µl, perilymphatic KSV and KST changes were generally small. With larger volume injections, substantial increases in both KST and KSV were observed, with larger increases observed in KSV compared to KST. Conclusion: An increase of perilymph potassium ion concentration is associated with endolymphatic hydrops and the perilymphatic increase could contribute to the inner ear dysfunction of patients with Ménière’s disease. Although mild hydrops may not cause perilymphatic changes, extended hydrops may increase perilymphatic K which could contribute to vertigo and/or hearing loss during the attack.

About this research paper

What this paper is about

Objective: To investigate the relationship between endolymphatic hydrops and perilymphatic potassium. Methods: 20 pigmented guinea pigs were used: 10 for scala vestibuli study and 10 for scala tympani study. Acute endolymphatic hydrops was produced by microinjection of an artificial endolymph into the scala media. Injections were performed in the second turn at rates up to 500 nl/min for a period of 10 min. The injection volume was up to 5 µl. Endocochlear potential (EP) was monitored during injections. Simultaneous with the injections, the potassium concentrations in scala vestibuli (KSV) or tympani (KST) perilymph were measured with ion-sensitive double-barreled microelectrodes sealed into in the scalae in the 3rd turn with cyanoacrylate glue. Results: For endolymphatic injections of ≤3 µl, perilymphatic KSV and KST changes were generally small. With larger volume injections, substantial increases in both KST and KSV were observed, with larger increases observed in KSV compared to KST. Conclusion: An increase of perilymph potassium ion concentration is associated with endolymphatic hydrops and the perilymphatic increase could contribute to the inner ear dysfunction of patients with Ménière’s disease. Although mild hydrops may not cause perilymphatic changes, extended hydrops may increase perilymphatic K which could contribute to vertigo and/or hearing loss during the attack.

Why it matters

OpenAlex reports 17 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Objective: To investigate the relationship between endolymphatic hydrops and perilymphatic potassium. Methods: 20 pigmented guinea pigs were used: 10 for scala vestibuli study and 10 for scala tympani study. Acute endolymphatic hydrops was produced by microinjection of an artificial endolymph into the scala media. Injections were performed in the second turn at rates up to 500 nl/min for a period of 10 min. The injection volume was up to 5 µl. Endocochlear potential (EP) was monitored during injections. Simultaneous with the injections, the potassium concentrations in scala vestibuli (KSV) or tympani (KST) perilymph were measured with ion-sensitive double-barreled microelectrodes sealed into in the scalae in the 3rd turn with cyanoacrylate glue. Results: For endolymphatic injections of ≤3 µl, perilymphatic KSV and KST changes were generally small. With larger volume injections, substantial increases in both KST and KSV were observed, with larger increases observed in KSV compared to KST. Conclusion: An increase of perilymph potassium ion concentration is associated with endolymphatic hydrops and the perilymphatic increase could contribute to the inner ear dysfunction of patients with Ménière’s disease. Although mild hydrops may not cause perilymphatic changes, extended hydrops may increase perilymphatic K which could contribute to vertigo and/or hearing loss during the attack.

Key concepts: Perilymph, Endolymph, Endocochlear potential, Cochlear duct, Endolymphatic hydrops, Meniere's disease, Inner ear, Chemistry

Related papers

Back to paper searchBrowse research topicsOriginal source
Effect of Artificial Endolymph Injection into the Cochlear Duct on Perilymph Potassium — Research Paper | ScholarLens