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논문 기본 정보

자료유형
학술저널
저자정보
허승덕 (동아대학교병원) 정성욱 (동아대학교병원) 정승현 (동아대학교병원)
저널정보
한국음성학회 말소리와 음성과학 말소리와 음성과학 제1권 제4호
발행연도
2009.12
수록면
203 - 207 (5page)

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초록· 키워드

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Electrically evoked compound action potentials (ECAP) have originated from the distal end of the auditory nerve. ECAP are characterized as the difference between the clearly large trough (N) and the following positive peak (P). N-wave occurs around 200-400 ㎲ after stimulus onset and P-wave at around 400-800 ㎲. Contrary to expectations, positive peaked ECAP (pp-ECAP) was dominated by a relatively large-amplitude positive following negative peak. pp-ECAP can be recorded from the sites on or near the surgically exposed nerve trunk in animal models and/or in cases of monophasic stimulation. This study will provide the causes of the appearance of pp-ECAP in cases of cochlear implant recipients using imaging studies and medical records and statistically analysis between N-P and P-N on the amplitude input-output function (amp-I/O) for the prediction of the possibilities of clinical tools. Thirteen children participated in the study and received a Cochlear CI-24RE (CA). ECAP was recorded using auto-NRT (Cochlear Ltd., Australia) at four to five weeks post surgery. pp-ECAP was measured from 36 electrodes and typical ECAP from 220 electrodes. There was no abnormality in the imaging study and operation finding in patients with typical ECAP. pp-ECAP was found at the inner ear anormaly and ossification in imaging study and gel-state inner ear fluid was observed in the operation finding, The amplitude of pp- ECAP increased depending on current intensities. but amp-I/O increase more gradually than in the case of typical ECAP (p=0.003). pp-ECAP is antidromic potential which can record from the inner ear anormaly and ossified cochlear. Amp-I/O also depends on current intensity as well typical ECAP. These results provide a useful tool for audiological evaluation for the spiral ganglion cell status to the value of pp-ECAP.

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ABSTRACT
1. 서론
2. 대상 및 방법
3. 결과
4. 고찰
5. 결론
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UCI(KEPA) : I410-ECN-0101-2010-701-002067995