Elevated fusiform cell activity in the dorsal cochlear nucleus of chinchillas with psychophysical evidence of tinnitus

被引:315
作者
Brozoski, TJ
Bauer, CA
Caspary, DM
机构
[1] So Illinois Univ, Sch Med, Dept Surg, Div Otolaryngol Head & Neck Surg, Springfield, IL 62702 USA
[2] So Illinois Univ, Sch Med, Dept Pharmacol, Springfield, IL 62702 USA
关键词
tinnitus; acoustic trauma; psychophysical animal model; dorsal cochlear nucleus; fusiform cells; neural plasticity;
D O I
10.1523/JNEUROSCI.22-06-02383.2002
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Chinchillas with psychophysical evidence of chronic tinnitus were shown to have significantly elevated spontaneous activity and stimulus-evoked responses in putative fusiform cells of the dorsal cochlear nuclei (DCN). Chinchillas were psychophysically trained and tested before and after exposure to a traumatic unilateral 80 dB (sound pressure level) 4 kHz tone. Before exposure, two groups were matched in terms of auditory discrimination performance (noise, and 1, 4, 6, and 10 kHz tones). After exposure, a single psychophysical difference emerged between groups. The exposed group displayed enhanced discrimination of 1 kHz tones (p = 0.00027). Postexposure discrimination of other stimuli was unaffected. It was hypothesized that exposed animals experienced a chronic subjective tone (i.e., tinnitus), resulting from their trauma, and that features of this subjective tone were similar enough to 1 kHz to affect discrimination of 1 kHz objective signals. After psychophysical testing, single-unit recordings were obtained from each animal's DCN fusiform cell layer. Putative fusiform cells of exposed animals showed significantly (p = 0.0136) elevated spontaneous activity, compared with cells of unexposed animals. Putative fusiform cells of exposed animals showed a greater stimulus-evoked response to tones at 1 kHz (p = 0.0000006) and at characteristic-frequency (p = 0.0000009). This increased activity was more pronounced on the exposed side. No increase in stimulus-evoked responses was observed to other frequencies or noise. These parallel psychophysical and electrophysiological results are consistent with the hypothesis that chronic tonal tinnitus is associated with, and may result from, trauma-induced elevation of activity of DCN fusiform cells.
引用
收藏
页码:2383 / 2390
页数:8
相关论文
共 58 条
[31]  
Meikle M. B., 1995, MECH TINNITUS, P181
[32]  
Melamed SB, 2000, AUDIOLOGY, V39, P24
[33]   GAD levels and muscimol binding in rat inferior colliculus following acoustic trauma [J].
Milbrandt, JC ;
Holder, TM ;
Wilson, MC ;
Salvi, RJ ;
Caspary, DM .
HEARING RESEARCH, 2000, 147 (1-2) :251-260
[34]  
MURAI K, 1992, AM J OTOL, V13, P454
[35]   PROJECTION OF COCHLEAR NUCLEI ON INFERIOR COLLICULUS IN CAT [J].
OSEN, KK .
JOURNAL OF COMPARATIVE NEUROLOGY, 1972, 144 (03) :355-&
[36]   GABA inputs control discharge rate primarily within frequency receptive fields of inferior colliculus neurons [J].
Palombi, PS ;
Caspary, DM .
JOURNAL OF NEUROPHYSIOLOGY, 1996, 75 (06) :2211-2219
[37]  
PENNER MJ, 1995, MECH TINNITUS, P219
[38]   Regulation of D-aspartate release and uptake in adult brain stem auditory nuclei after unilateral middle ear ossicle removal and cochlear ablation [J].
Potashner, SJ ;
Suneja, SK ;
Benson, CG .
EXPERIMENTAL NEUROLOGY, 1997, 148 (01) :222-235
[39]   Altered glycinergic synaptic activities in guinea pig brain stem auditory nuclei after unilateral cochlear ablation [J].
Potashner, SJ ;
Suneja, SK ;
Benson, CG .
HEARING RESEARCH, 2000, 147 (1-2) :125-136
[40]  
RHODE WS, 1983, J COMP NEUROL, V213, P448, DOI 10.1002/cne.902130408