Kanno A, Nakasato N, Fujiwara S, Yoshimoto T
MEG Laboratory, Kohnan Hospital, Sendai, Japan.
No To Shinkei. 1995 Oct;47(10):989-94.
It is known that the auditory evoked N100m response appears faster in the contralateral hemisphere than in the ipsilateral hemisphere to the stimulated ear. For the middle latency response named P50m, however, there have been only few studies with controversial findings. In the present study, auditory evoked responses to the unilateral tone stimuli were measured in 36 right-handed normal subjects, using a helmet-shaped whole head magnetoencephalography system. In a total of 72 hemispheres of 36 subjects, P50m dipolar patterns were observed statistically (p > 0.02) frequently in the contralateral hemispheres (63.9%) compared to the ipsilateral hemispheres (43.0%). N100m dipolar patterns were observed over both left and right hemispheres either by left or right ear stimuli. Peak latency of the P50m was statistically (p < 0.02) shorter in the contralateral hemisphere (45.0 +/- 8.5ms, mean +/- s.d.) compared to the ipsilateral hemisphere (54.4 +/- 11.5ms). Peak latency of the N100m was also statistically (p < 0.001) shorter in the contralateral hemisphere. Moreover, when compared between contralateral responses, the left-ear stimulated right-hemispheric response (84.6 +/- 8.4) was statistically (p < 0.05) faster than the right-ear stimulated left-hemispheric response (89.3 +/- 10.2ms). These results indicate that contralateral auditory cortex dominates the ipsilateral cortex at the middle as well as the long latency components. Moreover, at least for pure-tone stimuli, right hemispheric dominance was indicated for the N100m responses. The whole-head MEG system is suitable to analyze small but significant interhemispheric difference of auditory function.
众所周知,听觉诱发的N100m反应在对侧半球比在受刺激耳的同侧半球出现得更快。然而,对于名为P50m的中潜伏期反应,仅有少数研究,且结果存在争议。在本研究中,使用头盔形状的全头脑磁图系统,对36名右利手正常受试者进行了单侧纯音刺激的听觉诱发反应测量。在36名受试者总共72个半球中,与同侧半球(43.0%)相比,P50m偶极模式在对侧半球(63.9%)更频繁地被统计学观察到(p>0.02)。无论是左耳还是右耳刺激,在左右半球均观察到N100m偶极模式。与同侧半球(54.4±11.5ms)相比,P50m的峰值潜伏期在对侧半球统计学上更短(45.0±8.5ms,平均值±标准差,p<0.02)。N100m的峰值潜伏期在对侧半球也有统计学差异(p<0.001)。此外,当比较对侧反应时,左耳刺激的右半球反应(84.6±8.4)在统计学上(p<0.05)比右耳刺激的左半球反应(89.3±10.2ms)更快。这些结果表明,对侧听觉皮层在中潜伏期和长潜伏期成分上均占主导地位。此外,至少对于纯音刺激,N100m反应显示右半球优势。全头脑磁图系统适用于分析听觉功能微小但显著的半球间差异。