Poeppel D, Phillips C, Yellin E, Rowley H A, Roberts T P, Marantz A
Biomagnetic Imaging Laboratory, University of California San Francisco, 94143-0628, USA.
Neurosci Lett. 1997 Jan 17;221(2-3):145-8. doi: 10.1016/s0304-3940(97)13325-0.
The auditory evoked neuromagnetic fields elicited by synthesized vowels of two different fundamental frequencies F0 were recorded in six subjects over the left and right temporal cortices using a 37-channel biomagnetometer. Single equivalent current dipole modeling of the fields elicited by all vowel types localized activity to a well-circumscribed area in supratemporal auditory cortex in both hemispheres. There were hemisphere asymmetries in the amplitude and latency of the M100 response. We also observed changes in M100 latency related to vowel type, but not to F0. There was no clear effect of vowel type or F0 on dipole localization for the M100, but a possible vowel type by latency interaction. These M100 data provide further evidence that vowels are processed independently of their pitch.
使用37通道生物磁强计,在6名受试者的左右颞叶皮质上记录了由两种不同基频F0的合成元音诱发的听觉诱发神经磁场。对所有元音类型诱发的磁场进行单等效电流偶极子建模,将活动定位到两个半球颞上听觉皮质中一个界限清楚的区域。M100反应的幅度和潜伏期存在半球不对称性。我们还观察到与元音类型相关而非与F0相关的M100潜伏期变化。对于M100,元音类型或F0对偶极子定位没有明显影响,但可能存在元音类型与潜伏期的相互作用。这些M100数据进一步证明,元音的处理与其音高无关。