Engelien Almut, Yang Yihong, Engelien Wolfgang, Zonana Jessica, Stern Emily, Silbersweig David A
Functional Neuroimaging Laboratory, Weill Medical College of Cornell University, New York, New York 10021, USA.
Neuroimage. 2002 Aug;16(4):944-53. doi: 10.1006/nimg.2002.1149.
Cortical field boundaries of sensory areas can be physiologically defined. The delineation of the human auditory cortical architecture remains incomplete. Here we used systematic variation of pitch and duration of sinusoidal tones to define auditory cortical fields along Heschl's gyrus with a silent, event-related fMRI scanning technique that allowed us to determine spatially small shifts of neuronal responses. Thus, we were able to establish higher-resolution tonotopic maps. Acoustic intervals of two octaves correspond to an average 2-mm anatomical distance along Heschl's gyrus. We also demonstrate that one tonotopic map with a medio-lateral low- to high-frequency gradient is located on the lateral half of Heschl's gyrus, which might correspond to field R in primates. Furthermore, we studied cortical responses to brief (50-ms) transients with fMRI and demonstrate that silent, event-related fMRI is capable of measuring significant blood oxygen level-dependent effect to such brief events in the acoustic domain. Our results add to current knowledge on the number and precise localization of multiple tonotopic maps in human auditory cortex. More specifically, they support the hypothesis that there may be two primary auditory cortical fields with mirror tonotopic organization on Heschl's gyrus in man.
感觉区域的皮质场边界可以通过生理学方法进行定义。人类听觉皮质结构的描绘仍不完整。在这里,我们利用正弦音调的音高和时长的系统变化,采用一种无声的、与事件相关的功能磁共振成像扫描技术来定义沿颞横回的听觉皮质场,该技术使我们能够确定神经元反应在空间上的微小变化。因此,我们能够建立更高分辨率的音调定位图。两个八度的声学间隔对应于沿颞横回平均2毫米的解剖距离。我们还证明,具有中-外侧低频到高频梯度的一个音调定位图位于颞横回的外侧半部分,这可能对应于灵长类动物的R区。此外,我们用功能磁共振成像研究了对短暂(50毫秒)瞬态刺激的皮质反应,并证明无声的、与事件相关的功能磁共振成像能够测量声学领域中此类短暂事件的显著血氧水平依赖效应。我们的结果增加了关于人类听觉皮质中多个音调定位图的数量和精确位置的现有知识。更具体地说,它们支持这样一种假设,即人类颞横回上可能存在两个具有镜像音调定位组织的初级听觉皮质场。