Wachowiak Matt, Denk Winfried, Friedrich Rainer W
Department of Biology, Boston University, 5 Cummington Street, Boston, MA 02215, USA.
Proc Natl Acad Sci U S A. 2004 Jun 15;101(24):9097-102. doi: 10.1073/pnas.0400438101. Epub 2004 Jun 7.
Glomeruli in the olfactory bulb are anatomically discrete modules receiving input from idiotypic olfactory sensory neurons. To examine the functional organization of sensory inputs to individual glomeruli, we loaded olfactory sensory neurons with a Ca(2+) indicator and measured odorant-evoked presynaptic Ca(2+) signals within single glomeruli by using two-photon microscopy in anaesthetized mice. Odorants evoked patterns of discrete Ca(2+) signals throughout the neuropil of a glomerulus. Across glomeruli, Ca(2+) signals occurred with equal probability in all glomerular regions. Within single glomeruli, the pattern of intraglomerular Ca(2+) signals was indistinguishable for stimuli of different duration, identity, and concentration. Moreover, the response time course of the signals was similar throughout the glomerulus. Hence, sensory inputs to individual glomeruli are spatially heterogeneous but seem to be functionally indiscriminate. These results support the view of olfactory glomeruli as functional units in representing sensory information.
嗅球中的肾小球是解剖学上离散的模块,接收来自独特型嗅觉感觉神经元的输入。为了研究单个肾小球感觉输入的功能组织,我们用钙离子指示剂加载嗅觉感觉神经元,并在麻醉小鼠中使用双光子显微镜测量单个肾小球内气味诱发的突触前钙离子信号。气味在肾小球的整个神经毡中诱发离散的钙离子信号模式。在不同的肾小球中,钙离子信号在所有肾小球区域出现的概率相等。在单个肾小球内,不同持续时间、特性和浓度的刺激所产生的肾小球内钙离子信号模式无法区分。此外,信号的反应时间进程在整个肾小球中相似。因此,单个肾小球的感觉输入在空间上是异质的,但在功能上似乎是不加区分的。这些结果支持了将嗅觉肾小球视为代表感觉信息的功能单元的观点。