Olivares Jesús, Orio Patricio, Sadílek Viktor, Schmachtenberg Oliver, Canales-Johnson Andrés
Centro Interdisciplinario de Neurociencia de Valparaíso (CINV), Harrington 287, 2381850, Valparaiso, Chile.
Instituto de Neurociencia, Facultad de Ciencias, Universidad de Valparaíso, Avenida Gran Bretaña 1111, Valparaíso, Chile.
Cereb Cortex. 2025 May 1;35(5). doi: 10.1093/cercor/bhaf112.
The olfactory system comprises intricate networks of interconnected brain regions that process information across both the local and long-range circuits to extract odorant identity. Similar to pattern recognition in other sensory domains, such as the visual system, recognizing odorant identity likely depends on highly nonlinear interactions between these recurrently connected nodes. In this study, we investigate whether odorant identity can be distinguished through nonlinear interactions in the local field potentials of the olfactory bulb and telencephalic regions (the ventral nucleus of the ventral telencephalon and the dorsal posterior zone of the telencephalon) in anesthetized rainbow trout. Our results show that odorant identity modulates complex information-theoretic measures, specifically information sharing and redundancy across these brain areas, indicating nonlinear processing. In contrast, traditional linear connectivity measures, such as coherence and phase synchrony, showed little or no significant modulation by odorants. These findings suggest that nonlinear interactions encoded by olfactory oscillations carry crucial odor information across the teleost olfactory system, offering insights into the broader role of nonlinear dynamics in sensory processing.
嗅觉系统由相互连接的脑区组成的复杂网络构成,这些脑区通过局部和远程回路处理信息,以提取气味分子的特征。与其他感觉领域(如视觉系统)中的模式识别类似,识别气味分子的特征可能依赖于这些反复连接的节点之间高度非线性的相互作用。在本研究中,我们调查了在麻醉的虹鳟鱼中,是否可以通过嗅球和端脑区域(腹侧端脑的腹侧核和端脑的背侧后区)的局部场电位中的非线性相互作用来区分气味分子的特征。我们的结果表明,气味分子的特征调节了复杂的信息论指标,特别是这些脑区之间的信息共享和冗余,表明存在非线性处理。相比之下,传统的线性连接指标,如实相干性和相位同步,几乎没有或没有显示出气味分子的显著调节作用。这些发现表明,由嗅觉振荡编码的非线性相互作用在硬骨鱼嗅觉系统中携带关键的气味信息,为非线性动力学在感觉处理中的更广泛作用提供了见解。