Department of Neurology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Department of Neurosurgery, Barrow Neurological Institute, Phoenix, AZ 85013, USA.
Curr Biol. 2023 Dec 18;33(24):5275-5287.e5. doi: 10.1016/j.cub.2023.10.021. Epub 2023 Nov 3.
The human olfactory system has two discrete channels of sensory input, arising from olfactory epithelia housed in the left and right nostrils. Here, we asked whether the primary olfactory cortex (piriform cortex [PC]) encodes odor information arising from the two nostrils as integrated or distinct stimuli. We recorded intracranial electroencephalogram (iEEG) signals directly from PC while human subjects participated in an odor identification task where odors were delivered to the left, right, or both nostrils. We analyzed the time course of odor identity coding using machine-learning approaches and found that uni-nostril odor inputs to the ipsilateral nostril are encoded ∼480-ms faster than odor inputs to the contralateral nostril on average. During naturalistic bi-nostril odor sampling, odor information emerged in two temporally segregated epochs, with the first epoch corresponding to the ipsilateral and the second epoch corresponding to the contralateral odor representations. These findings reveal that PC maintains distinct representations of odor input from each nostril through temporal segregation, highlighting an olfactory coding scheme at the cortical level that can parse odor information across nostrils within the course of a single inhalation.
人类嗅觉系统有两个离散的感觉输入通道,分别来自位于左、右鼻孔的嗅上皮。在这里,我们想知道初级嗅觉皮层(梨状皮层[PC])是否将来自两个鼻孔的气味信息作为整合或离散的刺激进行编码。当人类受试者参与一个气味识别任务时,我们直接从 PC 记录了颅内脑电图(iEEG)信号,其中气味被输送到左、右或两个鼻孔。我们使用机器学习方法分析了气味身份编码的时间过程,发现单侧鼻孔的单鼻孔气味输入平均比对侧鼻孔的气味输入快约 480 毫秒。在自然双鼻孔气味采样期间,气味信息以两个时间上分离的时段出现,第一个时段对应于同侧,第二个时段对应于对侧气味表示。这些发现表明,PC 通过时间分离来维持每个鼻孔的气味输入的独特表示,突出了在单个吸气过程中在皮层水平上解析气味信息的嗅觉编码方案。