跳至主要内容
临床试验/NCT06769464
NCT06769464招募中不适用

Electrophysiological Representations of Odor in the Human Brain Study 1

Northwestern University2 个研究点 分布在 1 个国家目标入组 28 人开始时间: 2024年4月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
招募中
入组人数
28
试验地点
2
主要终点
Perceived odor intensity

研究概览

简要总结

Investigating representations of odor intensity in human piriform cortex. To identify a neural representation of perceived odor intensity, it is necessary to dissociate stimulus concentration from perceived intensity. Experiments for this aim will measure human perceptual responses while manipulating intensity independently from concentration using two complementary approaches. In Experiment 1A, we will match perceived intensities across odors of different concentrations, allowing us to identify a neural representation of intensity that is independent of stimulus identity and concentration. In Experiment 1B, we will create conditions of different perceived intensity over constant odor stimuli using adaptation. Approaching the same question from different angles will strengthen the robustness of our findings. Preliminary data suggest that temporal features of the piriform neural response may represent odor intensity.

详细描述

Olfactory perception relies on the brain's ability to extract and represent different features of an odor stimulus. For example, intensity and identity are fundamental features of the olfactory percept that must be encoded separately for accurate perception; the same odor can be encountered at different strengths. Understanding neural representations of olfactory perceptual features is fundamental to understanding the olfactory system, however the neural correlates of odor intensity and identity are poorly understood in the human brain.

The field of olfaction typically uses chemistry as a proxy for perception and focuses on manipulating physical properties of a stimulus to look for neural correlates. For example, chemical concentration and molecular identity are typically used as proxies for odor intensity and identity. However, the world that animals perceive is not a complete representation of physical reality; it is a product of the particular sensory systems that each species has acquired in the course of evolution. To understand how the brain forms representations of perceptual features of odors, we must identify relationships between features of neural responses and perceptual ratings. While novel behavioral paradigms in rodents can provide good estimates of perceptual ratings of different features of odors (intensity, identity), humans can directly provide perceptual ratings of different features of an odor. Therefore, human work is necessary to fully understand olfactory perception.

The missing link between neural signatures and perceptual properties of odor is a critical gap in our understanding of odor coding. Here, we will combine human intracranial recordings-including direct neural recordings from human olfactory cortex-with simultaneous delivery of precisely controlled odors of varying intensity/identity and trial-by-trial collection of psychophysical ratings to understand how odors are represented in the human brain.

Accurate olfactory psychophysical ratings are a critical part of our proposal. Therefore, we will work with leading experts in human psychophysics at Monel Chemical Senses Center, Dr. Pamela Dalton and Dr. Joel Mainland. As Co-Investigators on this grant, their expertise in human psychophysics will combine with my lab's expertise in human olfactory electrophysiology to provide the field with an understanding of the mappings between olfactory perception and neural codes in the human brain.

Aim 1: Investigating representations of odor intensity in human piriform cortex. To identify a neural representation of perceived odor intensity, it is necessary to dissociate stimulus concentration from perceived intensity. Experiments for this aim will measure human perceptual responses while manipulating intensity independently from concentration using two complementary approaches. In Experiment 1A, we will match perceived intensities across odors of different concentrations, allowing us to identify a neural representation of intensity that is independent of stimulus identity and concentration. In Experiment 1B, we will create conditions of different perceived intensity over constant odor stimuli using adaptation. Approaching the same question from different angles will strengthen the robustness of our findings. Preliminary data suggest that temporal features of the piriform neural response may represent odor intensity.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Basic Science
盲法
None

入排标准

年龄范围
12 Years 至 65 Years(Child, Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Ages 12 to 65, english speaker, patients undergoing brain surgery for treatment of medically intractable epilepsy

排除标准

  • screening for history of smell or taste problems

研究组 & 干预措施

Investigating representations of odor intensity in human piriform cortex.

Experimental

Odors will be presented at different concentrations.

干预措施: odor (Behavioral)

结局指标

主要结局

Perceived odor intensity

时间窗: 15 minutes

Odors of different concentrations will be presented, and we will obtain behavioral ratings on a GLMS scale of intensity presented on a laptop computer, converted into Matlab for analysis

次要结局

未报告次要终点

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Christina Zelano

Associate Professor

Northwestern University

研究点 (2)

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