CELL TYPES IN ORBITOFRONTAL CORTEX AND THEIR CAUSAL INFLUENCE ON ECONOMIC CHOICE
CELL TYPES IN ORBITOFRONTAL CORTEX AND THEIR CAUSAL INFLUENCE ON ECONOMIC CHOICE
批准号:
8239499
负责人:
Camillo Padoa-Schioppa
金额:
$7.6万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-04-01 至 2013-03-31
关键词:
AddressAffectBehaviorBehavioralCellsChoice BehaviorClassificationDataDrug AddictionEconomicsElectrodesElementsEtiologyFrontotemporal DementiaGABA AgonistsHumanImageIndividualInjection of therapeutic agentInterneuronsJuiceLesionLinkMental disordersMonkeysMuscimolNeurobiologyNeuronsPatternPilot ProjectsPlayPopulationPrimatesProcessPsyche structurePyramidal CellsResearchRestaurantsRoleSalineShapesSiteTaste PerceptionTestingTimeWorkbasecell typeeconomic valueelectrical microstimulationmicrostimulationneuromechanismpreferencepublic health relevancerelating to nervous systemresearch studyresponse
中文摘要
描述(由申请者提供):经济选择(EC)是当个人完全基于主观偏好做出选择时所观察到的行为--例如,在餐厅菜单之外。作为一种心理功能,EC需要为可用选项赋值;然后通过比较这些值来做出决定。有几条证据表明,眶前皮质(OFC)是EC的神经基质。首先,OFC的损伤或功能障碍(例如,额颞痴呆和药物成瘾)通常会扰乱EC的行为。其次,人体成像研究表明,当受试者做出选择时,与为他们做出选择时相比,OFC的激活程度更高。第三,当受试者在不同的选项中进行选择时,灵长类OFC中的单个神经元编码了分配给不同选项的值。综上所述,这些因素表明OFC在EC中发挥了作用。然而,OFC中编码的值与行为选择之间的因果关系尚未建立。为了开始解决这个基本问题,我们将对现有数据进行二次分析(目标1),并将使用电微刺激和药物灭活进行两项试点研究(目标2)。在我们的实验中,猴子在提供的两种不同量的果汁中进行选择。我们之前发现,OFC中的神经元编码猴子在选择时分配给不同果汁的主观价值。更准确地说,OFC中的神经元反应编码了3个变量:提供值(两种果汁之一的值)、选择值(选择的果汁的值)和味道(选择的果汁类型,与数量无关)。在计算意义上,报价价值反应(在报价后立即最普遍)似乎编码了做出选择所必需的价值。相反,选择的价值反应和品味反应似乎编码了选择过程的结果。因此,我们的工作假设是,选择可能基于出价价值反应。为了检验这一假设,并在报价编码和选择之间建立因果联系,我们将解决三个关键问题。(1)变量提供的值和选择的值是由不同的、可能是解剖上聚集的细胞群体编码的吗?这个问题将通过对现有数据的二次分析来解决。(2)“人为地”激活一组编码出价的神经元,会对选择产生偏见吗?这个问题将用电微刺激来解决。具体地说,我们将识别神经元编码特定果汁的提供值的位置,并在猴子在该果汁和另一种果汁之间进行选择时注入小电流。(3)“沉默”这个神经元群体会打乱人们的选择吗?这个问题将通过可逆的药物失活来解决。证明OFC中的价值编码与选择行为之间的因果关系将是一项重要的突破。因此,这项研究可能会影响我们如何理解EC背后的神经机制以及精神疾病中的功能障碍。
与公共健康相关:当个人做出选择时--例如在餐厅菜单上的不同菜肴之间--眼眶前额叶皮质(OFC)的神经元计算不同选项的主观价值。这项研究将测试选择是否真的是由OFC计算的价值引起的。
英文摘要
DESCRIPTION (provided by applicant): Economic choice (EC) is the behavior observed when individuals make choices solely based on subjective preferences - for example out of a restaurant menu. As a mental function, EC entails assigning values to the available options; a decision is then made by comparing these values. Several lines of evidence implicate the orbitofrontal cortex (OFC) as a neural substrate for EC. First, lesions or malfunction of the OFC (e.g., in frontotemporal dementia and drug addiction) typically disrupt EC behavior. Second, imaging studies in humans show enhanced OFC activation when subjects make choices compared to when choices are made for them. Third, individual neurons in the primate OFC encode the value subjects assign to different options when they choose between them. Taken together, these elements suggest that OFC plays a role in EC. However, a causal relationship between values encoded in the OFC and behavioral choices has not yet been established. To begin addressing this fundamental question, we will perform a secondary analysis of existing data (Aim 1) and we will conduct two pilot studies using electrical microstimulation and pharmacological inactivation (Aim 2). In our experiments monkeys choose between two juices offered in variable amounts. We previously found that neurons in the OFC encode the subjective values monkeys assign to different juices while choosing. More precisely, neuronal responses in the OFC encode 3 variables: offer value (the value of one of the two juices), chosen value (the value of the chosen juice) and taste (the chosen juice type, independently of the amount). In a computational sense, offer value responses (which are most prevalent immediately after the offer) seem to encode the values necessary to make a choice. Conversely, chosen value responses and taste responses seem to encode the result of the choice process. Thus our working hypothesis is that choices may be based on offer value responses. To test this hypothesis and establish a causal link between the encoding of offer values and choices, we will address three key questions. (1) Are variables offer value and chosen value encoded by distinct and perhaps anatomically clustered populations of cells? This question will be addressed with a secondary analysis of existing data. (2) Can choices be biased by "artificially" activating a population of neurons encoding the offer value? This question will be addressed using electrical microstimulation. Specifically, we will identify sites where neurons encode the offer value of a particular juice and inject small current as a monkey chooses between that juice and another juice. (3) Are choices disrupted by "silencing" this neuronal population? This question will be addressed using reversible pharmacological inactivation. Demonstrating a causal relationship between the encoding of value in OFC and choice behavior would represent an important breakthrough. Thus this research can potentially shape how we understand the neural mechanisms that underlie EC and that malfunction in mental illness.
PUBLIC HEALTH RELEVANCE: When individual make choices - for example between different dishes on a restaurant menu - neurons in the orbitofrontal cortex (OFC) compute the subjective value of the different options. This research will test whether choices are indeed caused by values computed in the OFC.
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会议论文
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