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Effects of experience on shared information across brains: Insights from blindness

Effects of experience on shared information across brains: Insights from blindness
经验对大脑共享信息的影响:来自失明的见解
批准号:
1911650
负责人:
Elizabeth Musz
金额:
$13.8万
依托单位:
依托单位国家:
美国
项目类别:
Fellowship Award
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-08-01 至 2022-01-31

项目摘要

项目成果

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中文摘要
翻译
该奖项是作为NSF社会、行为和经济科学(SBE)博士后研究奖学金(SPRF)计划和SBE认知神经科学计划的一部分提供的。SPRF计划的目标是为学术界、工业界或私营部门和政府的科学职业生涯培养有前途的、早期职业博士水平的科学家。SPRF奖项包括在知名科学家的赞助下进行两年的培训,并鼓励博士后研究员进行独立研究。国家科学基金会致力于促进科学界所有阶层的科学家参与其研究方案和活动,包括那些来自代表性不足的群体的科学家;博士后阶段被认为是实现这一目标的专业发展的一个重要水平。每个博士后研究员都必须解决推动各自学科领域向前发展的重要科学问题。在约翰·霍普金斯大学的Marina Bedny、Janice Chen和Uri Hasson的赞助下,这一博士后奖学金奖项支持一名早期职业科学家研究人脑的功能灵活性,以及个人在发育过程中的经历如何塑造皮质专门化。特别是,这个项目调查了支配盲人神经可塑性和视觉皮质发育的原理。这项研究使用功能神经成像来研究不同失明个体的视觉皮质的神经元反应特性。为了研究盲人的视觉皮质是否对广泛的非视觉输入敏感,拟议的实验将测量盲人和有视力的人在听自然的、叙事性的听觉刺激时的神经活动,这些刺激包含不同程度的低水平感觉信息和高水平的抽象内容。这项研究有可能促进我们对神经可塑性和脑发育机制的理解,这项工作的发现可能会为未来视觉障碍的治疗提供参考。这项拟议的研究旨在通过研究大脑功能是如何由感觉经验塑造的来确定人类大脑的功能灵活性。人类大脑的枕叶,通常支持视力正常的人的视觉处理,对于天生没有视力的人来说,它对触摸和声音做出反应。然而,这种可塑性的机制及其对人脑功能理论的影响仍然难以捉摸,也存在争议。为了探索盲人视皮层是否对听觉输入的高水平、语义和低水平感觉特征都敏感,这些实验使用功能神经成像来测量个体在听自然听觉刺激时的神经活动。此外,为了比较不同盲人的大脑,并将观察到的功能与视力正常的大脑联系起来,这项拟议的研究采用了受试者之间的、脑对脑的神经成像分析。第一个分析将解决不同失明个体的视觉皮质是否表现出可靠的相似反应曲线。为了进一步表征盲视皮层的反应,第二项分析测试了盲视皮层是否执行与在有视力的大脑中观察到的功能网络类似的计算。第三项分析通过比较出生时失明的人和成年后失明的人的视觉皮质功能,测试早期生活经历如何塑造大脑发育。这项工作有可能对脑发育理论做出重要贡献,特别是关于大脑皮质发育时间进程和功能特化的潜力。除了失明之外,这些研究可以作为理解经验因素如何在发育过程中驱动大脑可塑性的一般模型。这些发现还将提高我们对如何在整个生命周期中优化或重新利用神经组织功能的知识。这一奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
This award was provided as part of NSF's Social, Behavioral and Economic Sciences (SBE) Postdoctoral Research Fellowships (SPRF) program and SBE's Cognitive Neuroscience program. The goal of the SPRF program is to prepare promising, early career doctoral-level scientists for scientific careers in academia, industry or private sector, and government. SPRF awards involve two years of training under the sponsorship of established scientists and encourage Postdoctoral Fellows to perform independent research. NSF seeks to promote the participation of scientists from all segments of the scientific community, including those from underrepresented groups, in its research programs and activities; the postdoctoral period is considered to be an important level of professional development in attaining this goal. Each Postdoctoral Fellow must address important scientific questions that advance their respective disciplinary fields. Under the sponsorship of Marina Bedny, Janice Chen, and Uri Hasson at Johns Hopkins University, this postdoctoral fellowship award supports an early career scientist studying the functional flexibility of the human brain, and the ways in which an individual's experiences during development can shape cortical specialization. In particular, this project investigates the principles that govern neural plasticity and development of the visual cortex in blind people. The proposed research uses functional neuroimaging to study the neuronal response properties of the visual cortices across different blind individuals. To investigate whether the visual cortices of blind people are sensitive to a wide range of non-visual input, the proposed experiments will measure neural activity while blind and sighted individuals listen to naturalistic, narrative auditory stimuli, such as stories and movie clips, that contain varying degrees of low-level, sensory information versus high-level, abstract content. This research has the potential to advance our understanding of the mechanisms of neural plasticity and brain development, and the findings from this work may inform future treatments of visual impairments.The proposed research aims to determine the functional flexibility of the human brain by investigating how brain function is shaped by sensory experience. The occipital lobes of the human brain, which typically support visual processing in sighted individuals, respond to touch and sound in individuals who are born without vision. However, the mechanisms driving this plasticity and its implications for theories of human brain function remain elusive and disputed. To probe whether the visual cortex of blind individuals is sensitive to both high-level, semantic and low level, sensory features of auditory input, these experiments employ functional neuroimaging to measure neural activity while individuals listen to naturalistic auditory stimuli. In addition, to compare the brains of different blind individuals, and to relate the observed functions to the sighted brain, the proposed research applies inter-subject, brain-to-brain neuroimaging analyses. The first analysis will address whether the visual cortex exhibits reliably similar response profiles across different blind individuals. To further characterize responses in blind visual cortex, the second analysis tests whether blind visual cortex performs similar computations to functional networks that are observed in the sighted brain. The third analysis tests how early life experience shapes brain development by comparing the functions of visual cortex in individuals who are born blind to those who lost their vision in adulthood. This work has the potential to make important contributions to theories of brain development, particularly regarding the developmental time course and the potential for functional specialization in cortex. Outside of blindness, these studies may serve as a general model for understanding how experiential factors drive brain plasticity during development. Such findings will also advance our knowledge of how the functions of neural tissue can be optimized or re-purposed across the lifespan.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(2)
专著(0)
科研奖励(0)
会议论文
Naturalistic Audio-Movies reveal common spatial organization across “visual” cortices of different blind individuals
自然主义的音频电影揭示了不同盲人“视觉”皮层的共同空间组织
DOI: 10.1093/cercor/bhac048
发表时间: 2022
期刊: Cerebral Cortex
影响因子: 3.7
作者: [Musz, Elizabeth, Loiotile, Rita, Chen, Janice, Bedny, Marina]
通讯作者: Bedny, Marina
Naturalistic stimuli reveal a critical period in visual cortex development: Evidence from adult-onset blindness
自然刺激揭示了视觉皮层发育的关键时期:来自成人失明的证据
DOI: 10.1101/2021.09.14.460305
发表时间: 2021
期刊: bioRxiv
影响因子: --
作者: [Musz, E., Loitile, R., Chen, J., Cusack, R., Bedny, M.]
通讯作者: Bedny, M.
海外基金