Mapping the Deaf Auditory Cortex
Mapping the Deaf Auditory Cortex
批准号:
6853827
负责人:
JOHN W BELLIVEAU
金额:
$8.75万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-04-01 至 2007-03-31
中文摘要
描述(由申请人提供):传统上,认为大脑的感觉区域专门用于处理来自一组感觉器官的感觉信息,即,单一模态。 越来越多的动物和人类研究证据表明,即使是初级感觉皮层也有能力处理来自其他方式的信息。 更好地理解跨模态可塑性的神经机制对于感觉剥夺的人的康复和神经假体的开发至关重要。 最近对先天性耳聋成年人的成像研究表明,耳聋的“听觉”皮层可以处理视觉和触觉信息。 然而,聋人“听觉”皮层的功能组织尚不清楚,因为视觉和触觉信息的时空处理尚未在同一受试者中进行过研究。 此外,先天性失聪者的听觉皮层可以被不同感觉方式的刺激激活,这一事实并不能告诉我们这些可塑性变化发生的听觉通路的水平。 所测量的皮质激活可以反映丘脑核的重组,和/或丘脑-皮质以及皮质-皮质连接的可塑性。 在具体目标1中,研究者将描述皮质和皮质下水平的结构可塑性。 他们将在一组先天性耳聋和年龄匹配的听力受试者中使用解剖学和扩散张量磁共振成像来揭示假定的丘脑和轴突连接差异。 在《特定目标2》中,研究人员将联合收割机功能磁共振成像与电磁记录相结合,以揭示在视觉和振动触觉刺激期间聋人“听觉”皮层激活的可能时空差异。 这将使研究人员能够区分重叠或分离的神经元网络是否支持聋人“听觉”皮层的跨模态可塑性。
英文摘要
DESCRIPTION (provided by applicant): Traditionally, the sensory areas of the brain were believed to be exclusively devoted for processing of sensory information from one set of sensory organs, i.e., uni-modal. Increasing evidence from both animal and human studies now suggest that even the very primary sensory cortices have the capacity to process information from the other modalities. Greater understanding of the neural mechanisms underlying cross-modal plasticity is crucial for the rehabilitation of sensory deprived humans and development of neural prostheses. Recent imaging studies on congenitally deaf adults have shown that the deaf "auditory" cortex can process both visual and tactile information. However, the functional organization of the deaf "auditory" cortex is not known, as spatiotemporal processing of both visual and tactile information has not been investigated in the same subjects. Furthermore, the mere fact that the auditory cortices of the congenitally deaf can be activated by stimuli of different sensory modalities tells us very little about the level of the auditory pathway where these plastic changes take place. The measured cortical activations could reflect reorganization of the thalamic nuclei, and/or plasticity in thalamo-cortical as well as in cortico-cortical connections. In Specific Aim 1 the investigators will delineate structural plasticity both at the cortical and sub-cortical level. They will use anatomical and diffusion tensor magnetic resonance imaging in a cohort of congenitally deaf and age-matched hearing subjects to reveal putative thalamic and axonal connectivity differences. In Specific Aim 2 the investigators will combine functional magnetic resonance imaging with electromagnetic recordings to reveal the possible spatiotemporal differences in the activation of the deaf "auditory" cortex during visual and vibratory tactile stimulation. This will allow the investigators to distinguish whether overlapping or separate neuronal networks support the cross-modal plasticity of the deaf 'auditory' cortex.
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批准号:6349527
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资助金额:$24.12万
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依托单位:--
海外基金