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I have a strong training in Auditory Neuroscience and a range of basic science and translational research experience using auditory electrophysiological measures at the brainstem and cortical levels. I am also very comfortable in the interpretation of fMRI data-one of the key measures proposed herein. The goal of the proposed research is to investigate the distributed processing network for pitch processing at the brainstem and cortical levels, and how it is shaped by language experience. Specifically, our aim is to better understand how neural pitch representations of lexical tone interact with extrasensory, higher-order processes at various levels of processing along the hierarchical auditory pathway. We have published extensively on temporal attributes of pitch processing at the level of brainstem and auditory cortex separately. The logical next step is to extend this research program by employing timing measures at cortical and brainstem levels (EEG) coupled with measures of cortical spatial locations contributing to pitch processing (fMRI) in an effort to advance our knowledge about the spatiotemporal dynamics of the language experience shaped distributed hierarchical pitch processing network. My research collaboration with the several leading researchers reveals a proven track record over the past 12 years. I have experience in leading and participating in collaborative projects funded through NIH. I have the expertise, leadership and motivation necessary to successfully carry out the proposed work. In summary, I have a demonstrated record of accomplished and productive research projects in an area of high relevance for both normal and impaired hearing populations, and my expertise and experience have prepared me to lead the electrophysiological components of the proposed project
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论文共 61 篇作者统计合作学者相似作者
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American Journal of Audiologyno. 3 (2022): 719-736
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FREQUENCY-FOLLOWING RESPONSE: A WINDOW INTO HUMAN COMMUNICATION (2017)
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