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Nature Communications
|
April 17, 2025
Asynchronous development of the mouse auditory cortex is driven by hemispheric identity and sex
Ashlan P Reid, Demetrios Neophytou, Robert Levy, et al.
Nature Communications
|
June 27, 2019
Circuit asymmetries underlie functional lateralization in the mouse auditory cortex
Robert B Levy, Tiemo Marquarding, Ashlan P Reid, et al.
Neuron
|
August 23, 2016
High-Throughput Mapping of Single-Neuron Projections by Sequencing of Barcoded RNA
Justus M Kebschull, Pedro Garcia da Silva, Ashlan P Reid, et al.
Biorxiv : the Preprint Server for Biology
|
February 19, 2024
Label free, capillary-scale blood flow mapping <i>in vivo</i> reveals that low intensity focused ultrasound evokes persistent dilation in cortical microvasculature
YuBing Shen, Jyoti V Jethe, Ashlan P Reid, et al.
Communications Biology
|
January 6, 2025
Label free, capillary-scale blood flow mapping in vivo reveals that low-intensity focused ultrasound evokes persistent dilation in cortical microvasculature
YuBing Y Shen, Jyoti V Jethe, Ashlan P Reid, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Nature Communications
|
April 17, 2025
Asynchronous development of the mouse auditory cortex is driven by hemispheric identity and sex
Ashlan P Reid, Demetrios Neophytou, Robert Levy, et al.
Nature Communications
|
June 27, 2019
Circuit asymmetries underlie functional lateralization in the mouse auditory cortex
Robert B Levy, Tiemo Marquarding, Ashlan P Reid, et al.
Neuron
|
August 23, 2016
High-Throughput Mapping of Single-Neuron Projections by Sequencing of Barcoded RNA
Justus M Kebschull, Pedro Garcia da Silva, Ashlan P Reid, et al.
Biorxiv : the Preprint Server for Biology
|
February 19, 2024
Label free, capillary-scale blood flow mapping <i>in vivo</i> reveals that low intensity focused ultrasound evokes persistent dilation in cortical microvasculature
YuBing Shen, Jyoti V Jethe, Ashlan P Reid, et al.
Communications Biology
|
January 6, 2025
Label free, capillary-scale blood flow mapping in vivo reveals that low-intensity focused ultrasound evokes persistent dilation in cortical microvasculature
YuBing Y Shen, Jyoti V Jethe, Ashlan P Reid, et al.
Page
of 1