Multi-scale mapping along the auditory hierarchy using high-resolution functional UltraSound in the awake ferret

被引:45
作者
Bimbard, Celian [1 ]
Demene, Charlie [2 ]
Girard, Constantin [1 ]
Radtke-Schuller, Susanne [1 ]
Shamma, Shihab [1 ,3 ]
Tanter, Mickael [2 ]
Boubenec, Yves [1 ]
机构
[1] PSL Res Univ, Ecole Normale Super, CNRS UMR 8248, Lab Syst Perceptifs,Audit Team, Paris, France
[2] PSL Res Univ, CNRS UMR 7587, INSERM U979, ESPCI ParisTech,Inst Langevin, Paris, France
[3] Univ Maryland Coll Pk, Dept Elect & Comp Engn, Inst Syst Res, College Pk, MD USA
基金
欧洲研究理事会; 美国国家卫生研究院;
关键词
INTRINSIC OPTICAL SIGNALS; ELECTRICAL MICROSTIMULATION; CEREBRAL-CORTEX; IN-VIVO; BRAIN; DOPPLER; ORGANIZATION; RESPONSES; STIMULI; NEURONS;
D O I
10.7554/eLife.35028
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
A major challenge in neuroscience is to longitudinally monitor whole brain activity across multiple spatial scales in the same animal. Functional UltraSound (fUS) is an emerging technology that offers images of cerebral blood volume over large brain portions. Here we show for the first time its capability to resolve the functional organization of sensory systems at multiple scales in awake animals, both within small structures by precisely mapping and differentiating sensory responses, and between structures by elucidating the connectivity scheme of top-down projections. We demonstrate that fUS provides stable (over days), yet rapid, highly-resolved 3D tonotopic maps in the auditory pathway of awake ferrets, thus revealing its unprecedented functional resolution (100/300 mu m). This was performed in four different brain regions, including very small (1 - 2 mm(3) size), deeply situated subcortical (8 mm deep) and previously undescribed structures in the ferret. Furthermore, we used fUS to map long-distance projections from frontal cortex, a key source of sensory response modulation, to auditory cortex.
引用
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页数:14
相关论文
共 37 条
[1]   Vascular Supply of the Cerebral Cortex is Specialized for Cell Layers but Not Columns [J].
Adams, Daniel L. ;
Piserchia, Valentina ;
Economides, John R. ;
Horton, Jonathan C. .
CEREBRAL CORTEX, 2015, 25 (10) :3673-3681
[2]   Emergent Selectivity for Task-Relevant Stimuli in Higher-Order Auditory Cortex [J].
Atiani, Serin ;
David, Stephen V. ;
Elgueda, Diego ;
Locastro, Michael ;
Radtke-Schuller, Susanne ;
Shamma, Shihab A. ;
Fritz, Jonathan B. .
NEURON, 2014, 82 (02) :486-499
[3]   Physiological and anatomical evidence for multisensory interactions in auditory cortex [J].
Bizley, Jennifer K. ;
Nodal, Fernando R. ;
Bajo, Victoria M. ;
Nelken, Israel ;
King, Andrew J. .
CEREBRAL CORTEX, 2007, 17 (09) :2172-2189
[4]   Visual-auditory spatial processing in auditory cortical neurons [J].
Bizley, Jennifer K. ;
King, Andrew J. .
BRAIN RESEARCH, 2008, 1242 :24-36
[5]   Functional organization of ferret auditory cortex [J].
Bizley, JK ;
Nodal, FR ;
Nelken, I ;
King, AJ .
CEREBRAL CORTEX, 2005, 15 (10) :1637-1653
[6]  
Boubenec Y., 2018, BAPHY
[7]   Functional ultrasound imaging of brain activity in human newborns [J].
Demene, Charlie ;
Baranger, Jerome ;
Bernal, Miguel ;
Delanoe, Catherine ;
Auvin, Stephane ;
Biran, Valerie ;
Alison, Marianne ;
Mairesse, Jerome ;
Harribaud, Elisabeth ;
Pernot, Mathieu ;
Tanter, Mickael ;
Baud, Olivier .
SCIENCE TRANSLATIONAL MEDICINE, 2017, 9 (411)
[8]   4D microvascular imaging based on ultrafast Doppler tomography [J].
Demene, Charlie ;
Tiran, Elodie ;
Sieu, Lim-Anna ;
Bergel, Antoine ;
Gennisson, Jean Luc ;
Pernot, Mathieu ;
Deffieux, Thomas ;
Cohen, Ivan ;
Tanter, Mickael .
NEUROIMAGE, 2016, 127 :472-483
[9]   Spatiotemporal Clutter Filtering of Ultrafast Ultrasound Data Highly Increases Doppler and fUltrasound Sensitivity [J].
Demene, Charlie ;
Deffieux, Thomas ;
Pernot, Mathieu ;
Osmanski, Bruno-Felix ;
Biran, Valerie ;
Gennisson, Jean-Luc ;
Sieu, Lim-Anna ;
Bergel, Antoine ;
Franqui, Stephanie ;
Correas, Jean-Michel ;
Cohen, Ivan ;
Baud, Olivier ;
Tanter, Mickael .
IEEE TRANSACTIONS ON MEDICAL IMAGING, 2015, 34 (11) :2271-2285
[10]   Rapid task-related plasticity of spectrotemporal receptive fields in primary auditory cortex [J].
Fritz, J ;
Shamma, S ;
Elhilali, M ;
Klein, D .
NATURE NEUROSCIENCE, 2003, 6 (11) :1216-1223