Nonlinear coupling of neural activity and CBF in rodent barrel cortex

被引:86
作者
Jones, M [1 ]
Hewson-Stoate, N [1 ]
Martindale, J [1 ]
Redgrave, P [1 ]
Mayhew, J [1 ]
机构
[1] Univ Sheffield, Dept Psychol, Neural Imaging Res Unit, Sheffield S10 2TP, S Yorkshire, England
关键词
cerebral blood flow; laser Doppler flowmetry; fMRI; hemodynamic changes;
D O I
10.1016/j.neuroimage.2004.02.007
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The relationship between neural activity and accompanying changes in cerebral blood flow (CBF) and oxygenation must be fully understood before data from brain imaging techniques can be correctly interpreted. Whether signals in fMRI reflect the neural input or output of an activated region is still unclear. Similarly, quantitative relationships between neural activity and changes in CBF are not well understood. The present study addresses these issues by using simultaneous laser Doppler flowmetry (LDF) to measure CBF and multichannel electrophysiology to record neural activity in the form of field potentials and multiunit spiking. We demonstrate that CBF-activation coupling is a nonlinear inverse sigMoid function. Comparing the data with previous work suggests that within a cortical model, CBF shows greatest spatial correlation with a current sink 500 mum below the surface corresponding to sensory input. These results show that care must be exercised when interpreting imaging data elicited by particularly strong or weak stimuli and that hemodynamic changes may better reflect the input to a region rather than its spiking output. (C) 2004 Elsevier Inc. All rights reserved.
引用
收藏
页码:956 / 965
页数:10
相关论文
共 56 条
[31]   Evidence of a cerebrovascular postarteriole windkessel with delayed compliance [J].
Mandeville, JB ;
Marota, JJA ;
Ayata, C ;
Zaharchuk, G ;
Moskowitz, MA ;
Rosen, BR ;
Weisskoff, RM .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1999, 19 (06) :679-689
[32]  
Marota JJA, 1999, MAGNET RESON MED, V41, P247, DOI 10.1002/(SICI)1522-2594(199902)41:2<247::AID-MRM6>3.0.CO
[33]  
2-U
[34]   Optical imaging spectroscopy in the unanaesthetised rat [J].
Martin, C ;
Berwick, J ;
Johnston, D ;
Zheng, Y ;
Martindale, J ;
Port, M ;
Redgrave, P ;
Mayhew, J .
JOURNAL OF NEUROSCIENCE METHODS, 2002, 120 (01) :25-34
[35]   The hemodynamic impulse response to a single neural event [J].
Martindale, J ;
Mayhew, J ;
Berwick, J ;
Jones, M ;
Martin, C ;
Johnston, D ;
Redgrave, P ;
Zheng, Y .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2003, 23 (05) :546-555
[36]   Spectroscopic analysis of neural activity in brain: Increased oxygen consumption following activation of barrel cortex [J].
Mayhew, J ;
Johnston, D ;
Berwick, J ;
Jones, M ;
Coffey, P ;
Zheng, Y .
NEUROIMAGE, 2000, 12 (06) :664-675
[38]   SEPARATION OF A MIXTURE OF INDEPENDENT SIGNALS USING TIME-DELAYED CORRELATIONS [J].
MOLGEDEY, L ;
SCHUSTER, HG .
PHYSICAL REVIEW LETTERS, 1994, 72 (23) :3634-3637
[39]   Current source density analysis of ON/OFF channels in the frog optic tectum [J].
Nakagawa, H ;
Matsumoto, N .
PROGRESS IN NEUROBIOLOGY, 2000, 61 (01) :1-44
[40]   Scopolamine-sensitive and resistant components of increase in cerebral cortical blood flow elicited by periaqueductal gray matter of rats [J].
Nakai, M ;
Maeda, M .
NEUROSCIENCE LETTERS, 1999, 270 (03) :173-176