Evidence of a direct influence between the thalamus and hMT plus independent of V1 in the human brain as measured by fMRI

被引:27
|
作者
Gaglianese, Anna [1 ]
Costagli, Mauro [2 ,3 ]
Bernardi, Giulio [1 ]
Ricciardi, Emiliano [1 ,4 ]
Pietrini, Pietro [1 ]
机构
[1] Univ Pisa, Sch Med, Lab Clin Biochem & Mol Biol, I-56127 Pisa, Italy
[2] Fdn IMAG07, Pisa, Italy
[3] RIKEN Brain Sci Inst, Lab Cognit Brain Mapping, Wako, Saitama, Japan
[4] Fdn G Monasterio CNR Reg Toscana, Pisa, Italy
关键词
Visual motion; hMT; Thalamus; fMRI; Connectivity; Conditional Granger Causality; Phase delay; MIDDLE TEMPORAL AREA; VISUAL RESPONSE PROPERTIES; GRANGER CAUSALITY; FUNCTIONAL CONNECTIVITY; SUPERIOR COLLICULUS; HUMAN MT; LINEAR-DEPENDENCE; MACAQUE MONKEY; AFFERENT BASIS; PULVINAR PATH;
D O I
10.1016/j.neuroimage.2012.01.093
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In the present study we employed Conditional Granger Causality (CGC) and Coherence analysis to investigate whether visual motion-related information reaches the human middle temporal complex (hMT +) directly from the Lateral Geniculate Nucleus (LGN) of the thalamus, by-passing the primary visual cortex (V1). Ten healthy human volunteers underwent brain scan examinations by functional magnetic resonance imaging (fMRI) during two optic flow experiments. In addition to the classical LGN-V1-hMT + pathway, our results showed a significant direct influence of the blood oxygenation level dependent (BOLD) signal recorded in LGN over that in hMT +, not mediated by V1 activity, which strongly supports the existence of a bilateral pathway that connects LGN directly to hMT + and serves visual motion processing. Furthermore, we evaluated the relative latencies among areas functionally connected in the processing of visual motion. Using LGN as a reference region, hMT + exhibited a statistically significant earlier peak of activation as compared to V1. In conclusion, our findings suggest the co-existence of an alternative route that directly links LGN to hMT +, bypassing V1. This direct pathway may play a significant functional role for the faster detection of motion and may contribute to explain persistence of unconscious motion detection in individuals with severe destruction of primary visual cortex (blindsight). (c) 2012 Elsevier Inc. All rights reserved.
引用
收藏
页码:1440 / 1447
页数:8
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