Peer reviewed publications


  • [7] Fabbri S., Stubbs K., Cusack R., and J.C. Culham (2016). Disentangling representations of object and grasp properties in the human brain. Journal of Neuroscience (July); 36(20):7648‐7662. doi: 10.1523/JNEUROSCI.0313‐16.2016

    [6] Fabbri S., Strnad L., Caramazza A., and Lingnau A. (2014). Overlapping, but independent, neuronal substrates for grip type and reach direction. NeuroImage (Jul) 1; 94:138-46. doi: 10.1016/j.neuroimage.2014.03.017 

    [5] Lingnau A., Strnad L., He C., Fabbri S., Han Z., Bi Y., and Caramazza A. (2012). Cross-modal plasticity preserves functional specialization in posterior parietal cortex. Cerebral Cortex (Oct.) Feb; 24(2):541-9. doi: 10.1093/cercor/bhs340

     [4] Fabbri S., Caviola S., Tang J., Zorzi M., and Butterworth B. (2012). The role of numerosity in processing non-symbolic proportions. The Quarterly Journal of Experimental Psychology (July); 65(12):2435-46. doi: 10.1080/17470218.2012.694896 

    [3] Fabbri S., Caramazza, A., and Lingnau A., (2012). Distributed sensitivity for movement amplitude in directionally tuned neuronal populations. Journal of NeurophysiologyApr; 107(7):1845-56. doi: 10.1152/jn.00435.2011 

    [2] Fabbri S., Caramazza A., and Lingnau A. (2010). Tuning curves for movement direction in the human visuomotor system. Journal of Neuroscience. Oct 6; 30(40):13488-98. doi: 10.1523/JNEUROSCI.2571-10.2010

     [1] Bonato M., Fabbri S., Umiltà C. and Zorzi M. (2007). The mental representation of numerical fractions: real or integers? Journal of Experimental Psychology: Human, Perception & Performance. Vol. 22, no.6, pp 1410-1419


  

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