Page 129 - AN-3-3
P. 129

Advanced Neurology                                                   Evaluating plausibility of thalamic model



               Cognitive Hallucinations. Berlin, Heidelberg: Springer; 2003.   23.  Llinás R, Leznik El, Urbano FJ. Temporal binding via
               p. 1156-1163.                                      cortical coincidence detection of specific and nonspecific
               doi: 10.1007/978-3-540-45226-3_157                 thalamocortical inputs: A  voltage-dependent dye-imaging
                                                                  study in mouse brain slices.  Proc Natl Acad Sci U S A.
            11.  Pelaez JR. Plato’s theory of ideas revisited.  Neural Netw.   2002;99(1):449-454.
               1997;10(7):1269-1288.
                                                                  doi: 10.1073/pnas.012604899
               doi: 10.1016/S0893-6080(97)00052-X
                                                               24.  Sherman SM. Functioning of circuits connecting thalamus
            12.  Peláez  JR.  Towards  a  neural  network  based  and cortex. Compr Physiol. 2017;7(2):713-739.
               therapy  for  hallucinatory disorders.  Neural Netw.
               2000;13(8-9):1047-1061.                            doi: 10.1002/cphy.c160032
               doi: 10.1016/S0893-6080(00)00069-1              25.  Shepherd G, Grillner S.  Handbook  of  Brain  Microcircuits.
                                                                  United Kingdom: Oxford University Press; 2010.
            13.  Felten  DL,  O’Banion  MK,  Maida  MS.  Netter’s  Atlas  of
               Neuroscience. 3  ed. Amsterdam: Elsevier; 2015.     doi: 10.1093/MED/9780195389883.001.0001
                          rd
               doi: 10.1016/B978-0-323-26511-9.00018-7         26.  Shepherd GM, Rowe TB. Neocortical lamination: Insights
                                                                  from neuron types and evolutionary precursors.  Front
            14.  Bear MF, Connors BW, Paradiso MA.  Neuroscience:   Neuroanat. 2017;11:100.
               Exploring the Brain. 4  ed. United States: Jones and Bartlett
                               th
               Learning; 2020.                                    doi: 10.3389/fnana.2017.00100
            15.  Courtiol E, Wilson DA. The olfactory thalamus: Unanswered   27.  Zhu JJ, Lo FS. Three GABA receptor-mediated postsynaptic
               questions about the role of the mediodorsal thalamic nucleus   potentials in interneurons in the rat lateral geniculate
               in olfaction. Front Neural Circuits. 2015;9:156303.  nucleus. J Neurosci. 1999;19(14):5721-5730.
               doi: 10.3389/FNCIR.2015.00049/BIBTEX               doi: 10.1523/jneurosci.19-14-05721.1999
            16.  Sherman MS, Guillery RW. Exploring the Thalamus and Its   28.  Sherman SM, Usrey WM.  Exploring Thalamocortical
               Role in Cortical Function. 2   ed. United States: The MIT   Interactions.  United   Kingdom:  Oxford  University
                                    nd
               Press; 2009.                                       Press; 2021.
            17.  Halassa MM, editor.  The  Thalamus. United  Kingdom:      doi: 10.1093/med/9780197503874.001.0001
               Cambridge University Press; 2022.               29.  Sur M, Leamey CA. Development and plasticity of cortical
               doi: 10.1017/9781108674287                         areas and networks. Nat Rev Neurosci. 2001;2(4):251-262.
            18.  Müller EJ, Munn BR, Redinbaugh MJ,  et  al. The non-     doi: 10.1038/35067562
               specific matrix thalamus facilitates the cortical information   30.  Mulle C, Madariaga A, Deschenes M. Morphology and
               processing modes relevant for conscious awareness.  Cell   electrophysiological properties of reticularis thalami
               Rep. 2023;42(8):112844.                            neurons in cat:  In vivo study of a thalamic pacemaker.

               doi: 10.1016/j.celrep.2023.112844                  J Neurosci. 1986;6(8):2134-2145.
            19.  Sherman SM, Guillery RW.  Functional Connections of      doi: 10.1523/JNEUROSCI.06-08-02134.1986
               Cortical Areas: A  New View from the Thalamus. United   31.  Deschênes M, Madariaga-Domich A, Steriade M.
               States: The MIT Press; 2013.                       Dendrodendritic synapses in  the cat reticularis thalami
               doi: 10.7551/MITPRESS/9780262019309.001.0001       nucleus: A  structural basis for thalamic spindle
                                                                  synchronization. Brain Res. 1985;334(1):165-168.
            20.  Izhikevich EM, Edelman GM. Large-scale model of
               mammalian  thalamocortical  systems.  Proc Natl Acad Sci      doi: 10.1016/0006-8993(85)90580-3
               U S A. 2008;105(9):3593-3598.
                                                               32.  Cox CL, Zhou Q, Sherman SM. Glutamate locally activates
               doi: 10.1073/pnas.0712231105                       dendritic outputs of thalamic interneurons.  Nature.
                                                                  1998;394(6692):478-482.
            21.  Crick F, Asanuma C. Certain aspects of the anatomy
               and  physiology  of the cerebral cortex.  In:  McClelland  JL,      doi: 10.1038/28855
               Rumelhart DE, editors.  Parallel  Distributed  Processing.   33.  Diamantaras KI, Kung SY.  Principal Component Neural
               Vol. 2. United States: MIT Press; 1999. p. 611.
                                                                  Networks: Theory and Applications. United States: John
            22.  Llinás R, Ribary U, Contreras D, Pedroarena G. The neuronal   Wiley and Sons, Inc; 1996.
               basis for consciousness. Philos Trans R Soc Lond B Biol Sci.   34.  Tsytsarev  V.  Methodological  aspects  of  studying
               1998;353(1377):1841-1849.
                                                                  the mechanisms of consciousness.  Behav Brain Res.
               doi: 10.1098/rstb.1998.0336                        2022;419:113684.


            Volume 3 Issue 3 (2024)                         17                               doi: 10.36922/an.3188
   124   125   126   127   128   129   130   131   132   133   134