[1] Kuramoto E, Fujiyama F, Nakamura KC, et al., Complementary distribution of glutamatergic cerebellar and GABAergic basal ganglia afferents to the rat motor thalamic nuclei[J]. Eur J Neurosci, 2011, 33(1): 95-109.
[2] McFarland NR, Haber SN. Thalamic relay nuclei of the basal ganglia form both reciprocal and nonreciprocal cortical connections, linking multiple frontal cortical areas[J]. J Neurosci, 2002, 22(18): 8117-8132.
[3] Haber SN, Calzavara R. The cortico-basal ganglia integrative network: the role of the thalamus[J]. Brain Res Bull, 2009, 78(2-3): 69-74.
[4] Fang PC, Stepniewska I, Kaas JH. The thalamic connections of motor, premotor, and prefrontal areas of cortex in a prosimian primate (Otolemur garnetti) [J]. Neuroscience, 2006, 143(4): 987-1020.
[5] Hooks BM, Mao T, Gutnisky DA, et al. Organization of cortical and thalamic input to pyramidal neurons in mouse motor cortex[J]. J Neurosci, 2013, 33(2): 748-760.
[6] Nakamura KC, Sharott A, Magill PJ. Temporal coupling with cortex distinguishes spontaneous neuronal activities in identified basal ganglia-recipient and cerebellar-recipient zones of the motor thalamus[J]. Cereb Cortex, 2014, 24(1): 81-97.
[7] Kurata K. Activity properties and location of neurons in the motor thalamus that project to the cortical motor areas in monkeys[J]. J Neurophysiol, 2005, 94(1): 550-566.
[8] Connelly WM, Errington AC. Temporally selective firing of cortical and thalamic neurons during sleep and wakefulness[J]. J Neurosci, 2012, 32(22): 7415-7417.
[9] Ushimaru M, Ueta Y, Kawaguchi Y. Differentiated participation of thalamocortical subnetworks in slow/spindle waves and desynchronization[J]. J Neurosci, 2012, 32(5): 1730-1746.
[10]Tscherter A, David F, Ivanova T, et al. Minimal alterations in T-type calcium channel gating markedly modify physiological firing dynamics[J]. J Physiol, 2011, 589(Pt7): 1707-1024.
[11]Xu W, Morishita W, Buckmaster PS, et al. Distinct neuronal coding schemes in memory revealed by selective erasure of fast synchronous synaptic transmission[J]. Neuron, 2012, 73(5): 990-1001.
[12]Tarr TB, Dittrich M, Meriney SD. Are unreliable release mechanisms conserved from NMJ to CNS[J]? Trends Neurosci, 2013, 36(1): 14-22.
[13]Bezdudnaya T, Cano M, Bereshpolova Y, et al. Thalamic burst mode and inattention in the awake LGNd[J]. Neuron, 2006, 49(3): 421-432.
[14]Hsu CL, Yang HW, Yen CT, et al. A requirement of low-threshold calcium spike for induction of spike-timing-dependent plasticity at corticothalamic synapses on relay neurons in the ventrobasal nucleus of rat thalamus[J]. Chin J Physiol, 2012, 55(6): 380-389.
[15]Person AL, Perkel DJ. Unitary IPSPs drive precise thalamic spiking in a circuit required for learning[J]. Neuron, 2005, 46(1): 129-140.
[16]Churchland MM, Cunningham JP, Kaufman MT, et al. Neural population dynamics during reaching[J]. Nature, 2012, 487(7405): 51-56.
[17] Ebner TJ, Hewitt AL, Popa LS. What features of limb movements are encoded in the discharge of cerebellar neurons[J]? Cerebellum, 2011, 10(4): 683-693.
[18]Dean P, Porrill J, Ekerot CF, et al. The cerebellar microcircuit as an adaptive filter: experimental and computational evidence[J]. Nat Rev Neurosci, 2010, 11(1): 30-43.
[19] Nambu A. Globus pallidus internal segment[J]. Prog Brain Res, 2007, 160: 135-150.
[20]Nevet A, Morris G, Saban G, et al. Lack of spike-count and spike-time correlations in the substantia nigra reticulata despite overlap of neural responses[J]. J Neurophysiol, 2007, 98(4): 2232-2243.
[21]Barnes TD, Kubota Y, Hu D, et al. Activity of striatal neurons reflects dynamic encoding and recoding of procedural memories[J]. Nature, 2005, 437(7062): 1158-1161.
[22] Ivanusic JJ, Bourke DW, Xu ZM, et al. Cerebellar thalamic activity in the macaque monkey encodes the duration but not the force or velocity of wrist movement[J]. Brain Res, 2005, 1041(2): 181-197.
[23] Klein JC, Barbe MT, Seifried C, et al. The tremor network targeted by successful VIM deep brain stimulation in humans[J]. Neurology, 2012, 78(11): 787-95.
[24]Okun MS, Vitek JL. Lesion therapy for Parkinson's disease and other movement disorders: update and controversies[J]. Mov Disord, 2004, 19(4): 375-389.
[25]Oehrn C, Allbutt H, Henderson J. Effect of ventrolateral thalamic nucleus lesions in the unilateral 6-hydroxydopamine rat model[J]. Behav Brain Res, 2007, 183(1): 67-77.
[26]Hanson TL, Fuller AM, Lebedev MA, et al. Subcortical neuronal ensembles: an analysis of motor task association, tremor, oscillations, and synchrony in human patients[J]. J Neurosci, 2012, 32(25): 8620-8632. |