Publication Cover
Neurocase
Behavior, Cognition and Neuroscience
Volume 26, 2020 - Issue 1
652
Views
1
CrossRef citations to date
0
Altmetric
Articles

Recovery from tactile agnosia: a single case study

, , , , &
Pages 18-28 | Received 30 Aug 2018, Accepted 09 Sep 2019, Published online: 22 Nov 2019

References

  • Antal, A., Brepohl, N., Poreisz, C., Boros, K., Csifcsak, G., & Paulus, W. (2008). Transcranial direct current stimulation over somatosensory cortex decreases experimentally induced acute pain perception. The Clinical Journal of Pain, 24, 56–63.
  • Appollonio, I., Leone, M., Isella, V., Piamarta, F., Consoli, T., Villa, M. L., … Nichelli, P.. (2005). The frontal assessment battery (FAB): Normative values in an Italian population sample. Neurological Sciences, 26, 108–116.
  • Araneda, R., De Volder, A. G., Deggouj, N., Philippot, P., Heeren, A., Lacroix, E., & Decat, M. (2015). Altered top-down cognitive control and auditory processing in tinnitus: Evidences from auditory and visual spatial stroop. Restor Neurol Neurosci., 33, 67–80.
  • Balsamo, M., Trojano, L., Giamundo, A., & Grossi, D. (2008). Left hand tactile agnosia after posterior callosal lesion. Cortex, 44, 1030–1036.
  • Bartolomeo, P., de Schotten, M. T., & Doricchi, F. (2007). Left unilateral neglect as a disconnection syndrome. Cerebralcortex, 17, 2479–2490.
  • Bauer, R. M.1993.AgnosiaK. M. Heilman & E. ValensteinEditorsClinical neuropsychology.3rd,New York, NY,Oxford University Press.25–78.
  • Bay, E. (1944). Zum problem der taktilen Agnosie. Journal of Neurology, 156, 64–96.
  • Berlucchi, G., Moro, V., Guerrini, C., & Aglioti, S. M. (2004). Dissociation between tactile and taste extinction on the tongue after right brain damage. Neuropsychologia, 42, 1007–1016.
  • Boggio, P. S., Nunes, A., Rigonatti, S. P., Nitsche, M. A., Pascual-Leone, A., & Fregni, F. (2007). Repeated sessions of non invasive brain DC stimulation is associated with motor function improvement in stroke patients. Restorative Neurology and Neuroscience, 25, 123–129.
  • Bohlhalter, S., Fretz, C., & Weder, B. (2002). Hierarchical versus parallel processing in tactile object recognition. Brain, 125, 2537–2548.
  • Bolognini, N., Convento, S., Banco, E., Mattioli, F., Tesio, L., & Vallar, G. (2014). Improving ideomotor limb apraxia by electrical stimulation of the left posterior parietal cortex. Brain. awu343. doi:10.1093/brain/awu343
  • Bolognini, N., Vallar, G., Casati, C., Latif, L. A., El-Nazer, R., Williams, J., … Fregni, F.. (2011). Neurophysiological and behavioral effects of tDCS combined with constraint-induced movement therapy in poststroke patients. Neurorehabilitation and Neural Repair, 25, 819–829.
  • Bonda, E., Petrides, M., & Evans, A. (1996). Neural systems for tactual memories. Journal of Neurophysiology, 75, 1730–1737.
  • Brunoni, A. R., Nitsche, M. A., Bolognini, N., Bikson, M., Wagner, T., Merabet, L., ... Fregni, F.. (2012). Clinical research with transcranial direct current stimulation (tDCS), challenges and future directions. Brain Stimulation, 5, 175–195.
  • Caffarra, P., Vezzadini, G., Dieci, F., Zonato, F., & Venneri, A. (2002a). Una versione abbreviata del test di Stroop, dati normativi nella popolazione italiana. Nuova Rivista Di Neurologia, 12, 111–115.
  • Caffarra, P., Vezzadini, G., Dieci, F., Zonato, F., & Venneri., A. (2002b). Rey-Osterrieth complex figure, normative values in an Italian population sample. Neurological Sciences, 22, 443–447.
  • Caffarra, P., Vezzadini, G., Zonato, F., Copelli, S., & Venneri, A. (2003). A normative study of a shorter version of Raven’s progressive matrices 1938. Neurological Sciences, 24, 336–339.
  • Campora, G. (1925). Astereognosis, its causes and mechanism. Brain, 48, 65–71.
  • Carlesimo, G. A., Caltagirone, C., Gainotti, G. U. I. D., Fadda, L., Gallassi, R., Lorusso, S., … Parnetti, L.. (1996). The mental deterioration battery, normative data diagnostic reliability and qualitative analyses of cognitive impairment. European Neurology, 36, 378–384.
  • Caselli, R. J. (1991). Rediscovering tactile agnosia. In Mayo Clinic Proceedings, 66 (2): 129–142. Elsevier.
  • Caselli, R. J. (1993). Ventrolateral and dorsomedial somatosensory association cortex damage produces distinct somesthetic syndromes in humans. Neurology, 43, 762.
  • Ciaramelli, E., Serino, A., Benassi, M., & Bolzani, R. (2006). Standardizzazione di tre test di memoria di lavoro. Giornale Italiano Di Psicologia, 33, 607–626.
  • Crutch, S., Warren, J. D., Harding, L., & Warrington, E. K. (2005). Computation of tactile object properties requires the integrity of praxic skills. Neuropsychologia, 43, 1792–1800.
  • De Renzi, E. (1982). Disorders of space exploration and cognition. New York, NY: J. Wiley.
  • De Renzi, E., Motti, F., & Nichelli, P. (1980). Imitating gestures, A quantitative approach to ideomotor apraxia. Archives of Neurology, 37, 6–10.
  • De Renzi, E., Pieczuro, A., & Vignolo, L. A. (1968). Ideational apraxia, a quantitative study. Neuropsychologia, 6, 41–52. doi:10.1016/0028-3932(68)90037-7
  • de Schotten, M. T., Dell’Acqua, F., Forkel, S. J., Simmons, A., Vergani, F., Murphy, D. G., & Catani, M. (2011). A lateralized brain network for visuospatial attention. Nature Neuroscience, 14, 1245–1246.
  • Delay, J. P. (1935). Les astereognosies, pathologie du toucher. Paris: Masson.
  • Dieckhöfer, A., Waberski, T. D., Nitsche, M., Paulus, W., Buchner, H., & Gobbelé, R. (2006). Transcranial direct current stimulation applied over the somatosensory cortex–Differential effect on low and high frequency SEPs. Clinical Neurophysiology, 117, 2221–2227.
  • Ellison, A., Lane, A. R., & Schenk, T. (2007). The interaction of brain regions during visual search processing as revealed by transcranial magnetic stimulation. Cerebral Cortex, 17, 2579–2584.
  • Endo, K., Makishita, H., Yanagisawa, N., & Sugishita, M. (1996). Modality specific naming and gesture disturbances, A case with optic aphasia bilateral tactile aphasia optic apraxia and tactile apraxia. Cortex, 32, 3–28.
  • Ettlinger, G., Warrington, E., & Zangwill, O. L. (1957). A further study of visual-spatial agnosia. Brain, 80, 335–361.
  • Fertonani, A., & Miniussi, C. (2017) Transcranial Electrical Stimulation: what we know and do not know about mechanisms. The Neuroscientist, 23(2), 109–123.
  • Flöel, A. (2014). tDCS-enhanced motor and cognitive function in neurological diseases. Neuroimage, 85, 934–947.
  • Flöel, A., & Cohen, L. G. (2010). Recovery of function in humans, cortical stimulation and pharmacological treatments after stroke. Neurobiology of Disease, 37, 243–251.
  • Folstein, M. F., Folstein, S. E., & McHugh, P. R. (1975). “Mini-mental state”, a practical method for grading the cognitive state of patients for the clinician. Journal of Psychiatric Research, 12, 189–198.
  • Fujimoto, S., Kon, N., Otaka, Y., Yamaguchi, T., Nakayama, T., Kondo, K., & Tanaka, S. 2016. Transcranial direct current stimulation over the primary & secondary somatosensory cortices transiently improves tactile spatial discrimination in stroke patients. Frontiers in Neuroscience, 10. doi:10.3389/fnins.2016.00128
  • Fujimoto, S., Yamaguchi, T., Otaka, Y., Kondo, K., & Tanaka, S. (2014). Dual-hemisphere transcranial direct current stimulation improves performance in a tactile spatial discrimination task. Clinical Neurophysiology, 125, 1669–1674.
  • Giovagnoli, A. R., Del Pesce, M., Mascheroni, S., Simoncelli, M., Laiacona, M., & Capitani, E. (1996). Trail making test, normative values from 287 normal adult controls. The Italian Journal of Neurological Sciences, 17, 305–309.
  • Herwig, U., Satrapi, P., & Schönfeldt-Lecuona, C. (2003). Using the international 10-20 EEG system for positioning of transcranial magnetic stimulation. Brain Topography, 16, 95–99.
  • Hesse, S., Waldner, A., Mehrholz, J., Tomelleri, C., Pohl, M., & Werner, C. (2011). Combined transcranial direct current stimulation and robot-assisted arm training in subacute stroke patients an exploratory randomized multicenter trial. Neurorehabilitation and Neural Repair, 25, 838–846.
  • Hömke, L., Amunts, K., Bönig, L., Fretz, C., Binkofski, F., Zilles, K., & Weder, B.. (2009). Analysis of lesions in patients with unilateral tactile agnosia using cytoarchitectonic probabilistic maps. Human Brain Mapping, 30, 1444–1456.
  • Jasper, H. H. (1958). The ten twenty electrode system of the international federation. Electroencephalography and Clinical Neurophysiology, 10, 371–375.
  • Kim, D. Y., Lim, J. Y., Kang, E. K., You, D. S., Oh, M. K., Oh, B-M., & Paik, N-J.. (2010). Effect of transcranial direct current stimulation on motor recovery in patients with subacute stroke. American Journal of Physical Medicine and Rehabilitation, 89, 879–886.
  • Làdavas, E., Giulietti, S., Avenanti, A., Bertini, C., Lorenzini, E., Quinquinio, C., & Serino, A.. (2015). A-tDCS on the ipsilesional parietal cortex boosts the effects of prism adaptation treatment in neglect. Restorative Neurology and Neuroscience, 33, 647–662.
  • Laiacona, M., Inzaghi, M. G., De Tanti, A., & Capitani, E. (2000). Wisconsin card sorting test, a new global score with Italian norms and its relationship with the Weigl sorting test. Neurological Sciences, 21, 279–291.
  • Liebetanz, D., Nitsche, M. A., Tergau, F., & Paulus, W. (2002). Pharmacological approach to the mechanisms of transcranial DC‐stimulation‐induced after‐effects of human motor cortex excitability. Brain, 125, 2238–2247.
  • Lissauer, H. (1890). Ein Fall von Seelenblindheitnebsteinem Beitragezur Theorie der selben. European Archives of Psychiatry and Clinical Neuroscience, 21, 222–270.
  • Luzzatti, C., Poeck, K., Weniger, D., Willmes, K., De Bleser, R., & Huber, W. (1996). AAT, Aachener aphasie test, manuale e dati normativi. Organizzazioni speciali, Firenze.
  • Matsunaga, K., Nitsche, M. A., Tsuji, S., & Rothwell, J. C. (2004). Effect of transcranial DC sensorimotor cortex stimulation on somatosensory evoked potentials in humans. Clinical Neurophysiology, 115, 456–460.
  • Miller, Z. A., Rosenberg, L., Santos-Santos, M. A., Stephens, M., Allen, I. E., Hubbard, H. I., & Miller, B. L. (2018). Prevalence of mathematical and visuospatial learning disabilities in patients with posterior cortical atrophy. JAMA Neurology, 75, 728–737.
  • Mondini, S., Mapelli, D., Vestri, A., & Bisiacchi, P. S. (2003). Esame neuropsicologico breve (pp. 160). Raffaello Cortina Editore, Milano.
  • Mori, S., Oishi, K., Jiang, H., Jiang, L., Li, X., Akhter, K., … Mazziotta, J.. (2008). Stereotaxic white matter atlas based on diffusion tensor imaging in an ICBM template. Neuroimage, 40, 570–582.
  • Moro, V., Pernigo, S., Tsakiris, M., Avesani, R., Edelstyn, N. M. J., Jenkinson, P. M., & Fotopoulou, A. (2016). Motor versus body awareness: Voxel-based lesion analysis in anosognosia for hemiplegia and somatoparaphrenia following right hemisphere stroke. Cortex, 83, 62–77.
  • Nakamura, J., Endo, K., Sumida, T., & Hasegawa, T. (1998). Bilateral tactile agnosia, a case report. Cortex, 34, 375–388.
  • Nitsche, M. A., Cohen, L. G., Wassermann, E. M., Priori, A., Lang, N., Antal, A., ... & Pascual-Leone. (2008). Transcranial direct current stimulation, state of the art 2008. Brain Stimulation, 1, 206–223.
  • Nitsche, M. A., Liebetanz, D., Lang, N., Antal, A., Tergau, F., & Paulus, W. (2003). Safety criteria for transcranial direct current stimulation (tDCS) in humans. Clinical Neurophysiology, 114, 2220–2222. replay 2222-3.
  • Nitsche, M. A., & Paulus, W. (2000). Excitability changes induced in the human motor cortex by weak transcranial direct current stimulation. The Journal of Physiology, 527, 633–639.
  • Platz, T. (1996). Tactile agnosia. Brain, 119, 1565–1574.
  • Ragert, P., Vandermeeren, Y., Camus, M., & Cohen, L. G. (2008). Improvement of spatial tactile acuity by transcranial direct current stimulation. Clinical Neurophysiology, 119, 805–811.
  • Reed, C. L., & Caselli, R. J. (1994). The nature of tactile agnosia, a case study. Neuropsychologia, 32, 527–539.
  • Reed, C. L., Caselli, R. J., & Farah, M. J. (1996). Tactile agnosia. Brain, 119, 875–888.
  • Reed, C. L., Shoham, S., & Halgren, E. (2004). Neural substrates of tactile object recognition, an fMRI study. Human Brain Mapping, 21, 236–246.
  • Reis, J., Schambra, H. M., Cohen, L. G., Buch, E. R., Fritsch, B., Zarahn, E., & Krakauer, J. W. (2009). Non invasive cortical stimulation enhances motor skill acquisition over multiple days through an effect on consolidation. Proceedings of the National Academy of Sciences, 106, 1590–1595.
  • Reynolds, C. R., & Bigler, E. D. ed. (1994). Test of memory and learning Examiner’s manual. Austin, TX: PRO_ED.
  • Robertson, I. H., Ward, T., Ridgeway, V., & Nimmo-Smith, I. (1994). The test of everyday attention, TEA. Bury St. Edmunds, UK: Thames Valley Test Company.
  • Rocha, S., Silva, E., Foerster, Á., Wiesiolek, C., Chagas, A. P., Machado, G., Baltar A., Monte-Sivla K. (2015). The impact of transcranial direct current stimulation (tDCS) combined with modified constraint-induced movement therapy (mCIMT) on upper limb function in chronic stroke, a double-blind randomized controlled trial. Disability and Rehabilitation, 1–8. doi:10.3109/09638288.2015.1055382
  • Rogalewski, A., Breitenstein, C., Nitsche, M. A., Paulus, W., & Knecht, S. (2005). Transcranial direct current stimulation disrupts tactile perception. European Journal of Neuroscience, 20, 313–316.
  • Rorden, C., & Brett, M. (2000). Stereotaxic display of brain lesions. Behavioural Neurology, 12, 191–200.
  • Saetti, M. C., De Renzi, E., & Comper, M. (1999). Tactile morphagnosia secondary to spatial deficits. Neuropsychologia, 37, 1087–1100.
  • Sartori, G., & Job, R. (1988). The oyster with four legs. A Neuropsychological study of the interaction of visual and semantic information. Cognitive Neuropsychology, 5, 105–113.
  • Semmes, J. (1965). A non-tactual factor in astereognosis. Neuropsychologia, 3, 295–315.
  • Shallice, T. (1982). Specific impairments of planning. Philosophical Transactions of the Royal Society of London B, Biological Sciences, 298, 199–209.
  • Siebner, H. R., Lang, N., Rizzo, V., Nitsche, M. A., Paulus, W., Lemon, R. N., & Rothwell, J. C. (2004). Preconditioning of low-frequency repetitive transcranial magnetic stimulation with transcranial direct current stimulation, evidence for homeostatic plasticity in the human motor cortex. The Journal of Neuroscience, 24, 3379–3385.
  • Smania, N., Montagnana, B., Faccioli, S., Fiaschi, A., & Aglioti, S. M. (2003). Rehabilitation of somatic sensation and related deficit of motor control in patients with pure sensory stroke. Archives of Physical Medicine and Rehabilitation, 84, 1692–1702.
  • Spinnler, H., & Tognoni, G. (1987). Standardizzazione e taratura italiana di test neuropsicologici. Milano: Masson Italia Periodici.
  • Stagg, C. J., & Nitsche, M. A. (2011). Physiological basis of transcranial direct current stimulation. The Neuroscientist, 17, 37–53.
  • Talairach, J., & Tournoux, P. (1998). Co-planar stereotaxic atlas of the human brain. New York, NY: Thieme Medical Publishers.
  • Terney, D., Bergmann, I., Poreisz, C., Chaieb, L., Boros, K., Nitsche, M. A., … Antal, A.. (2008). Pergolide increases the efficacy of cathodal direct current stimulation to reduce the amplitude of laser-evoked potentials in humans. Journal of Pain and Symptom Management,36, 79–91. doi:10.1016/j.jpainsymman.2007.08.014.
  • Tzourio-Mazoyer, N., Landeau, B., Papathanassiou, D., Crivello, F., Etard, O., Delcroix, N., … Joliot, M.. (2002). Automated anatomical labeling of activations in SPM using a macroscopic anatomical parcellation of the MNI MRI single-subject brain. Neuroimage, 15, 273–289.
  • Valenza, N., Ptak, R., Zimine, I., Badan, M., Lazeyras, F., & Schnider, A. (2001). Dissociated active and passive tactile shape recognition, a case study of pure tactile apraxia. Brain, 124, 2287–2298.
  • Veronelli, L., Ginex, V., Dinacci, D., Cappa, S. F., & Corbo, M. (2014). Pure associative tactile agnosia for the left hand, Clinical and anatomo-functional correlations. Cortex, 58, 206–216.
  • Vines, B. W., Cerruti, C., & Schlaug, G. (2008). Dual-hemisphere tDCS facilitates greater improvements for healthy subjects’ non-dominant hand compared to uni-hemisphere stimulation. BMC Neuroscience, 9, 103.
  • Wilson, B. A., Alderman, N., Burgess, P. W., Emslie, H., & Evans, J. (1997). Behavioural assessment of the dysexecutive syndrome. Bury St Edmunds, UK: Thames Valley Test Company.
  • Wilson, B. A., Cockburn, J., & Halligan, P. (1987). Behavioral inattention test (BIT). Titchfield: Thames Valley Test Company.
  • Woods, A. J., Antal, A., Bikson, M., Boggio, P. S., Brunoni, A. R., Celnik, P.,  ... & Knotkova, H. 2015. A technical guide to tDCS and related non-invasive brain stimulation tools. Clinical Neurophysiology. doi:10.1016/j.clinph.2015.11.012

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.