Visual proprioception in the timing of movements: Evidence from deafferentation

Stenneken P, Prinz W, Bosbach S, Aschersleben G (2006)
NeuroReport 17(5): 545-548.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
Es wurden keine Dateien hochgeladen. Nur Publikationsnachweis!
Autor*in
Stenneken, PriscaUniBi; Prinz, W.; Bosbach, S.; Aschersleben, G.
Erscheinungsjahr
2006
Zeitschriftentitel
NeuroReport
Band
17
Ausgabe
5
Seite(n)
545-548
ISSN
0959-4965
Page URI
https://pub.uni-bielefeld.de/record/1990055

Zitieren

Stenneken P, Prinz W, Bosbach S, Aschersleben G. Visual proprioception in the timing of movements: Evidence from deafferentation. NeuroReport. 2006;17(5):545-548.
Stenneken, P., Prinz, W., Bosbach, S., & Aschersleben, G. (2006). Visual proprioception in the timing of movements: Evidence from deafferentation. NeuroReport, 17(5), 545-548. https://doi.org/10.1097/01.wnr.0000209013.01470.f8
Stenneken, Prisca, Prinz, W., Bosbach, S., and Aschersleben, G. 2006. “Visual proprioception in the timing of movements: Evidence from deafferentation”. NeuroReport 17 (5): 545-548.
Stenneken, P., Prinz, W., Bosbach, S., and Aschersleben, G. (2006). Visual proprioception in the timing of movements: Evidence from deafferentation. NeuroReport 17, 545-548.
Stenneken, P., et al., 2006. Visual proprioception in the timing of movements: Evidence from deafferentation. NeuroReport, 17(5), p 545-548.
P. Stenneken, et al., “Visual proprioception in the timing of movements: Evidence from deafferentation”, NeuroReport, vol. 17, 2006, pp. 545-548.
Stenneken, P., Prinz, W., Bosbach, S., Aschersleben, G.: Visual proprioception in the timing of movements: Evidence from deafferentation. NeuroReport. 17, 545-548 (2006).
Stenneken, Prisca, Prinz, W., Bosbach, S., and Aschersleben, G. “Visual proprioception in the timing of movements: Evidence from deafferentation”. NeuroReport 17.5 (2006): 545-548.

11 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

How far do stabilometric and clinical parameters correlate in peripheral neuropathies?
Gomes Paiva AF, Thoumie P, Missaoui B., Gait Posture 52(), 2017
PMID: 27846434
Assessing the perception of trunk movements in military personnel with chronic non-specific low back pain using a virtual mirror.
Roosink M, McFadyen BJ, Hébert LJ, Jackson PL, Bouyer LJ, Mercier C., PLoS One 10(3), 2015
PMID: 25799009
Balance exercise in patients with chronic sensory ataxic neuropathy: a pilot study.
Riva N, Faccendini S, Lopez ID, Fratelli A, Velardo D, Quattrini A, Gatti R, Comi G, Comola M, Fazio R., J Peripher Nerv Syst 19(2), 2014
PMID: 24844760
Differential contributions of vision, touch and muscle proprioception to the coding of hand movements.
Blanchard C, Roll R, Roll JP, Kavounoudias A., PLoS One 8(4), 2013
PMID: 23626826
A pilot study of sensory feedback by transcutaneous electrical nerve stimulation to improve manipulation deficit caused by severe sensory loss after stroke.
Kita K, Otaka Y, Takeda K, Sakata S, Ushiba J, Kondo K, Liu M, Osu R., J Neuroeng Rehabil 10(), 2013
PMID: 23764012
Auditory and visual information do not affect self-paced bilateral finger tapping in children with DCD.
Roche R, Wilms-Floet AM, Clark JE, Whitall J., Hum Mov Sci 30(3), 2011
PMID: 21339013
Dominance of vision over proprioception on motor programming: evidence from ERP.
Touzalin-Chretien P, Ehrler S, Dufour A., Cereb Cortex 20(8), 2010
PMID: 20026485
Visual feedback of a hand prepared to move modulates cortical motor activity.
Touzalin-Chretien P, Ehrler S, Dufour A., Neuroreport 20(15), 2009
PMID: 19738499
The effect of sensory feedback on the timing of movements: evidence from deafferented patients.
Stenneken P, Prinz W, Cole J, Paillard J, Aschersleben G., Brain Res 1084(1), 2006
PMID: 16564509

15 References

Daten bereitgestellt von Europe PubMed Central.


Gandevia, Behav Brain Sci 15(), 1992

Gibson, 1979

Gallagher, J Mind Behav 16(), 1995

Lee, J Hum Movement Stud 1(), 1975

Redding, 1992
Simulating unilateral neglect in normals using prism adaptation: implications for theory.
Michel C, Pisella L, Halligan PW, Luaute J, Rode G, Boisson D, Rossetti Y., Neuropsychologia 41(1), 2003
PMID: 12427563

Aschersleben, Cognitive Process 3(), 2002
The role of sensory information in the production of periodic finger-tapping sequences.
Billon M, Semjen A, Cole J, Gauthier G., Exp Brain Res 110(1), 1996
PMID: 8817263
Self-induced versus reactive triggering of synchronous movements in a deafferented patient and control subjects.
Stenneken P, Aschersleben G, Cole J, Prinz W., Psychol Res 66(1), 2002
PMID: 11963277

Aschersleben, pp (), 15
Motor prediction.
Wolpert DM, Flanagan JR., Curr. Biol. 11(18), 2001
PMID: 11566114
Role of sensory information in updating internal models of the effector during arm tracking.
Vercher JL, Sares F, Blouin J, Bourdin C, Gauthier G., Prog. Brain Res. 142(), 2003
PMID: 12693263
Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Web of Science

Dieser Datensatz im Web of Science®
Quellen

PMID: 16543823
PubMed | Europe PMC

Suchen in

Google Scholar