Aimonetti JM, Hospod V, Roll JP, Ribot-Ciscar E (2007) Cutaneous afferents provide a neuronal population vector that encodes the orientation of human ankle movements. J Physiol 580:649–658
Article
PubMed Central
CAS
PubMed
Google Scholar
Aimonetti JM, Roll JP, Hospod V, Ribot-Ciscar E (2012) Ankle joint movements are encoded by both cutaneous and muscle afferents in humans. Exp Brain Res 221:167–176. doi:10.1007/s00221-012-3160-2
Article
PubMed
Google Scholar
Bernstein NA (1967) The co-ordination and regulation of movements. Pergamon Press, Oxford
Google Scholar
Blanchard C, Roll R, Roll JP, Kavounoudias A (2011) Combined contribution of tactile and proprioceptive feedback to hand movement perception. Brain Res 1382:219–229. doi:10.1016/j.brainres.2011.01.066
Article
CAS
PubMed
Google Scholar
Blanchard C, Roll R, Roll JP, Kavounoudias A (2013) Differential contributions of vision, touch and muscle proprioception to the coding of hand movements. PLoS One 8:e62475. doi:10.1371/journal.pone.0062475
Article
PubMed Central
CAS
PubMed
Google Scholar
Collins DF, Refshauge KM, Todd G, Gandevia SC (2005) Cutaneous receptors contribute to kinesthesia at the index finger, elbow, and knee. J Neurophysiol 94:1699–1706. doi:10.1152/jn.00191.2005
Article
CAS
PubMed
Google Scholar
Edin B (2001) Cutaneous afferents provide information about knee joint movements in humans. J Physiol 531:289–297
Article
PubMed Central
CAS
PubMed
Google Scholar
Forssberg H, Nashner LM (1982) Ontogenetic development of postural control in man: adaptation to altered support and visual conditions during stance. J Neurosci 2:545–552
CAS
PubMed
Google Scholar
Gandevia SC, Hall LA, McCloskey DI, Potter EK (1983) Proprioceptive sensation at the terminal joint of the middle finger. J Physiol 335:507–517
Article
PubMed Central
CAS
PubMed
Google Scholar
Gandevia SC, McCloskey DI, Burke D (1992) Kinaesthetic signals and muscle contraction. Trends Neurosci 15:62–65
Article
CAS
PubMed
Google Scholar
Gao JH, Parsons LM, Bower JM, Xiong J, Li J, Fox PT (1996) Cerebellum implicated in sensory acquisition and discrimination rather than motor control. Science 272:545–547
Article
CAS
PubMed
Google Scholar
Goodwin GM, McCloskey DI, Matthews PB (1972) The contribution of muscle afferents to kinaesthesia shown by vibration induced illusions of movement and by the effects of paralysing joint afferents. Brain 95:705–748
Article
CAS
PubMed
Google Scholar
Ivanenko YP, Talis VL, Kazennikov OV (1999) Support stability influences postural responses to muscle vibration in humans. Eur J Neurosci 11:647–654
Article
CAS
PubMed
Google Scholar
Jagacinski RJ, Flach JM (2003) Control theory for humans: quantitative approaches to modeling performance. Lawrence Erlbaum Associates, Mahwah
Google Scholar
Katayama M, Kawato M (1993) Virtual trajectory and stiffness ellipse during multijoint arm movement predicted by neural inverse models. Biol Cybern 69:353–362
Article
CAS
PubMed
Google Scholar
Kavounoudias A, Gilhodes JC, Roll R, Roll JP (1999a) From balance regulation to body orientation: two goals for muscle proprioceptive information processing? Exp Brain Res 124:80–88
Article
CAS
PubMed
Google Scholar
Kavounoudias A, Roll R, Roll JP (1999b) Specific whole-body shifts induced by frequency-modulated vibrations of human plantar soles. Neurosci Lett 266:181–184
Article
CAS
PubMed
Google Scholar
Kavounoudias A, Roll R, Roll JP (2001) Foot sole and ankle muscle inputs contribute jointly to human erect posture regulation. J Physiol 532:869–878
Article
PubMed Central
CAS
PubMed
Google Scholar
Lackner JR (1988) Some proprioceptive influences on the perceptual representation of body shape and orientation. Brain 111(Pt 2):281–297
Article
PubMed
Google Scholar
Lackner JR, Levine MS (1979) Changes in apparent body orientation and sensory localization induced by vibration of postural muscles: vibratory myesthetic illusions. Aviat Space Environ Med 50:346–354
CAS
PubMed
Google Scholar
Lackner JR, Rabin E, DiZio P (2000) Fingertip contact suppresses the destabilizing influence of leg muscle vibration. J Neurophysiol 84:2217–2224
CAS
PubMed
Google Scholar
Lee BC, Martin BJ, Sienko KH (2012) Directional postural responses induced by vibrotactile stimulations applied to the torso. Exp Brain Res 222:471–482. doi:10.1007/s00221-012-3233-2
Article
PubMed
Google Scholar
Lee BC, Martin BJ, Ho A, Sienko KH (2013a) Postural reorganization induced by torso cutaneous covibration. J Neurosci 33:7870–7876. doi:10.1523/JNEUROSCI.4715-12.2013
Article
CAS
PubMed
Google Scholar
Lee BC, Martin BJ, Sienko KH (2013b) The effects of actuator selection on non-volitional postural responses to torso-based vibrotactile stimulation. J Neuroeng Rehabil 10:21. doi:10.1186/1743-0003-10-21
Article
PubMed Central
PubMed
Google Scholar
Martin BJ, Gauthier GM, Roll JP, Hugon M, Harlay F (1980) Effects of whole-body vibrations on standing posture in man. Aviat Space Environ Med 51:778–787
CAS
PubMed
Google Scholar
Plato (1966) Phaedo. Harvard University Press, Cambridge
Google Scholar
Proske U, Gandevia SC (2012) The proprioceptive senses: their roles in signaling body shape, body position and movement, and muscle force. Physiol Rev 92:1651–1697. doi:10.1152/physrev.00048.2011
Article
CAS
PubMed
Google Scholar
Roll JP, Roll R (1988) From eye to foot: a proprioceptive chain involved in postural control. Elsevier, Amsterdam
Google Scholar
Roll JP, Vedel JP (1982) Kinaesthetic role of muscle afferents in man, studied by tendon vibration and microneurography. Exp Brain Res 47:177–190
Article
CAS
PubMed
Google Scholar
Roll JP, Vedel JP, Ribot E (1989a) Alteration of proprioceptive messages induced by tendon vibration in man: a microneurographic study. Exp Brain Res 76:213–222
Article
CAS
PubMed
Google Scholar
Roll JP, Vedel JP, Roll R (1989b) Eye, head and skeletal muscle spindle feedback in the elaboration of body references. Prog Brain Res 80:113–123 (discussion 157–160)
Article
CAS
PubMed
Google Scholar
Roll R, Kavounoudias A, Roll JP (2002) Cutaneous afferents from human plantar sole contribute to body posture awareness. Neuroreport 13:1957–1961
Article
PubMed
Google Scholar
Roll JP, Albert F, Thyrion C, Ribot-Ciscar E, Bergenheim M, Mattei B (2009) Inducing any virtual two-dimensional movement in humans by applying muscle tendon vibration. J Neurophysiol 101:816–823
Article
PubMed
Google Scholar
Schweighofer N, Arbib MA, Kawato M (1998) Role of the cerebellum in reaching movements in humans. I. Distributed inverse dynamics control. Eur J Neurosci 10:86–94
Article
CAS
PubMed
Google Scholar
Sienko KH, Vichare VV, Balkwill MD, Wall C 3rd (2010) Assessment of vibrotactile feedback on postural stability during pseudorandom multidirectional platform motion. IEEE Trans Biomed Eng 57:944–952. doi:10.1109/TBME.2009.2036833
Article
PubMed
Google Scholar
Sienko KH, Balkwill MD, Wall C (2012) Biofeedback improves postural control recovery from multi-axis discrete perturbations. J Neuroeng Rehabil 9. doi:10.1186/1743-0003-9-53
Slijper H, Latash ML (2004) The effects of muscle vibration on anticipatory postural adjustments. Brain Res 1015:57–72
Article
CAS
PubMed
Google Scholar
Verrel J, Cuisinier R, Lindenberger U, Vuillerme N (2011) Local and global effects of neck muscle vibration during stabilization of upright standing. Exp Brain Res 210:313–324. doi:10.1007/s00221-011-2636-9
Article
PubMed
Google Scholar
Wall PD, Noordenbos W (1977) Sensory functions which remain in man after complete transection of dorsal columns. Brain 100:641–653
Article
CAS
PubMed
Google Scholar
Weerakkody NS, Mahns DA, Taylor JL, Gandevia SC (2007) Impairment of human proprioception by high-frequency cutaneous vibration. J Physiol 581:971–980. doi:10.1113/jphysiol.2006.126854
Article
PubMed Central
CAS
PubMed
Google Scholar
Winter DA, Patla AE, Prince F, Ishac M, Gielo-Perczak K (1998) Stiffness control of balance in quiet standing. J Neurophysiol 80(3):1211–1221
CAS
PubMed
Google Scholar