[Augurelle A. S., Smith A. M., Lejeune T., Thonnard J. L. (2003) Importance of cutaneous feedback in maintaining a secure grip during manipulation of hand-held objects. J Neurophysiol 89: 665-67110.1152/jn.00249.2002]Search in Google Scholar
[Basmajian J. V., Blumenstein R. (1980) Electrode placement in EMG biofeedback. Williams & Wilkins, Baltimore]Search in Google Scholar
[Bell-Krotoski J. (1991) Advances in sensibility evaluation. Hand Clin 7: 527-54610.1016/S0749-0712(21)01104-5]Search in Google Scholar
[Blakemore SJ, Goodbody SJ, Wolpert DM (1998) Predicting the consequences of our own actions: the role of sensorimotor context estimation. J Neurosci 18: 7511-751810.1523/JNEUROSCI.18-18-07511.1998]Search in Google Scholar
[Bock O., Vercher J. L., Gauthier G. (2005) Wrist vibration affects the production of finely graded forces. Aviat Space Environ Med 76: 435-440]Search in Google Scholar
[Bora F. W, Jr., Osterman A. L. (1982) Compression neuropathy. Clin Orthop Relat Res: 20-3210.1097/00003086-198203000-00005]Search in Google Scholar
[Casini L., Romaiguere P, Ducorps A, Schwartz D, Anton JL, Roll JP (2006) Cortical correlates of illusory hand movement perception in humans: a MEG study. Brain Res 1121: 200-20610.1016/j.brainres.2006.08.12417020751]Search in Google Scholar
[Courtine G., De Nunzio A. M., Schmid M., Beretta M. V., Schieppati M. (2007) Stance- and locomotion-dependent processing of vibration-induced proprioceptive inflow from multiple muscles in humans. J Neurophysiol 97: 772-77910.1152/jn.00764.200617065250]Search in Google Scholar
[Flanagan J. R., Wing A. M. (1995) The stability of precision grip forces during cyclic arm movements with a hand-held load. Exp Brain Res 105: 455-464]Search in Google Scholar
[Flanagan J. R., Wing A. M. (1997) The role of internal models in motion planning and control: evidence from grip force adjustments during movements of hand-held loads. J Neurosci 17: 1519-152810.1523/JNEUROSCI.17-04-01519.1997]Search in Google Scholar
[Gilles M. A., Wing A. M. (2003) Age-related changes in grip force and dynamics of hand movement. J Mot Behav 35: 79-8510.1080/0022289030960212312724101]Search in Google Scholar
[Gordon A. M., Forssberg H., Johansson R. S., Westling G. (1991) Integration of sensory information during the programming of precision grip: comments on the contributions of size cues. Exp Brain Res 85: 226-22910.1007/BF002300041884761]Search in Google Scholar
[Hager-Ross C., Johansson R. S. (1996) Nondigital afferent input in reactive control of fingertip forces during precision grip. Exp Brain Res 110: 131-14110.1007/BF002413828817264]Search in Google Scholar
[Holewski J. J., Stess R. M., Graf P. M., Grunfeld C. (1988) Aesthesiometry: quantification of cutaneous pressure sensation in diabetic peripheral neuropathy. J Rehabil Res Dev 25: 1-10]Search in Google Scholar
[Jeannerod M. (1986) The formation of finger grip during prehension. A cortically mediated visuomotor pattern. Behav Brain Res 19: 99-11610.1016/0166-4328(86)90008-2]Search in Google Scholar
[Jenmalm P., Johansson R. S. (1997) Visual and somatosensory information about object shape control manipulative fingertip forces. J Neurosci 17: 4486-449910.1523/JNEUROSCI.17-11-04486.1997]Search in Google Scholar
[Johansson R. S., Cole K. J. (1992) Sensory-motor coordination during grasping and manipulative actions. Curr Opin Neurobiol 2: 815-82310.1016/0959-4388(92)90139-C]Search in Google Scholar
[Johansson R. S., Cole K. J. (1994) Grasp stability during manipulative actions. Can J Physiol Pharmacol 72: 511-52410.1139/y94-075]Search in Google Scholar
[Johansson R. S., Westling G. (1987) Significance of cutaneous input for precise hand movements. Electroencephalogr Clin Neurophysiol Suppl 39: 53-57]Search in Google Scholar
[Johansson R. S, Westling G. (1988) Coordinated isometric muscle commands adequately and erroneously programmed for the weight during lifting task with precision grip. Exp Brain Res 71: 59-7110.1007/BF00247522]Search in Google Scholar
[Knox J., Cordo P., Skoss R., Durrant S., Hodges P. (2006) Illusory changes in head position induced by neck muscle vibration can alter the perception of elbow position. Behav Neurosci 120: 1211-121710.1037/0735-7044.120.6.1211]Search in Google Scholar
[Lackner J. R. (1988) Some proprioceptive influences on the perceptual representation of body shape and orientation. Brain 111 (Pt 2): 281-29710.1093/brain/111.2.281]Search in Google Scholar
[Li Z. M., Zatsiorsky V. M., Latash M. L. (2000) Contribution of the extrinsic and intrinsic hand muscles to the moments in finger joints. Clin Biomech (Bristol, Avon) 15: 203-21110.1016/S0268-0033(99)00058-3]Search in Google Scholar
[Long C., 2nd (1968) Intrinsic-extrinsic muscle control of the fingers. Electromyographic studies. J Bone Joint Surg Am 50: 973-98410.2106/00004623-196850050-00009]Search in Google Scholar
[Macefield V. G., Johansson RS (1996) Control of grip force during restraint of an object held between finger and thumb: responses of muscle and joint afferents from the digits. Exp Brain Res 108: 172-184]Search in Google Scholar
[Malchaire J., Rodriguez Diaz L. S., Piette A., Goncalves Amaral F., de Schaetzen D. (1998) Neurological and functional effects of short-term exposure to hand-arm vibration. Int Arch Occup Environ Health 71: 270-27610.1007/s0042000502809638484]Search in Google Scholar
[Miall RC (1996) Task-Dependent Changes in Visual Feedback Control: A Frequency Analysis of Human Manual Tracking. J Mot Behav 28: 125-13510.1080/00222895.1996.9941739]Search in Google Scholar
[Naito E., Ehrsson H. H. (2006) Somatic sensation of hand-object interactive movement is associated with activity in the left inferior parietal cortex. J Neurosci 26: 3783-379010.1523/JNEUROSCI.4835-05.2006]Search in Google Scholar
[Naito E., Kochiyama T., Kitada R., Nakamura S., Matsumura M., Yonekura Y., Sadato N. (2002) Internally simulated movement sensations during motor imagery activate cortical motor areas and the cerebellum. J Neurosci 22: 3683-369110.1523/JNEUROSCI.22-09-03683.2002]Search in Google Scholar
[Naito E., Nakashima T., Kito T., Aramaki Y., Okada T., Sadato N. (2007) Human limb-specific and non-limb-specific brain representations during kinesthetic illusory movements of the upper and lower extremities. Eur J Neurosci 25: 3476-348710.1111/j.1460-9568.2007.05587.x]Search in Google Scholar
[Nowak D. A., Glasauer S., Hermsdorfer J. (2003) Grip force efficiency in longterm deprivation of somatosensory feedback. Neuroreport 14: 1803-180710.1097/00001756-200310060-00009]Search in Google Scholar
[Nowak D. A., Glasauer S., Hermsdorfer J. (2004a) How predictive is grip force control in the complete absence of somatosensory feedback? Brain 127: 182-19210.1093/brain/awh016]Search in Google Scholar
[Nowak D. A., Hermsdorfer J. (2003a) Digit cooling influences grasp efficiency during manipulative tasks. Eur J Appl Physiol 89: 127-13310.1007/s00421-002-0759-1]Search in Google Scholar
[Nowak D. A., Hermsdorfer J. (2003b) Selective deficits of grip force control during object manipulation in patients with reduced sensibility of the grasping digits. Neurosci Res 47: 65-7210.1016/S0168-0102(03)00182-2]Search in Google Scholar
[Nowak D. A., Hermsdorfer J. (2004) [Analysis of grip force during object manipulation. Method for the objective measurement of physiological normal and impaired hand function]. Nervenarzt 75: 725-733]Search in Google Scholar
[Nowak D. A., Hermsdorfer J., Glasauer S., Philipp J., Meyer L., Mai N. (2001) The effects of digital anaesthesia on predictive grip force adjustments during vertical movements of a grasped object. Eur J Neurosci 14: 756-76210.1046/j.0953-816x.2001.01697.x11556900]Search in Google Scholar
[Nowak D. A., Rosenkranz K., Hermsdorfer J., Rothwell J. (2004b) Memory for fingertip forces: passive hand muscle vibration interferes with predictive grip force scaling. Exp Brain Res 156: 444-45010.1007/s00221-003-1801-114722702]Search in Google Scholar
[Prochazka A. (1981) Muscle spindle function during normal movement. Int Rev Physiol 25: 47-90]Search in Google Scholar
[Quaney B. M., Rotella D. L., Peterson C., Cole K. J. (2003) Sensorimotor memory for fingertip forces: evidence for a task-independent motor memory. J Neurosci 23: 1981-198610.1523/JNEUROSCI.23-05-01981.2003]Search in Google Scholar
[Westling G., Johansson R. S. (1984) Factors influencing the force control during precision grip. Exp Brain Res 53: 277-28410.1007/BF00238156]Search in Google Scholar
[Wolpert D. M., Miall R. C. (1996) Forward Models for Physiological Motor Control. Neural Netw 9: 1265-127910.1016/S0893-6080(96)00035-4]Search in Google Scholar