1)Holden M, et al:Stabilization of posture by precision contact of the index finger. J Vestib Res 1994;4:285-301
2)Baldan AM, et al:Effect of light touch on postural sway in individuals with balance problems:a systematic review. Gait Posture 2014;40:1-10
3)Johannsen L, et al:Effects of maintaining touch contact on predictive and reactive balance. J Neurophysiol 2007;97:2686-2695
4)Dickstein R, et al:Light touch and center of mass stability during treadmill locomotion. Gait Posture 2004;20:41-47
5)Forero J, et al:The contribution of light touch sensory cues to corrective reactions during treadmill locomotion. Exp Brain Res 2013;226:575-584
6)Shima K, et al:A wearable light-touch contact device for human balance support. Sci Rep 2021;11:7324. doi:10.1038/s41598-021-85687-4
7)Ishigaki T, et al:EEG frequency analysis of cortical brain activities induced by effect of light touch. Exp Brain Res 2016;234:1429-1440
8)Ishigaki T,et al:Cathodal transcranial direct current stimulation of the posterior parietal cortex reduces steady-state postural stability during the effect of light touch. Neuroreport 2016;27:1050-1055
9)Bolton DA, et al:The impact of light fingertip touch on haptic cortical processing during a standing balance task. Exp Brain Res 2011;212:279-291
10)Bolton DA, et al:Transient inhibition of the dorsolateral prefrontal cortex disrupts somatosensory modulation during standing balance as measured by electroencephalography. Neuroreport 2012;23:369-372
11)Johannsen L, et al:Disruption of contralateral inferior parietal cortex by 1Hz repetitive TMS modulates body sway following unpredictable removal of sway-related fingertip feedback. Neurosci Lett 2015;586:13-18
12)Kaulmann D, et al:Disruption of right posterior parietal cortex by continuous Theta Burst Stimulation alters the control of body balance in quiet stance. Eur J Neurosci 2017;45:671-678
13)Kaulmann D, et al:Stabilization of body balance with light touch following a mechanical perturbation:adaption of sway and disruption of right posterior parietal cortex by cTBS. PLoS One 2020;15:e0233988. doi:10.1371/journal.pone.0233988
14)Magalhães FH, et al:Vibratory noise to the fingertip enhances balance improvement associated with light touch. Exp Brain Res 2011;209:139-151
15)Kimura T, et al:Unperceivable noise to active light touch effects on fast postural sway. Neurosci Lett 2012;506:100-103
16)Riley MA, et al:Postural stabilization for the control of touching. Hum Mov Sci 1999;18:795-817
17)McNevin NH, et al:Attentional focus on supra-postural tasks affects postural control. Hum Mov Sci 2002;21:187-202
18)Jeka JJ, et al:Coupling of fingertip somatosensory information to head and body sway. Exp Brain Res 1997;113:475-483
19)Wing AM, et al:Light touch for balance:influence of a time-varying external driving signal. Philos Trans R Soc Lond B Biol Sci 2011;366:3133-3141
20)Johannsen L, et al:Interpersonal light touch assists balance in the elderly. J Mot Behav 2009;41:397-399
21)Johannsen L, et al:Contrasting effects of finger and shoulder interpersonal light touch on standing balance. J Neurophysiol 2012;107:216-225
22)Steinl SM, et al:Interpersonal interactions for haptic guidance during maximum forward reaching. Gait Posture 2017;53:17-24
23)Johannsen L, et al:Deliberately light interpersonal touch as an aid to balance control in neurologic conditions. Rehabil Nurs 2017;42:131-138
24)Schulleri KH, et al:Deliberately light interpersonal contact affects the control of head stability during walking in children and adolescents with cerebral palsy. Arch Phys Med Rehabil 2017;98:1828-1835
25)Kouzaki M, et al:Reduced postural sway during quiet standing by light touch is due to finger tactile feedback but not mechanical support. Exp Brain Res 2008;188:153-158
26)Vuillerme N, et al:Attentional demands associated with the use of a light fingertip touch for postural control during quiet standing. Exp Brain Res 2006;169:232-236
27)Cunha BP, et al:Individuals with post-stroke hemiparesis are able to use additional sensory information to reduce postural sway. Neurosci Lett 2012;513:6-11
28)Boonsinsukh R, et al:Light touch cue through a cane improves pelvic stability during walking in stroke. Arch Phys Med Rehabil 2009;90:919-926
29)Boonsinsukh R, et al:Clinical identification for the use of light touch cues with a cane in gait rehabilitation poststroke. Top Stroke Rehabil 2011;18:633-642
30)Ishigaki T, et al:Association between unintentional interpersonal postural coordination produced by interpersonal light touch and the intensity of social relationship. Front Psychol 2017;8:1993. doi:10.3389/fpsyg.2017.01993
31)Ishigaki T, et al:Characteristics of postural control during fixed light-touch and interpersonal light-touch contact and the involvement of interpersonal postural coordination. Hum Mov Sci 2022;81:102909. doi:10.1016/j.humov.2021.102909
32)Carpenter MG, et al:Surface height effects on postural control:a hypothesis for a stiffness strategy for stance. J Vestib Res 1999;9:277-286
33)Winter DA, et al:Stiffness control of balance in quiet standing. J Neurophysiol 1998;80:1211-1221
34)Mauerberg-deCastro E:Developing an “anchor” system to enhance postural control. Motor Control 2004;8:339-358
35)Freitas Mde B, et al:Intermittent use of an “anchor system” improves postural control in healthy older adults. Gait Posture 2013;38:433-437