Cumulative additional information does not improve the neuromuscular control during postural responses to perturbations in postural instability/gait disorders subtype of Parkinson's disease

Experimental Gerontology - Tập 166 - Trang 111892 - 2022
Victor Spiandor Beretta1, Paulo Cezar Rocha Santos1,2, Diego Orcioli-Silva1,3, Diego Alejandro Rojas Jaimes1,4, Marcelo Pinto Pereira1, Fabio Augusto Barbieri5, Lilian Teresa Bucken Gobbi1
1São Paulo State University (Unesp), Institute of Biosciences, Graduate Program in Movement Sciences, Posture and Gait Studies Laboratory (LEPLO), Rio Claro, Brazil
2Department of Computer Science and Applied Mathematics, Weizmann Institute of Science, Israel
3University of Campinas (UNICAMP), School of Applied Sciences (FCA), Laboratory of Applied Sport Physiology (LAFAE), Limeira, Brazil
4University of San Buenaventura Medellin, Graduate Program in Physical Education and Sports, Medellín, Colombia
5São Paulo State University (UNESP), School of Sciences, Graduate Program in Movement Sciences, Department of Physical Education, Human Movement Research Laboratory (MOVI-LAB), Bauru, Brazil

Tài liệu tham khảo

Abbruzzese, 2003, Sensorimotor integration in movement disorders, Mov. Disord., 18, 231, 10.1002/mds.10327 Abbruzzese, 2016, Rehabilitation for Parkinson’s disease: current outlook and future challenges, Parkinsonism Relat. Disord., 22, S60, 10.1016/j.parkreldis.2015.09.005 Beretta, 2019, Postural control after unexpected external perturbation: effects of Parkinson's disease subtype, Hum. Mov. Sci., 64, 12, 10.1016/j.humov.2019.01.001 Beretta, 2020, Effect of different intensities of transcranial direct current stimulation on postural response to external perturbation in patients with Parkinson's disease, Neurorehabil. Neural Repair, 34, 1009, 10.1177/1545968320962513 Beretta, 2021, Does the impaired postural control in Parkinson's disease affect the habituation to non-sequential external perturbation trials?, Clin. Biomech. (Bristol, Avon), 85, 10.1016/j.clinbiomech.2021.105363 Bloem, 1998, Habituation of lower leg stretch responses in Parkinson's disease, Electroencephalogr. Clin. Neurophysiol., 109, 73, 10.1016/S0924-980X(97)00073-8 Boonstra, 2008, Gait disorders and balance disturbances in Parkinson's disease: clinical update and pathophysiology, Curr. Opin. Neurol., 24, 461, 10.1097/WCO.0b013e328305bdaf Brucki, 2003, Suggestions for utilization of the mini-mental state examination in Brazil, Arq. Neuropsiquiatr., 61, 777, 10.1590/S0004-282X2003000500014 Carpenter, 2011, Postural control in Parkinson patients: a proprioceptive problem?, Exp. Neurol., 227, 26, 10.1016/j.expneurol.2010.11.007 Carpenter, 2004, Postural abnormalities to multidirectional stance perturbations in Parkinson's disease, J. Neurol. Neurosurg. Psychiatry, 75, 1245, 10.1136/jnnp.2003.021147 Chong, 1999, Postural set for balance control is normal in Alzheimer's but not in Parkinson's disease, J. Gerontol. Ser. ABiol. Sci. Med. Sci., 54, M129 Chong, 2000, Parkinson's disease impairs the ability to change set quickly, J. Neurol. Sci., 175, 57, 10.1016/S0022-510X(00)00277-X Cleworth, 2016, Influence of virtual height exposure on postural reactions to support surface translations, Gait Posture, 47, 96, 10.1016/j.gaitpost.2016.04.006 Cohen, 1988, Chapter 2 - the t test for means, 19 de Freitas, 2010, Postural reactions following forward platform perturbation in young, middle-age, and old adults, J. Electromyogr. Kinesiol., 20, 693, 10.1016/j.jelekin.2009.11.009 De Nunzio, 2007, The control of equilibrium in Parkinson's disease patients: delayed adaptation of balancing strategy to shifts in sensory set during a dynamic task, Brain Res. Bull., 74, 258, 10.1016/j.brainresbull.2007.06.020 Dimitrova, 2004, Postural muscle responses to multidirectional translations in patients with Parkinson's disease, J. Neurophysiol., 91, 489, 10.1152/jn.00094.2003 Dimitrova, 2004, Abnormal force patterns for multidirectional postural responses in patients with Parkinson's disease, Exp. Brain Res., 156, 183, 10.1007/s00221-003-1770-4 Fahn, 1987, The unified Parkinson's disease rating scale, 153 Feller, 2019, Sensory re-weighting for postural control in Parkinson's disease, Front. Hum. Neurosci., 13, 126, 10.3389/fnhum.2019.00126 Gan-Or, 2010, LRRK2 and GBA mutations differentially affect the initial presentation of Parkinson disease, Neurogenetics, 11, 121, 10.1007/s10048-009-0198-9 Ginis, 2018, Cueing for people with Parkinson's disease with freezing of gait: a narrative review of the state-of-the-art and novel perspectives, Ann. Phys. Rehabil. Med., 61, 407, 10.1016/j.rehab.2017.08.002 Gu, 2014, Greater loss of white matter integrity in postural instability and gait difficulty subtype of Parkinson's disease, Can. J. Neurol. Sci., 41, 763, 10.1017/cjn.2014.34 Herold, 2017, Functional near-infrared spectroscopy in movement science: a systematic review on cortical activity in postural and walking tasks, Neurophotonics, 4, 10.1117/1.NPh.4.4.041403 Horak, 2005, Direction-specific postural instability in subjects with Parkinson's disease, Exp. Neurol., 193, 504, 10.1016/j.expneurol.2004.12.008 Jacobs, 2006, Abnormal proprioceptive-motor integration contributes to hypometric postural responses of subjects with Parkinson's disease, Neuroscience, 141, 999, 10.1016/j.neuroscience.2006.04.014 Jacobs, 2007, Cortical control of postural responses, J. Neural Transm., 114, 1339, 10.1007/s00702-007-0657-0 Kang, 2013, Stiffness control of balance during dual task and prospective falls in older adults: the MOBILIZE Boston Study, Gait Posture, 38, 757, 10.1016/j.gaitpost.2013.03.022 Lang, 2019, Antagonist muscle activity during reactive balance responses is elevated in Parkinson's disease and in balance impairment, PLoS One, 14, 10.1371/journal.pone.0211137 Lee, 2013, Protective stepping response in Parkinsonian patients and the effect of vibrotactile feedback, Mov. Disord., 28, 482, 10.1002/mds.25227 Lopes, 2020, The mini-BESTest is an independent predictor of falls in Parkinson disease, Braz.J. Phys. Ther., 24, 433, 10.1016/j.bjpt.2019.07.006 Mahoney, 2016, The role of prefrontal cortex during postural control in Parkinsonian syndromes a functional near-infrared spectroscopy study, Brain Res., 1633, 126, 10.1016/j.brainres.2015.10.053 Mancini, 2018, Assessment of the ability of open- and closed-loop cueing to improve turning and freezing in people with Parkinson's disease, Sci. Rep., 8, 12773, 10.1038/s41598-018-31156-4 Mancini, 2020, Chapter 1 - how is balance controlled by the nervous system?, 1 Mancini, 2020, Chapter 4 - how are postural responses to external perturbations affected by PD?, 63 Mierau, 2015, Changes in cortical activity associated with adaptive behavior during repeated balance perturbation of unpredictable timing, Front. Behav. Neurosci., 9, 272, 10.3389/fnbeh.2015.00272 Muthukrishnan, 2019, Cueing paradigms to improve gait and posture in Parkinson's disease: a narrative review, Sensors (Basel), 19, 5468, 10.3390/s19245468 Nagy, 2006, Multisensory integration in the basal ganglia, Eur. J. Neurosci., 24, 917, 10.1111/j.1460-9568.2006.04942.x Nanhoe-Mahabier, 2012, First trial reactions and habituation rates over successive balance perturbations in Parkinson's disease, Neuroscience, 217, 123, 10.1016/j.neuroscience.2012.03.064 Nonnekes, 2014, Subcortical structures in humans can be facilitated by transcranial direct current stimulation, PLoS One, 9, 10.1371/journal.pone.0107731 Novak, 2009, White matter hyperintensities and dynamics of postural control, Magn. Reson. Imaging, 27, 752, 10.1016/j.mri.2009.01.010 Oie, 2002, Multisensory fusion: simultaneous re-weighting of vision and touch for the control of human posture, Brain Res. Cogn. Brain Res., 14, 164, 10.1016/S0926-6410(02)00071-X Palakurthi, 2019, Postural instability in Parkinson's disease: a review, Brain Sci., 9, 239, 10.3390/brainsci9090239 Pelicioni, 2018, Head and trunk stability during gait before and after levodopa intake in Parkinson's disease subtypes, Exp. Gerontol., 111, 78, 10.1016/j.exger.2018.06.031 Pelicioni, 2019, Falls in Parkinson's disease subtypes: risk factors, locations and circumstances, Int. J. Environ. Res. Public Health, 16, 10.3390/ijerph16122216 Pereira, 2016, Freezing of gait in Parkinson's disease: evidence of sensory rather than attentional mechanisms through muscle vibration, Parkinsonism Relat. Disord., 29, 78, 10.1016/j.parkreldis.2016.05.021 Peterson, 2016, Neural control of walking in people with parkinsonism, Physiol., 31, 95, 10.1152/physiol.00034.2015 Popa, 2015, Functional electrical stimulation may reduce bradykinesia in Parkinson's disease: a feasibility study, J. Rehabil. Assist. Technol. Eng., 2 Schenkman, 2001, Spinal movement and performance of a standing reach task in participants with and without Parkinson disease, Phys. Ther., 81, 1400, 10.1093/ptj/81.8.1400 Sienko, 2018, Potential mechanisms of sensory augmentation systems on human balance control, Front. Neurol., 9, 944, 10.3389/fneur.2018.00944 Smania, 2010, Effect of balance training on postural instability in patients with idiopathic Parkinson's disease, Neurorehabil. Neural Repair, 24, 826, 10.1177/1545968310376057 Smith, 2014, Effects of amplitude cueing on postural responses and preparatory cortical activity of people with Parkinson disease, J. Neurol. Phys. Ther., 38, 207, 10.1097/NPT.0000000000000058 Solis-Escalante, 2019, Cortical dynamics during preparation and execution of reactive balance responses with distinct postural demands, NeuroImage, 188, 557, 10.1016/j.neuroimage.2018.12.045 Sozzi, 2020, Adaptation of balancing behaviour during continuous perturbations of stance. Supra-postural visual tasks and platform translation frequency modulate adaptation rate, PLoS One, 15, 10.1371/journal.pone.0236702 Stebbins, 2013, How to identify tremor dominant and postural instability/gait difficulty groups with the movement disorder society unified Parkinson's disease rating scale: comparison with the unified Parkinson's disease rating scale, Mov. Disord., 28, 668, 10.1002/mds.25383 Tabachnick, 2007, Using multivariate statistics Takakusaki, 2017, Functional neuroanatomy for posture and gait control, J. Mov. Disord., 10, 1, 10.14802/jmd.16062 Tomlinson, 2010, Systematic review of levodopa dose equivalency reporting in Parkinson's disease, Mov. Disord., 25, 2649, 10.1002/mds.23429 Vaugoyeau, 2007, Impaired vertical postural control and proprioceptive integration deficits in Parkinson's disease, Neuroscience, 146, 852, 10.1016/j.neuroscience.2007.01.052 Wu, 2015, Motor automaticity in Parkinson's disease, Neurobiol. Dis., 82, 226, 10.1016/j.nbd.2015.06.014 Zhong, 2020, Tai Chi for improving balance and reducing falls: an overview of 14 systematic reviews, Ann. Phys. Rehabil. Med., 63, 505, 10.1016/j.rehab.2019.12.008