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Erschienen in: Experimental Brain Research 3/2013

01.09.2013 | Volition

Arm–eye coordination test to objectively quantify motor performance and muscles activation in persons after stroke undergoing robot-aided rehabilitation training: a pilot study

verfasst von: Rong Song, Kai-Yu Tong, Xiaoling Hu, Le Li, Rui Sun

Erschienen in: Experimental Brain Research | Ausgabe 3/2013

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Abstract

This study designed an arm–eye coordination test to investigate the effectiveness of the robot-aided rehabilitation for persons after stroke. Six chronic poststroke subjects were recruited to attend a 20-session robot-aided rehabilitation training of elbow joint. Before and after the training program, subjects were asked to perform voluntary movements of elbow flection and extension by following sinusoidal trajectories at different velocities with visual feedback on their joint positions. The elbow angle and the electromyographic signal of biceps and triceps as well as clinical scores were evaluated together with the parameters. Performance was objectively quantified by root mean square error (RMSE), root mean square jerk (RMSJ), range of motion (ROM), and co-contraction index (CI). After 20 sessions, RMSE and ROM improved significantly in both the affected and the unaffected side based on two-way ANOVA (P < 0.05). There was significant lower RMSJ in the affected side at higher velocities (P < 0.05). There was significant negative correlation between average RMSE with different tracking velocities and Fugl-Meyer shoulder–elbow score (P < 0.05). There was also significant negative correlation between average RMSE and average ROM (P < 0.05), and moderate nonsignificant negative correlation with RMSJ, and CI. The characterization of velocity-dependent deficiencies, monitoring of training-induced improvement, and the correlation between quantitative parameters and clinical scales could enable the exploration of effects of different types of treatment and design progress-based training method to accelerate the processes of recovery.
Literatur
Zurück zum Zitat Barker RN, Brauer S, Carson R (2009) Training-induced changes in the pattern of triceps to biceps activation during reaching tasks after chronic and severe stroke. Exp Brain Res 196:483–496PubMedCrossRef Barker RN, Brauer S, Carson R (2009) Training-induced changes in the pattern of triceps to biceps activation during reaching tasks after chronic and severe stroke. Exp Brain Res 196:483–496PubMedCrossRef
Zurück zum Zitat Bennett DJ, Hollerbach JM, Xu Y, Hunter IW (1992) Time-varying stiffness of human elbow joint during cyclic voluntary movement. Exp Brain Res 88:433–442PubMedCrossRef Bennett DJ, Hollerbach JM, Xu Y, Hunter IW (1992) Time-varying stiffness of human elbow joint during cyclic voluntary movement. Exp Brain Res 88:433–442PubMedCrossRef
Zurück zum Zitat Bohannon RW, Smith MB (1986) Interrater reliability of an modified Ashworth scale of muscle spasticity. Phys Ther 67:206–207 Bohannon RW, Smith MB (1986) Interrater reliability of an modified Ashworth scale of muscle spasticity. Phys Ther 67:206–207
Zurück zum Zitat Canning CG, Ada L, O’Dwyer NJ (2000) Abnormal muscle activation characteristics associated with loss of dexterity after stroke. J Neurol Sci 176(1):45–56PubMedCrossRef Canning CG, Ada L, O’Dwyer NJ (2000) Abnormal muscle activation characteristics associated with loss of dexterity after stroke. J Neurol Sci 176(1):45–56PubMedCrossRef
Zurück zum Zitat Chae J, Yang G, Park BK, Labatia I (2002a) Muscle weakness and cocontraction in upper limb hemiparesis: relationship to motor impairment and physical disability. Neurorehabil Neural Repair 16:241–248PubMed Chae J, Yang G, Park BK, Labatia I (2002a) Muscle weakness and cocontraction in upper limb hemiparesis: relationship to motor impairment and physical disability. Neurorehabil Neural Repair 16:241–248PubMed
Zurück zum Zitat Chae J, Yang G, Park BK, Labatia I (2002b) Delay in initiation and termination of muscle contraction, motor impairment, and physical disability in upper limb hemiparesis. Muscle Nerve 25(4):568–575PubMedCrossRef Chae J, Yang G, Park BK, Labatia I (2002b) Delay in initiation and termination of muscle contraction, motor impairment, and physical disability in upper limb hemiparesis. Muscle Nerve 25(4):568–575PubMedCrossRef
Zurück zum Zitat Colombo R, Pisano F, Micera S, Mazzone A, Delconte C, Carrozza MC, Dario P, Minuco G (2005) Robotic techniques for upper limb evaluation and rehabilitation of stroke patients. IEEE Trans Neural Sys Rehabil Eng 13(3):311–324CrossRef Colombo R, Pisano F, Micera S, Mazzone A, Delconte C, Carrozza MC, Dario P, Minuco G (2005) Robotic techniques for upper limb evaluation and rehabilitation of stroke patients. IEEE Trans Neural Sys Rehabil Eng 13(3):311–324CrossRef
Zurück zum Zitat Colombo R, Pisano F, Micera S, Mazzone A, Delconte C, Carrozza MC, Dario P, Minuco G (2008) Assessing mechanisms of recovery during robot-aided neurorehabilitation of the upper limb. Neurorehabil Neural Repair 22(1):50–63PubMed Colombo R, Pisano F, Micera S, Mazzone A, Delconte C, Carrozza MC, Dario P, Minuco G (2008) Assessing mechanisms of recovery during robot-aided neurorehabilitation of the upper limb. Neurorehabil Neural Repair 22(1):50–63PubMed
Zurück zum Zitat Cruz MA, Munoz J, Palacios F (1998) The muscle inhibitory period by transcranial magnetic stimulation: study in stroke patients. Electromyogr Clin Neurophysiol 38:189–192 Cruz MA, Munoz J, Palacios F (1998) The muscle inhibitory period by transcranial magnetic stimulation: study in stroke patients. Electromyogr Clin Neurophysiol 38:189–192
Zurück zum Zitat Dewald JPA, Sheshadri V, Dawson ML, Beer RF (2001) Upper-limb discoordination in hemiparetic stroke: implications for neurorehabilitation. Top Stroke Rehabil 8:1–12PubMed Dewald JPA, Sheshadri V, Dawson ML, Beer RF (2001) Upper-limb discoordination in hemiparetic stroke: implications for neurorehabilitation. Top Stroke Rehabil 8:1–12PubMed
Zurück zum Zitat Dickstein R, Shefi S, Marcovitz E, Villa Y (2004) Electromyographic activity of voluntarily activated trunk flexor and extensor muscles in post-stroke hemiparetic subjects. Clin Neurophysiol 115(4):790–796PubMedCrossRef Dickstein R, Shefi S, Marcovitz E, Villa Y (2004) Electromyographic activity of voluntarily activated trunk flexor and extensor muscles in post-stroke hemiparetic subjects. Clin Neurophysiol 115(4):790–796PubMedCrossRef
Zurück zum Zitat Fitts PM (1954) The information capacity of the human motor system in controlling the amplitude of movement. J Exp Psychol 47(6):381–391PubMedCrossRef Fitts PM (1954) The information capacity of the human motor system in controlling the amplitude of movement. J Exp Psychol 47(6):381–391PubMedCrossRef
Zurück zum Zitat Frost G, Dowling J, Dyson K, Bar-Or O (1997) Cocontraction in three age groups of children during treadmill locomotion. J Electromyogr Kinesiol 7(3):179–186PubMedCrossRef Frost G, Dowling J, Dyson K, Bar-Or O (1997) Cocontraction in three age groups of children during treadmill locomotion. J Electromyogr Kinesiol 7(3):179–186PubMedCrossRef
Zurück zum Zitat Fugl-Meyer AR, Jaasko I, Leyman I, Olssom S, Steglind S (1975) The post-stroke hemiplegic patient. I. A method for evaluation of physical performance. Scand J Rehab Med 7:13–31 Fugl-Meyer AR, Jaasko I, Leyman I, Olssom S, Steglind S (1975) The post-stroke hemiplegic patient. I. A method for evaluation of physical performance. Scand J Rehab Med 7:13–31
Zurück zum Zitat Ghez C (1991) The control of movement. In: Kandal ER, Schwartz JH, Jessell TM (eds) Principles of neural science. Appleton & Lange, Norwalk, pp 533–563 Ghez C (1991) The control of movement. In: Kandal ER, Schwartz JH, Jessell TM (eds) Principles of neural science. Appleton & Lange, Norwalk, pp 533–563
Zurück zum Zitat Haaland KY, Harrington DL, Yeo R (1987) The effects of task complexity on motor performance in left and right CVA patients. Neuropsychologia 25(5):783–794PubMedCrossRef Haaland KY, Harrington DL, Yeo R (1987) The effects of task complexity on motor performance in left and right CVA patients. Neuropsychologia 25(5):783–794PubMedCrossRef
Zurück zum Zitat Hogan N (1984) An organizing principle for a class of voluntary movements. J Neurosci 4:2745–2754PubMed Hogan N (1984) An organizing principle for a class of voluntary movements. J Neurosci 4:2745–2754PubMed
Zurück zum Zitat Hogan N, Krebs HI, Rohrer B, Palazzolo JJ, Dipietro L, Fasoli SE, Stein J, Frontera WR, Volpe BT (2006) Motions or muscles? Some behavioral factors underlying robotic assistance of motor recovery. J Rehabil Res Dev 43(5):605–618PubMedCrossRef Hogan N, Krebs HI, Rohrer B, Palazzolo JJ, Dipietro L, Fasoli SE, Stein J, Frontera WR, Volpe BT (2006) Motions or muscles? Some behavioral factors underlying robotic assistance of motor recovery. J Rehabil Res Dev 43(5):605–618PubMedCrossRef
Zurück zum Zitat Ju MS, Lin CC, Chen JR, Cheng HS, Lin CW (2002) Performance of elbow tracking under constant torque disturbance in normotonic stroke patients and normal subjects. Clin Biomech 17:640–649 Ju MS, Lin CC, Chen JR, Cheng HS, Lin CW (2002) Performance of elbow tracking under constant torque disturbance in normotonic stroke patients and normal subjects. Clin Biomech 17:640–649
Zurück zum Zitat Kisiel-Sajewicz K, Fang Y, Hrovat K, Yue GH, Siemionow V, Sun CK, Jaskólska A, Jaskólski A, Sahgal V, Daly JJ (2011) Weakening of synergist muscle coupling during reaching movement in stroke patients. Neurorehabil Neural Repair 25(4):359–368 Kisiel-Sajewicz K, Fang Y, Hrovat K, Yue GH, Siemionow V, Sun CK, Jaskólska A, Jaskólski A, Sahgal V, Daly JJ (2011) Weakening of synergist muscle coupling during reaching movement in stroke patients. Neurorehabil Neural Repair 25(4):359–368
Zurück zum Zitat Lum PS, Burgar CG, Kenney DE, Van der Loos HF (1999) Quantification of force abnormalities during passive and active-assisted upper-Limb reaching movements in post-stroke hemiparesis. IEEE Trans Biomed Eng 46(6):652–662PubMedCrossRef Lum PS, Burgar CG, Kenney DE, Van der Loos HF (1999) Quantification of force abnormalities during passive and active-assisted upper-Limb reaching movements in post-stroke hemiparesis. IEEE Trans Biomed Eng 46(6):652–662PubMedCrossRef
Zurück zum Zitat Lum PS, Burgar CG, Shor PC (2004) Evidence for improved muscle activation patterns after retraining of reaching movements with the MIME robotic system in subjects with post-stroke hemiparesis. IEEE Trans Neural Syst Rehabil Eng 12(2):186–194PubMedCrossRef Lum PS, Burgar CG, Shor PC (2004) Evidence for improved muscle activation patterns after retraining of reaching movements with the MIME robotic system in subjects with post-stroke hemiparesis. IEEE Trans Neural Syst Rehabil Eng 12(2):186–194PubMedCrossRef
Zurück zum Zitat McCrea PH, Eng JJ (2005) Consequences of increased neuromotor noise for reaching movements in persons with stroke. Exp Brain Res 162(1):70–77PubMedCrossRef McCrea PH, Eng JJ (2005) Consequences of increased neuromotor noise for reaching movements in persons with stroke. Exp Brain Res 162(1):70–77PubMedCrossRef
Zurück zum Zitat McLellan DL, Hassan N, Hodgson JA (1985) Tracking tasks in the assessment of spasticity. In: Delwaide PJ, Young RR (eds) Clinical neurophysiology in spasticity. Elsevier, Amsterdam, pp 131–139 McLellan DL, Hassan N, Hodgson JA (1985) Tracking tasks in the assessment of spasticity. In: Delwaide PJ, Young RR (eds) Clinical neurophysiology in spasticity. Elsevier, Amsterdam, pp 131–139
Zurück zum Zitat Nielsen J, Kagamihara K (1993) The regulation of presynaptic inhibition during co-contraction of antagonistic muscles in man. J Physiol 464(1):575–593PubMed Nielsen J, Kagamihara K (1993) The regulation of presynaptic inhibition during co-contraction of antagonistic muscles in man. J Physiol 464(1):575–593PubMed
Zurück zum Zitat Rohrer B, Fasoli S, Krebs HI, Hughes R, Volpe B, Frontera WR, Stein J, Hogan N (2002) Movement smoothness changes during stroke recovery. J Neurosci 22:8297–8304PubMed Rohrer B, Fasoli S, Krebs HI, Hughes R, Volpe B, Frontera WR, Stein J, Hogan N (2002) Movement smoothness changes during stroke recovery. J Neurosci 22:8297–8304PubMed
Zurück zum Zitat Rymer WZ, Katz RT (1994) Mechanisms of spastic hypertonia. Phys Med Rehabil 8:442–453 Rymer WZ, Katz RT (1994) Mechanisms of spastic hypertonia. Phys Med Rehabil 8:442–453
Zurück zum Zitat Song R, Tong KY, Hu XL, Li L (2008) Assistive control system using continuous myoelectric signal in robot-aided arm training for patients after stroke. IEEE Trans Neural Syst Rehabil Eng 16(4):371–379PubMedCrossRef Song R, Tong KY, Hu XL, Li L (2008) Assistive control system using continuous myoelectric signal in robot-aided arm training for patients after stroke. IEEE Trans Neural Syst Rehabil Eng 16(4):371–379PubMedCrossRef
Zurück zum Zitat Sukal TM, Ellis MD, Dewald JPA (2007) Shoulder abduction-induced reductions in reaching work area following hemiparetic stroke: neuroscientific implications. Exp Brain Res 183:215–223PubMedCrossRef Sukal TM, Ellis MD, Dewald JPA (2007) Shoulder abduction-induced reductions in reaching work area following hemiparetic stroke: neuroscientific implications. Exp Brain Res 183:215–223PubMedCrossRef
Zurück zum Zitat Uno Y, Kawato M, Suzuki R (1989) Formation and control of optimal trajectory in human multijoint arm movement: minimum torque-change model. Biol Cybern 61:89–101PubMedCrossRef Uno Y, Kawato M, Suzuki R (1989) Formation and control of optimal trajectory in human multijoint arm movement: minimum torque-change model. Biol Cybern 61:89–101PubMedCrossRef
Zurück zum Zitat Volpe BT, Krebs HI, Hogan N, Edelstein OTR, Diels C, Aisen M (2000) A novel approach to stroke rehabilitation: robot-aided sensorimotor stimulation. Neurology 54(10):1938–1944PubMedCrossRef Volpe BT, Krebs HI, Hogan N, Edelstein OTR, Diels C, Aisen M (2000) A novel approach to stroke rehabilitation: robot-aided sensorimotor stimulation. Neurology 54(10):1938–1944PubMedCrossRef
Zurück zum Zitat Wiegner AW, Wierzbicka MM (1992) Kinematic models and human elbow flexion movements: quantitative analysis. Exp Brain Res 88:665–673PubMedCrossRef Wiegner AW, Wierzbicka MM (1992) Kinematic models and human elbow flexion movements: quantitative analysis. Exp Brain Res 88:665–673PubMedCrossRef
Metadaten
Titel
Arm–eye coordination test to objectively quantify motor performance and muscles activation in persons after stroke undergoing robot-aided rehabilitation training: a pilot study
verfasst von
Rong Song
Kai-Yu Tong
Xiaoling Hu
Le Li
Rui Sun
Publikationsdatum
01.09.2013
Verlag
Springer Berlin Heidelberg
Erschienen in
Experimental Brain Research / Ausgabe 3/2013
Print ISSN: 0014-4819
Elektronische ISSN: 1432-1106
DOI
https://doi.org/10.1007/s00221-013-3418-3

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