Spectral analysis of body movement during deep brain stimulation in Parkinson’s disease

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Spectral analysis of body movement during deep brain stimulation in Parkinson’s disease. / Patel, Mitesh; Nilsson, Maria ; Rehncrona, Stig et al.
Yn: Gait and Posture, Cyfrol 86, 01.05.2021, t. 217-225.

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

HarvardHarvard

Patel, M, Nilsson, M, Rehncrona, S, Magnusson, M, Tjernström, F, Johansson, R & Fransson, P-A 2021, 'Spectral analysis of body movement during deep brain stimulation in Parkinson’s disease', Gait and Posture, cyfrol. 86, tt. 217-225. https://doi.org/10.1016/j.gaitpost.2021.03.023

APA

Patel, M., Nilsson, M., Rehncrona, S., Magnusson, M., Tjernström, F., Johansson, R., & Fransson, P.-A. (2021). Spectral analysis of body movement during deep brain stimulation in Parkinson’s disease. Gait and Posture, 86, 217-225. https://doi.org/10.1016/j.gaitpost.2021.03.023

CBE

Patel M, Nilsson M, Rehncrona S, Magnusson M, Tjernström F, Johansson R, Fransson P-A. 2021. Spectral analysis of body movement during deep brain stimulation in Parkinson’s disease. Gait and Posture. 86:217-225. https://doi.org/10.1016/j.gaitpost.2021.03.023

MLA

VancouverVancouver

Patel M, Nilsson M, Rehncrona S, Magnusson M, Tjernström F, Johansson R et al. Spectral analysis of body movement during deep brain stimulation in Parkinson’s disease. Gait and Posture. 2021 Mai 1;86:217-225. Epub 2021 Maw 18. doi: 10.1016/j.gaitpost.2021.03.023

Author

Patel, Mitesh ; Nilsson, Maria ; Rehncrona, Stig et al. / Spectral analysis of body movement during deep brain stimulation in Parkinson’s disease. Yn: Gait and Posture. 2021 ; Cyfrol 86. tt. 217-225.

RIS

TY - JOUR

T1 - Spectral analysis of body movement during deep brain stimulation in Parkinson’s disease

AU - Patel, Mitesh

AU - Nilsson, Maria

AU - Rehncrona, Stig

AU - Magnusson, Mans

AU - Tjernström, Fredrik

AU - Johansson, Rolf

AU - Fransson, Per-Anders

PY - 2021/5/1

Y1 - 2021/5/1

N2 - bstractBackgroundThe characteristics of Parkinson’s disease (PD) include postural instability and resting tremor. However, reductions of tremor amplitude do not always improve postural stability.Research questionWhat is the effect of deep brain stimulation (DBS) of the subthalamic nucleus (STN) on spectral analysis of body movement in patients with PD when tested without anti-PD medication? The effect of visual cues was also studied.MethodsTen patients with PD (mean age 64.3 years, range 59−69 years) and 17 control participants (mean age 71.2 years, range 65–79 years) were recruited. Spectral power following a period of quiet stance (35 s) was analysed in three different spectral power bands (0−4 Hz, 4−7 Hz and 7−25 Hz). Motion markers were secured to the head, shoulder, hip, and knee, which recorded movements in two directions, the anteroposterior and lateral.ResultsDBS STN significantly changed the spectral distribution pattern across the body in the anteroposterior (p = 0.029) and lateral directions (p ≤ 0.003). DBS predominantly reduced spectral power at the head (p ≤ 0.037) and shoulder (p ≤ 0.031) in the lateral direction. The spectral power of the lower and upper body in patients with PD, with DBS ON, were more similar to the control group, than to DBS OFF. Visual cues mainly reduced spectral power in the anteroposterior direction at the shoulder (p ≤ 0.041) in controls and in patients with PD with DBS ON.SignificanceThere is an altered postural strategy in patients with PD with DBS ON as shown by an altered spectral power distribution pattern across body segments and a reduction of spectral power in the lateral direction at the head and shoulder. A reduction of spectral power in controls and in patients with PD with DBS ON suggests that visual cues are able to reduce spectral power to some extent, but not with DBS OFF where postural sway and power are larger.

AB - bstractBackgroundThe characteristics of Parkinson’s disease (PD) include postural instability and resting tremor. However, reductions of tremor amplitude do not always improve postural stability.Research questionWhat is the effect of deep brain stimulation (DBS) of the subthalamic nucleus (STN) on spectral analysis of body movement in patients with PD when tested without anti-PD medication? The effect of visual cues was also studied.MethodsTen patients with PD (mean age 64.3 years, range 59−69 years) and 17 control participants (mean age 71.2 years, range 65–79 years) were recruited. Spectral power following a period of quiet stance (35 s) was analysed in three different spectral power bands (0−4 Hz, 4−7 Hz and 7−25 Hz). Motion markers were secured to the head, shoulder, hip, and knee, which recorded movements in two directions, the anteroposterior and lateral.ResultsDBS STN significantly changed the spectral distribution pattern across the body in the anteroposterior (p = 0.029) and lateral directions (p ≤ 0.003). DBS predominantly reduced spectral power at the head (p ≤ 0.037) and shoulder (p ≤ 0.031) in the lateral direction. The spectral power of the lower and upper body in patients with PD, with DBS ON, were more similar to the control group, than to DBS OFF. Visual cues mainly reduced spectral power in the anteroposterior direction at the shoulder (p ≤ 0.041) in controls and in patients with PD with DBS ON.SignificanceThere is an altered postural strategy in patients with PD with DBS ON as shown by an altered spectral power distribution pattern across body segments and a reduction of spectral power in the lateral direction at the head and shoulder. A reduction of spectral power in controls and in patients with PD with DBS ON suggests that visual cues are able to reduce spectral power to some extent, but not with DBS OFF where postural sway and power are larger.

U2 - 10.1016/j.gaitpost.2021.03.023

DO - 10.1016/j.gaitpost.2021.03.023

M3 - Article

VL - 86

SP - 217

EP - 225

JO - Gait and Posture

JF - Gait and Posture

SN - 0966-6362

ER -