Literature DB >> 24132842

Objective biomarkers of balance and gait for Parkinson's disease using body-worn sensors.

Fay B Horak1, Martina Mancini.   

Abstract

Balance and gait impairments characterize the progression of Parkinson's disease (PD), predict the risk of falling, and are important contributors to reduced quality of life. Advances in technology of small, body-worn, inertial sensors have made it possible to develop quick, objective measures of balance and gait impairments in the clinic for research trials and clinical practice. Objective balance and gait metrics may eventually provide useful biomarkers for PD. In fact, objective balance and gait measures are already being used as surrogate endpoints for demonstrating clinical efficacy of new treatments, in place of counting falls from diaries, using stop-watch measures of gait speed, or clinical balance rating scales. This review summarizes the types of objective measures available from body-worn sensors. The metrics are organized based on the neural control system for mobility affected by PD: postural stability in stance, postural responses, gait initiation, gait (temporal-spatial lower and upper body coordination and dynamic equilibrium), postural transitions, and freezing of gait. However, the explosion of metrics derived by wearable sensors during prescribed balance and gait tasks, which are abnormal in individuals with PD, do not yet qualify as behavioral biomarkers, because many balance and gait impairments observed in PD are not specific to the disease, nor have they been related to specific pathophysiologic biomarkers. In the future, the most useful balance and gait biomarkers for PD will be those that are sensitive and specific for early PD and are related to the underlying disease process.
© 2013 Movement Disorder Society.

Entities:  

Keywords:  balance; clinical trials; gait; technology

Mesh:

Substances:

Year:  2013        PMID: 24132842      PMCID: PMC3927718          DOI: 10.1002/mds.25684

Source DB:  PubMed          Journal:  Mov Disord        ISSN: 0885-3185            Impact factor:   10.338


  69 in total

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5.  Asymmetric pedunculopontine network connectivity in parkinsonian patients with freezing of gait.

Authors:  Brett W Fling; Rajal G Cohen; Martina Mancini; John G Nutt; Damian A Fair; Fay B Horak
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Review 6.  Freezing of gait: moving forward on a mysterious clinical phenomenon.

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7.  Quantifying freezing of gait in Parkinson's disease during the instrumented timed up and go test.

Authors:  Martina Mancini; Kelsey C Priest; John G Nutt; Fay B Horak
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  79 in total

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Journal:  Mov Disord       Date:  2013-09-15       Impact factor: 10.338

Review 3.  Managing Gait, Balance, and Posture in Parkinson's Disease.

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Journal:  J Neurol       Date:  2018-09-08       Impact factor: 4.849

6.  Postural response latencies are related to balance control during standing and walking in patients with multiple sclerosis.

Authors:  Jessie M Huisinga; Rebecca J St George; Rebecca Spain; Shannon Overs; Fay B Horak
Journal:  Arch Phys Med Rehabil       Date:  2014-01-18       Impact factor: 3.966

7.  Instrumented Test of Sensory Integration for Balance: A Validation Study.

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8.  Standing balance and strength measurements in older adults living in residential care communities.

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9.  Quantifying effects of age on balance and gait with inertial sensors in community-dwelling healthy adults.

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10.  Assessment of Postural Sway in Individuals with Multiple Sclerosis Using a Novel Wearable Inertial Sensor.

Authors:  Ruopeng Sun; Yaejin Moon; Ryan S McGinnis; Kirsten Seagers; Robert W Motl; Nirav Sheth; John A Wright; Roozbeh Ghaffari; Shyamal Patel; Jacob J Sosnoff
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