Neuromechanical Assessment of Activated vs. Resting Leg Rigidity Using the Pendulum Test Is Associated With a Fall History in People With Parkinson’s Disease

Frontiers in Human Neuroscience 14 (2020)
  Copy   BIBTEX

Abstract

Leg rigidity is associated with frequent falls in people with Parkinson’s disease, suggesting a potential role in functional balance and gait impairments. Changes in the neural state due to secondary tasks, e.g., activation maneuvers, can exacerbate rigidity, possibly increasing the risk of falls. However, the subjective interpretation and coarse classification of the standard clinical rigidity scale has prohibited the systematic, objective assessment of resting and activated leg rigidity. The pendulum test is an objective diagnostic method that we hypothesized would be sensitive enough to characterize resting and activated leg rigidity. We recorded kinematic data and electromyographic signals from rectus femoris and biceps femoris during the pendulum test in 15 individuals with PD, spanning a range of leg rigidity severity. From the recorded data of leg swing kinematics, we measured biomechanical outcomes including first swing excursion, first extension peak, number and duration of the oscillations, resting angle, relaxation index, maximum and minimum angular velocity. We examined associations between biomechanical outcomes and clinical leg rigidity score. We evaluated the effect of increasing rigidity through activation maneuvers on biomechanical outcomes. Finally, we assessed whether either biomechanical outcomes or changes in outcomes with activation were associated with a fall history. Our results suggest that the biomechanical assessment of the pendulum test can objectively quantify parkinsonian leg rigidity. We found that the presence of high rigidity during clinical exam significantly impacted biomechanical outcomes, i.e., first extension peak, number of oscillations, relaxation index, and maximum angular velocity. No differences in the effect of activation maneuvers between groups with clinically assessed low rigidity were observed, suggesting that activated rigidity may be independent of resting rigidity and should be scored as independent variables. Moreover, we found that fall history was more common among people whose rigidity was increased with a secondary task, as measured by biomechanical outcomes. We conclude that different mechanisms contributing to resting and activated rigidity may play an important yet unexplored functional role in balance impairments. The pendulum test may contribute to a better understanding of fundamental mechanisms underlying motor symptoms in PD, evaluating the efficacy of treatments, and predicting the risk of falls.

Links

PhilArchive



    Upload a copy of this work     Papers currently archived: 92,168

External links

Setup an account with your affiliations in order to access resources via your University's proxy server

Through your library

Similar books and articles

Varieties of Rigidity.Tuukka Tanninen - 2019 - Logica Universalis 13 (2):219-240.
Varieties of Rigidity.Tuukka Tanninen - 2019 - Logica Universalis 13 (2):219-240.
Proto-Rigidity.Jussi Haukioja - 2006 - Synthese 150 (2):155-169.
Names and Their Kind of Rigidity.Dolf Rami - 2019 - Erkenntnis 84 (2):257-282.
De Jure Rigidity.Nicolien Janssens - 2018 - Aporia 18 (1):9-18.
Kripkean Meta-Semantics and Generalized Rigidity.Christian Nimtz - 2019 - Philosophical Quarterly 69 (275):332-353.
Kinds, general terms, and rigidity: A reply to LaPorte.Stephen P. Schwartz - 2002 - Philosophical Studies 109 (3):265 - 277.
Essence, Application, and Explanation.Fredrik Haraldsen - 2016 - Acta Analytica 31 (2):179-189.
Parkinsonian Rigidity: The First Hundred-and-One Years 1817-1918.Francis Schiller - 1986 - History and Philosophy of the Life Sciences 8 (2):221 - 236.
Rigidity, natural kind terms and metasemantics.Corine Besson - 2010 - In Helen Beebee & Nigel Sabbarton-Leary (eds.), The Semantics and Metaphysics of Natural Kinds. Routledge. pp. 25--44.
Club degrees of rigidity and almost Kurepa trees.Gunter Fuchs - 2013 - Archive for Mathematical Logic 52 (1-2):47-66.
Some old and new results about rigidity of critical metric.Gilles Carron - 2014 - Annali della Scuola Normale Superiore di Pisa- Classe di Scienze 13 (4):1091-1113.

Analytics

Added to PP
2020-12-22

Downloads
13 (#1,040,014)

6 months
9 (#314,693)

Historical graph of downloads
How can I increase my downloads?

Citations of this work

No citations found.

Add more citations

References found in this work

No references found.

Add more references