Literature DB >> 25063003

Upper body kinematics in patients with cerebellar ataxia.

Carmela Conte1, Francesco Pierelli, Carlo Casali, Alberto Ranavolo, Francesco Draicchio, Giovanni Martino, Mahmoud Harfoush, Luca Padua, Gianluca Coppola, Giorgio Sandrini, Mariano Serrao.   

Abstract

Although abnormal oscillations of the trunk are a common clinical feature in patients with cerebellar ataxia, the kinematic behaviour of the upper body in ataxic patients has yet to be investigated in quantitative studies. In this study, an optoelectronic motion analysis system was used to measure the ranges of motion (ROMs) of the head and trunk segments in the sagittal, frontal and yaw planes in 16 patients with degenerative cerebellar ataxia during gait at self-selected speed. The data obtained were compared with those collected in a gender-, age- and gait speed-matched sample of healthy subjects and correlated with gait variables (time-distance means and coefficients of variation) and clinical variables (disease onset, duration and severity). The results showed significantly larger head and/or trunk ROMs in ataxic patients compared with controls in all three spatial planes, and significant correlations between trunk ROMs and disease duration and severity (in sagittal and frontal planes) and time-distance parameters (in the yaw plane), and between both head and trunk ROMs and swing phase duration variability (in the sagittal plane). Furthermore, the ataxic patients showed a flexed posture of both the head and the trunk during walking. In conclusion, our study revealed abnormal motor behaviour of the upper body in ataxic patients, mainly resulting in a flexed posture and larger oscillations of the head and trunk. The results of the correlation analyses suggest that the longer and more severe the disease, the larger the upper body oscillations and that large trunk oscillations may explain some aspects of gait variability. These results suggest the need of specific rehabilitation treatments or the use of elastic orthoses that may be particularly useful to reduce trunk oscillations and improve dynamic stability.

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Year:  2014        PMID: 25063003     DOI: 10.1007/s12311-014-0586-z

Source DB:  PubMed          Journal:  Cerebellum        ISSN: 1473-4222            Impact factor:   3.847


  35 in total

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2.  Control of lateral balance in walking. Experimental findings in normal subjects and above-knee amputees.

Authors:  At L Hof; Renske M van Bockel; Tanneke Schoppen; Klaas Postema
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3.  Gait characteristics of elderly people with a history of falls: a dynamic approach.

Authors:  Yaron Barak; Robert C Wagenaar; Kenneth G Holt
Journal:  Phys Ther       Date:  2006-11

4.  Stepping strategies for regulating gait adaptability and stability.

Authors:  Laura Hak; Han Houdijk; Frans Steenbrink; Agali Mert; Peter van der Wurff; Peter J Beek; Jaap H van Dieën
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5.  ELITE: a digital dedicated hardware system for movement analysis via real-time TV signal processing.

Authors:  G Ferrigno; A Pedotti
Journal:  IEEE Trans Biomed Eng       Date:  1985-11       Impact factor: 4.538

6.  Relative contributions of balance and voluntary leg-coordination deficits to cerebellar gait ataxia.

Authors:  Susanne M Morton; Amy J Bastian
Journal:  J Neurophysiol       Date:  2002-12-04       Impact factor: 2.714

7.  Specific influences of cerebellar dysfunctions on gait.

Authors:  Winfried Ilg; Heidrun Golla; Peter Thier; Martin A Giese
Journal:  Brain       Date:  2007-02-07       Impact factor: 13.501

8.  Control of the upper body movements during level walking in patients with facioscapulohumeral dystrophy.

Authors:  M Iosa; C Mazzà; F Pecoraro; I Aprile; E Ricci; A Cappozzo
Journal:  Gait Posture       Date:  2009-09-25       Impact factor: 2.840

9.  Increased gait variability is associated with the history of falls in patients with cerebellar ataxia.

Authors:  Roman Schniepp; Max Wuehr; Cornelia Schlick; Sabrina Huth; Cauchy Pradhan; Marianne Dieterich; Thomas Brandt; Klaus Jahn
Journal:  J Neurol       Date:  2013-11-22       Impact factor: 4.849

10.  Typical features of cerebellar ataxic gait.

Authors:  H Stolze; S Klebe; G Petersen; J Raethjen; R Wenzelburger; K Witt; G Deuschl
Journal:  J Neurol Neurosurg Psychiatry       Date:  2002-09       Impact factor: 10.154

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  11 in total

1.  The Working Life of People with Degenerative Cerebellar Ataxia.

Authors:  A Ranavolo; M Serrao; T Varrecchia; C Casali; A Filla; A Roca; A Silvetti; C Marcotulli; B M Rondinone; S Iavicoli; F Draicchio
Journal:  Cerebellum       Date:  2019-10       Impact factor: 3.847

2.  Progression of Gait Ataxia in Patients with Degenerative Cerebellar Disorders: a 4-Year Follow-Up Study.

Authors:  Mariano Serrao; Giorgia Chini; Carlo Casali; Carmela Conte; Martina Rinaldi; Alberto Ranavolo; Christian Marcotulli; Luca Leonardi; Gaia Fragiotta; Fabiano Bini; Gianluca Coppola; Francesco Pierelli
Journal:  Cerebellum       Date:  2017-06       Impact factor: 3.847

3.  Effect of Restraining the Base of Support on the Other Biomechanical Features in Patients with Cerebellar Ataxia.

Authors:  C Conte; Mariano Serrao; L Cuius; A Ranavolo; S Conforto; F Pierelli; L Padua
Journal:  Cerebellum       Date:  2018-06       Impact factor: 3.847

Review 4.  Consensus Paper: Revisiting the Symptoms and Signs of Cerebellar Syndrome.

Authors:  Florian Bodranghien; Amy Bastian; Carlo Casali; Mark Hallett; Elan D Louis; Mario Manto; Peter Mariën; Dennis A Nowak; Jeremy D Schmahmann; Mariano Serrao; Katharina Marie Steiner; Michael Strupp; Caroline Tilikete; Dagmar Timmann; Kim van Dun
Journal:  Cerebellum       Date:  2016-06       Impact factor: 3.847

5.  Neuromuscular adjustments of gait associated with unstable conditions.

Authors:  G Martino; Y P Ivanenko; A d'Avella; M Serrao; A Ranavolo; F Draicchio; G Cappellini; C Casali; F Lacquaniti
Journal:  J Neurophysiol       Date:  2015-09-16       Impact factor: 2.714

6.  Local Stability of the Trunk in Patients with Degenerative Cerebellar Ataxia During Walking.

Authors:  Giorgia Chini; Alberto Ranavolo; Francesco Draicchio; Carlo Casali; Carmela Conte; Giovanni Martino; Luca Leonardi; Luca Padua; Gianluca Coppola; Francesco Pierelli; Mariano Serrao
Journal:  Cerebellum       Date:  2017-02       Impact factor: 3.847

7.  Prediction of Responsiveness of Gait Variables to Rehabilitation Training in Parkinson's Disease.

Authors:  Mariano Serrao; Giorgia Chini; Guido Caramanico; Michelangelo Bartolo; Stefano Filippo Castiglia; Alberto Ranavolo; Carmela Conte; Teresa Venditto; Gianluca Coppola; Cherubino di Lorenzo; Patrizio Cardinali; Francesco Pierelli
Journal:  Front Neurol       Date:  2019-08-02       Impact factor: 4.003

8.  Gait and Functional Mobility Deficits in Fragile X-Associated Tremor/Ataxia Syndrome.

Authors:  Joan A O'Keefe; Erin E Robertson-Dick; Deborah A Hall; Elizabeth Berry-Kravis
Journal:  Cerebellum       Date:  2016-08       Impact factor: 3.847

9.  Quantification of Axial Abnormality Due to Cerebellar Ataxia with Inertial Measurements.

Authors:  Nhan Nguyen; Dung Phan; Pubudu N Pathirana; Malcolm Horne; Laura Power; David Szmulewicz
Journal:  Sensors (Basel)       Date:  2018-08-24       Impact factor: 3.576

10.  Exploring Risk of Falls and Dynamic Unbalance in Cerebellar Ataxia by Inertial Sensor Assessment.

Authors:  Pietro Caliandro; Carmela Conte; Chiara Iacovelli; Antonella Tatarelli; Stefano Filippo Castiglia; Giuseppe Reale; Mariano Serrao
Journal:  Sensors (Basel)       Date:  2019-12-17       Impact factor: 3.576

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