Neck injuries and the related pain have a high prevalence and represent an important health problem. To properly diagnose and treat them, practitioners need an accurate system for measuring Cervical Range Of Motion (CROM). This article describes the development and validation of an inexpensive, small (4 cm × 4 cm × 8 cm), light (< 200 g) and easy to use solution for measuring CROM using wearable inertial sensors. The proposed solution has been designed with the clinical practice in mind, after consulting with practitioners. It is composed of: (a) two wearable wireless MEMS-based inertial devices, (b) a recording and report generation software application and (c) a measurement protocol for assessing CROM. The solution provides...
15 pags., 2 figs., 5 tabs.We analyzed the inter-and intra-examiner reliability of Werium inertial se...
OBJECTIVE: The purpose of this study was to systematically review the literature evaluating the reli...
The purpose of this study was to verify the performance and suitability of new generation 3D wireles...
A rise in neck pain cases has initiated an exponential interest in the assessment and treatment of c...
Inertial technology has spread widely for its comfortable use and adaptability to various motor task...
Objective: To investigate the use of electromagnetic tracking technology for measurement of passive ...
BACKGROUND: There is a lack of valid, reliable, and feasible instruments for measuring planar active...
In clinical settings, the cervical range of motion (ROM) is commonly used to assess cervical spine f...
BACKGROUND: Cervical pain is the biggest musculoskeletal health problem in industrialised countries....
PURPOSE: To investigate the reliability and validity of the Electronic Cervical Range of Motion (CRO...
The study is to provide a critical analysis of the research literature on clinimetric properties of ...
Background: Assessment of cervical active range of motion (CAROM) in three planes was one of the pri...
Objective. The objectives were to show the feasibility of a wireless microelectromechanical system i...
Objective: The purpose of this study was to systematically review the literature evaluating the reli...
Context: Assessment of upper cervical range of motion (UCROM) and mobility is commonly performed in ...
15 pags., 2 figs., 5 tabs.We analyzed the inter-and intra-examiner reliability of Werium inertial se...
OBJECTIVE: The purpose of this study was to systematically review the literature evaluating the reli...
The purpose of this study was to verify the performance and suitability of new generation 3D wireles...
A rise in neck pain cases has initiated an exponential interest in the assessment and treatment of c...
Inertial technology has spread widely for its comfortable use and adaptability to various motor task...
Objective: To investigate the use of electromagnetic tracking technology for measurement of passive ...
BACKGROUND: There is a lack of valid, reliable, and feasible instruments for measuring planar active...
In clinical settings, the cervical range of motion (ROM) is commonly used to assess cervical spine f...
BACKGROUND: Cervical pain is the biggest musculoskeletal health problem in industrialised countries....
PURPOSE: To investigate the reliability and validity of the Electronic Cervical Range of Motion (CRO...
The study is to provide a critical analysis of the research literature on clinimetric properties of ...
Background: Assessment of cervical active range of motion (CAROM) in three planes was one of the pri...
Objective. The objectives were to show the feasibility of a wireless microelectromechanical system i...
Objective: The purpose of this study was to systematically review the literature evaluating the reli...
Context: Assessment of upper cervical range of motion (UCROM) and mobility is commonly performed in ...
15 pags., 2 figs., 5 tabs.We analyzed the inter-and intra-examiner reliability of Werium inertial se...
OBJECTIVE: The purpose of this study was to systematically review the literature evaluating the reli...
The purpose of this study was to verify the performance and suitability of new generation 3D wireles...