sensor 3d accelerometer opal (APDM Wearable Technologies)
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Sensor 3d Accelerometer Opal, supplied by APDM Wearable Technologies, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/accelerometer+opal+sensor/accelerometer+opal+sensor/pmc11156937-297-34-46
Average 90 stars, based on 1 article reviews
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other:Article Title: The Validity, Reliability, and Sensitivity of a Smartphone-Based Seated Postural Control Assessment in Wheelchair Users: A Pilot Study Article Snippet: Following these tests, participants completed a series of unsupported seated balance tasks on a flat surface while holding a smartphone (Samsung Galaxy S6, Samsung, Seoul, South Korea) with a research-grade accelerometer affixed to the back with double-sided tape in a standardized position and Article Title: Smartphone accelerometry to assess postural control in individuals with multiple sclerosis. Article Snippet: Background: Falls are a major health concern for people with Multiple Sclerosis (pwMS), and impaired postural control is an important predictor of falls.. Lab-based technology to measure posture is precise but expensive, and clinical tests may not capture underlying impairments.. An alternative solution is to leverage smartphone accelerometry as it is affordable, ubiquitous, and portable. Article Title: Accelerometric Assessment of Postural Balance in Children: A Systematic Review Article Snippet: Accelerometer used , Inertial measurement units MIMUs, Article Title: Integrated linear and nonlinear trunk dynamics identify residual concussion deficits. Article Snippet: Postural sway is significantly affected by a mild traumatic brain injury, or concussion, and myriad methods have been developed to quantify the severity of concussion symptoms.. The current manuscript quantifies postural sway—as measured by an inertial sensor—in youth athletes with concussion (n=43, age=14.4±2.3 years, 56% female, tested median 7 days post-concussion) and healthy controls (n=38, age=14.9±2.0 years, 55% female) during single-task and dual-task Jo ur n l P -p ro of Sampling:Article Title: Methodological Critique of Concussive and Non-Concussive Dual Task Walking Assessments: A Scoping Review Article Snippet: Chen et al. (2015) [ ] , Eight camera motion capture (Motion Analysis Corporation, Santa Rosa, CA, USA). 25 retroreflective markers on bony landmarks. Data collected at 60 Hz; marker trajectory data low-pass-filtered using a fourth-order Butterworth filter with the cut off frequency set at 8 Hz. OrthoTrak software (Motion Analysis Corporation) calculated joint angles and gait temporal-distance variables. , Joint angles in sagittal: angular velocities estimated for each joint using the generalized cross-validation spline algorithm. Angular displacements and velocities normalised: phase plots. Data from five trials collected for each testing condition. , None. .. Howell et al. (2015) [ ] , Ten camera motion analysis system (Motion Analysis Corporation, Santa Rosa, CA, USA) at a sampling rate of 60 Hz. Retroreflective markers on bony landmarks. Marker:Article Title: Methodological Critique of Concussive and Non-Concussive Dual Task Walking Assessments: A Scoping Review Article Snippet: Chen et al. (2015) [ ] , Eight camera motion capture (Motion Analysis Corporation, Santa Rosa, CA, USA). 25 retroreflective markers on bony landmarks. Data collected at 60 Hz; marker trajectory data low-pass-filtered using a fourth-order Butterworth filter with the cut off frequency set at 8 Hz. OrthoTrak software (Motion Analysis Corporation) calculated joint angles and gait temporal-distance variables. , Joint angles in sagittal: angular velocities estimated for each joint using the generalized cross-validation spline algorithm. Angular displacements and velocities normalised: phase plots. Data from five trials collected for each testing condition. , None. .. Howell et al. (2015) [ ] , Ten camera motion analysis system (Motion Analysis Corporation, Santa Rosa, CA, USA) at a sampling rate of 60 Hz. Retroreflective markers on bony landmarks. |
