Use of Accelerometry for Long Term Monitoring of Stroke Patients
暂无分享,去创建一个
Vikash Gilja | John Hermiz | Alfredo Lucas | V. Gilja | Alfredo Lucas | John Hermiz | Jamie Labuzetta | Yevgeniy Arabadzhi | Navaz Karanjia | N. Karanjia | Jamie Labuzetta | Yevgeniy Arabadzhi
[1] B. Bhakta,et al. Measuring movement irregularity in the upper motor neurone syndrome using normalised average rectified jerk. , 2003, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[2] Marimuthu Palaniswami,et al. Motor recovery monitoring using acceleration measurements in post acute stroke patients , 2013, Biomedical engineering online.
[3] Corinna Cortes,et al. Support-Vector Networks , 1995, Machine Learning.
[4] JeongGil Ko,et al. Constructing a Bio-Signal Repository from an Intensive Care Unit for Effective Big-data Analysis: Poster Abstract , 2016, SenSys.
[5] D. A. Sierra,et al. Climbing/Descending Stairs Detection Using Inertial Sensors and Implementing PCA and a SVM Classifier , 2017 .
[6] J. Gracies,et al. Movement Smoothness Differentiates Voluntary from Parkinsonian Bradykinesia , 2015 .
[7] Jessica M Ketchum,et al. Sedation in adults receiving mechanical ventilation: physiological and comfort outcomes. , 2012, American journal of critical care : an official publication, American Association of Critical-Care Nurses.
[8] Omar Cauli,et al. A survey on sleep assessment methods , 2018, PeerJ.
[9] S. Berney,et al. A Physical Function Test for Use in the Intensive Care Unit: Validity, Responsiveness, and Predictive Utility of the Physical Function ICU Test (Scored) , 2013, Physical Therapy.
[10] S. Billinger,et al. Use of Accelerometers to Examine Sedentary Time on an Acute Stroke Unit , 2015, Journal of neurologic physical therapy : JNPT.
[11] Marybeth Brown,et al. Daniels and Worthingham's Muscle Testing : Techniques of Manual Examination and Performance Testing , 2013 .
[12] G. Bernard,et al. Long-term cognitive impairment after critical illness. , 2013, The New England journal of medicine.
[13] Chih-Jen Lin,et al. A Practical Guide to Support Vector Classication , 2008 .
[14] G. Bernard,et al. Long-term cognitive impairment after critical illness. , 2014, The New England journal of medicine.
[15] G. Albers,et al. Recombinant tissue-type plasminogen activator (Alteplase) for ischemic stroke 3 to 5 hours after symptom onset. The ATLANTIS Study: a randomized controlled trial. Alteplase Thrombolysis for Acute Noninterventional Therapy in Ischemic Stroke. , 1999, JAMA.
[16] Tina L Hurst,et al. Physical activity classification using the GENEA wrist-worn accelerometer. , 2012, Medicine and science in sports and exercise.
[17] Faicel Chamroukhi,et al. Physical Human Activity Recognition Using Wearable Sensors , 2015, Sensors.
[18] Erin R Hager,et al. Use of Accelerometry to Monitor Physical Activity in Critically Ill Subjects: A Systematic Review , 2015, Respiratory Care.
[19] Parisa Rashidi,et al. The Intelligent ICU Pilot Study: Using Artificial Intelligence Technology for Autonomous Patient Monitoring , 2018, ArXiv.
[20] G. Van den Berghe,et al. Clinical review: intensive care unit acquired weakness , 2015, Critical Care.
[21] J. Wardlaw,et al. Interobserver Agreement for the Bedside Clinical Assessment of Suspected Stroke , 2006, Stroke.
[22] Silvia Conforto,et al. SVM versus MAP on Accelerometer Data to Distinguish among Locomotor Activities Executed at Different Speeds , 2013, Comput. Math. Methods Medicine.
[23] H. Rodgers,et al. Accelerometer measurement of upper extremity movement after stroke: a systematic review of clinical studies , 2014, Journal of NeuroEngineering and Rehabilitation.
[24] Davide Anguita,et al. Human Activity Recognition on Smartphones Using a Multiclass Hardware-Friendly Support Vector Machine , 2012, IWAAL.
[25] Classifying Agitation in Sedated ICU Patients , 2010 .
[26] Marimuthu Palaniswami,et al. Motor recovery monitoring in post acute stroke patients using wireless accelerometer and cross-correlation , 2013, 2013 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC).
[27] Joel D Stitzel,et al. Detection of American Football Head Impacts Using Biomechanical Features and Support Vector Machine Classification , 2017, Scientific Reports.
[28] Lucia Melloni,et al. Patient-Specific Pose Estimation in Clinical Environments , 2018, IEEE Journal of Translational Engineering in Health and Medicine.
[29] K. Nugent,et al. Accelerometer-based devices can be used to monitor sedation/agitation in the intensive care unit. , 2014, Journal of critical care.
[30] Gaël Varoquaux,et al. Scikit-learn: Machine Learning in Python , 2011, J. Mach. Learn. Res..
[31] Pavel Brazdil,et al. Comparison of SVM and Some Older Classification Algorithms in Text Classification Tasks , 2006, IFIP AI.
[32] C. Gamaldo,et al. Adverse effects of sleep deprivation in the ICU. , 2008, Critical care clinics.
[33] Angelo M. Sabatini,et al. Machine Learning Methods for Classifying Human Physical Activity from On-Body Accelerometers , 2010, Sensors.
[34] Andrea Mannini,et al. Activity recognition using a single accelerometer placed at the wrist or ankle. , 2013, Medicine and science in sports and exercise.
[35] J. Verbunt,et al. Assessment of arm activity using triaxial accelerometry in patients with a stroke. , 2011, Archives of physical medicine and rehabilitation.
[36] M. Palaniswami,et al. Wireless Accelerometry is Feasible in Acute Monitoring of Upper Limb Motor Recovery after Ischemic Stroke , 2014, Cerebrovascular Diseases.
[37] Jeffrey M. Hausdorff,et al. SPARC: a new approach to quantifying gait smoothness in patients with Parkinson’s disease , 2018, Journal of NeuroEngineering and Rehabilitation.