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Erschienen in: Journal of Medical Systems 10/2016

01.10.2016

Hands Free Automatic Clinical Care Documentation: Opportunities for Motion Sensors and Cameras

verfasst von: Daniel Fabbri, Jesse M. Ehrenfeld

Erschienen in: Journal of Medical Systems | Ausgabe 10/2016

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Excerpt

Electronic care documentation continues to represent a significant time expense in many clinical environments. The fundamental challenge centers around the need to either (i) pause from the provision of care to document clinical activities, or (ii) document care after the encounter. This serial workflow prevents simultaneous care and documentation, which can result in extensive physician frustration, errors in documentation and clinical errors. As a result, medical scribes are increasingly being used in high throughput clinical areas to reduce the documentation burden on clinicians. However, the addition of personnel to create documentation is resource intensive. …
Literatur
1.
Zurück zum Zitat Strauss, D.G., Sprague, P.Q., Underhill, K., Maynard, C., Adams, G.L., Kessenich, A., Sketch Jr., M.H., Berger, P.B., Marcozzi, D., Granger, C.B., and Wagner, G.S., Paramedic transtelephonic communication to cardiologist of clinical and electrocardiographic assessment for rapid reperfusion of ST-elevation myocardial infarction. J. Electrocardiol. 40:265–270, 2007.CrossRefPubMed Strauss, D.G., Sprague, P.Q., Underhill, K., Maynard, C., Adams, G.L., Kessenich, A., Sketch Jr., M.H., Berger, P.B., Marcozzi, D., Granger, C.B., and Wagner, G.S., Paramedic transtelephonic communication to cardiologist of clinical and electrocardiographic assessment for rapid reperfusion of ST-elevation myocardial infarction. J. Electrocardiol. 40:265–270, 2007.CrossRefPubMed
2.
Zurück zum Zitat Thompson, S.J., and Schriver, J.A., A survey of prehospital care paramedic/physician communication for Multnomah County (Portland), Oregon. J. Emerg. Med. 1:421–428, 1984.CrossRefPubMed Thompson, S.J., and Schriver, J.A., A survey of prehospital care paramedic/physician communication for Multnomah County (Portland), Oregon. J. Emerg. Med. 1:421–428, 1984.CrossRefPubMed
3.
Zurück zum Zitat McGarry, A.B., Mott, J.C., and Kotwal, R.S., A study of prehospital medical documentation by military medical providers during precombat training. J. Spec. Oper. Med. 15:79–84, 2015.PubMed McGarry, A.B., Mott, J.C., and Kotwal, R.S., A study of prehospital medical documentation by military medical providers during precombat training. J. Spec. Oper. Med. 15:79–84, 2015.PubMed
4.
Zurück zum Zitat Rosenbloom, S.T., Stead, W.W., Denny, J.C., Giuse, D., Lorenzi, N.M., Brown, S.H., and Johnson, K.B., Generating clinical notes for electronic health record systems. Appl. Clin. Inform. 1:232–243, 2010.CrossRefPubMedPubMedCentral Rosenbloom, S.T., Stead, W.W., Denny, J.C., Giuse, D., Lorenzi, N.M., Brown, S.H., and Johnson, K.B., Generating clinical notes for electronic health record systems. Appl. Clin. Inform. 1:232–243, 2010.CrossRefPubMedPubMedCentral
5.
Zurück zum Zitat Nguyen, H.P., Ayachi, F., Lavigne-Pelletier, C., Blamoutier, M., Rahimi, F., Boissy, P., Jog, M., and Duval, C., Auto detection and segmentation of physical activities during a Timed-Up-and-Go (TUG) task in healthy older adults using multiple inertial sensors. J. Neuroeng. Rehabil. 12:36, 2015.CrossRefPubMedPubMedCentral Nguyen, H.P., Ayachi, F., Lavigne-Pelletier, C., Blamoutier, M., Rahimi, F., Boissy, P., Jog, M., and Duval, C., Auto detection and segmentation of physical activities during a Timed-Up-and-Go (TUG) task in healthy older adults using multiple inertial sensors. J. Neuroeng. Rehabil. 12:36, 2015.CrossRefPubMedPubMedCentral
6.
Zurück zum Zitat Chandler, J.L., Brazendale, K., Beets, M.W., and Mealing, B.A., Classification of physical activity intensities using a wrist-worn accelerometer in 8-12-year-old children. Pediatr. Obes. 11:120–127, 2016.CrossRefPubMed Chandler, J.L., Brazendale, K., Beets, M.W., and Mealing, B.A., Classification of physical activity intensities using a wrist-worn accelerometer in 8-12-year-old children. Pediatr. Obes. 11:120–127, 2016.CrossRefPubMed
7.
Zurück zum Zitat Amireault, S., Godin, G., Lacombe, J., and Sabiston, C.M., Validation of the Godin-Shephard leisure-time physical activity questionnaire classification coding system using accelerometer assessment among breast cancer survivors. J. Cancer Surviv. 9:532–540, 2015.CrossRefPubMed Amireault, S., Godin, G., Lacombe, J., and Sabiston, C.M., Validation of the Godin-Shephard leisure-time physical activity questionnaire classification coding system using accelerometer assessment among breast cancer survivors. J. Cancer Surviv. 9:532–540, 2015.CrossRefPubMed
8.
Zurück zum Zitat Hikihara, Y., Tanaka, C., Oshima, Y., Ohkawara, K., Ishikawa-Takata, K., and Tanaka, S., Prediction models discriminating between nonlocomotive and locomotive activities in children using a triaxial accelerometer with a gravity-removal physical activity classification algorithm. PLoS One. 9, 2014. Hikihara, Y., Tanaka, C., Oshima, Y., Ohkawara, K., Ishikawa-Takata, K., and Tanaka, S., Prediction models discriminating between nonlocomotive and locomotive activities in children using a triaxial accelerometer with a gravity-removal physical activity classification algorithm. PLoS One. 9, 2014.
9.
Zurück zum Zitat Zhang, S.Y., Rowlands, A.V., Murray, P., and Hurst, T.L., Physical activity classification using the GENEA wrist-worn accelerometer. Med. Sci. Sports Exerc. 44:742–748, 2012.CrossRefPubMed Zhang, S.Y., Rowlands, A.V., Murray, P., and Hurst, T.L., Physical activity classification using the GENEA wrist-worn accelerometer. Med. Sci. Sports Exerc. 44:742–748, 2012.CrossRefPubMed
10.
Zurück zum Zitat Godfrey, A., Bourke, A.K., Olaighin, G.M., van de Ven, P., and Nelson, J., Activity classification using a single chest mounted tri-axial accelerometer. Med. Eng. Phys. 33:1127–1135, 2011.CrossRefPubMed Godfrey, A., Bourke, A.K., Olaighin, G.M., van de Ven, P., and Nelson, J., Activity classification using a single chest mounted tri-axial accelerometer. Med. Eng. Phys. 33:1127–1135, 2011.CrossRefPubMed
11.
Zurück zum Zitat Ling, Y., Automatic human daily activity segmentation applying smart sensing technology. Int. J. Smart Sens. Intell. Syst. 8:1624–1640, 2015. Ling, Y., Automatic human daily activity segmentation applying smart sensing technology. Int. J. Smart Sens. Intell. Syst. 8:1624–1640, 2015.
12.
Zurück zum Zitat Lampe, J.W., Trasolini, N., Diallo, S., and Becker, L.B., Using Accelerometers To Track Chest Wall Motion During CPR. Circulation. 2010. Lampe, J.W., Trasolini, N., Diallo, S., and Becker, L.B., Using Accelerometers To Track Chest Wall Motion During CPR. Circulation. 2010.
Metadaten
Titel
Hands Free Automatic Clinical Care Documentation: Opportunities for Motion Sensors and Cameras
verfasst von
Daniel Fabbri
Jesse M. Ehrenfeld
Publikationsdatum
01.10.2016
Verlag
Springer US
Erschienen in
Journal of Medical Systems / Ausgabe 10/2016
Print ISSN: 0148-5598
Elektronische ISSN: 1573-689X
DOI
https://doi.org/10.1007/s10916-016-0570-x

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