Have a personal or library account? Click to login

Can stretch sensors measure knee range of motion in healthy adults?

Open Access
|Jan 2019

References

  1. 1. Allseits E., Kim K.J., Bennett C., Gailey R., Gaunaurd I., Agrawal V. (2018) A novel method for estimating knee angle using two leg-mounted gyroscopes for continuous monitoring with mobile health devices. Sensors (Basel), 18(9): 1-17.10.3390/s18092759616398330135360
  2. 2. Amis A.A., Senavongse W., Bull A.M. (2006) Patel­lofemoral kinematics during knee flexion-extension: an in vitro study. J. Orthop. Res., 24(12): 2201-2211.10.1002/jor.2026817004269
  3. 3. Austin M.S., Ghanem E., Joshi A., Trappler R., Parvi­zi J., Hozack W.J. (2008) The assessment of intraopera­tive prosthetic knee range of motion using two methods. J. Arthroplasty., 23(4): 515-521.10.1016/j.arth.2007.12.01118514867
  4. 4. Bennett D., Hanratty B., Thompson N., Beverland D. (2009) Measurement of knee joint motion using digital imaging. Int. Orthop., 33(6): 1627-1631.10.1007/s00264-008-0694-9289915619037641
  5. 5. Bergmann J.H., Smith I.C., Mayagoitia R.E. (2012) Us­ing a body sensor network to measure the effect of fa­tigue on stair climbing performance. Physiol. Meas., 33(2): 287-296.10.1088/0967-3334/33/2/28722273819
  6. 6. Bergmann J.H., Anastasova-Ivanova S., Spulber I., Gu­lati V., Georgiou P., McGregor A. (2013) An attachable clothing sensor system for measuring knee joint angles. IEEE Sens. J., 13(10): 4090-4097.10.1109/JSEN.2013.2277697
  7. 7. Brosseau L., Tousignant M., Budd J., ChartierźN., Duciaume L., Plamondon S., O’Sullivan J.P., O’Donoghue S., Balmer S. (1997) Intratester and inter­tester reliability and criterion validity of the parallelo­gram and universalgoniometers for active knee flexion in healthy subjects. Physiother. Res. Int., 2(3): 150-166.10.1002/pri.979421820
  8. 8. Chiang C.Y., Chen K.H., Liu K.C., Hsu S.J., Chan C.T. (2017) Data collection and analysis using wearable sen­sors for monitoring knee range of motion after total knee arthroplasty. Sensors (Basel), 17(2): 1-14.10.3390/s17020418
  9. 9. Cleffken B., van Breukelen G., Brink P., van Mamer­en H., Olde Damink S. (2007) Digital goniometric meas­urement of knee joint motion. Evaluation of usefulness for research settings and clinical practice. Knee, 14(5): 385-389.10.1016/j.knee.2007.07.004
  10. 10. Cronin J., Nash M., Whatman C. (2006) Assessing dy­namic knee joint range of motion using siliconcoach. Phys. Ther. Sport., 7(4): 191-194.10.1016/j.ptsp.2006.07.00321663831
  11. 11. Drouin J.L., McAlpine C.T., Primak K. A., Kissel J. (2013) The effects of kinesiotape on athletic-based per­formance outcomes in healthy, active individuals: a liter­ature synthesis. J. Can. Chiropr. Assoc., 57(4): 356-365.
  12. 12. Edwards J.Z., Greene K.A., Davis R.S., (2004) Kovacik M. W., Noe D. A., Askew M. J. Measuring flexion in knee arthroplasty patients. J. Arthroplasty., 19(3): 369-372.10.1016/j.arth.2003.12.001
  13. 13. Feldhege F., Mau-Moeller A., Lindner T., Hein A., Mark­schies A., Zettl U.K., Bader R. (2015) Accuracy of a cus­tom physical activity and knee angle measurement sen­sor system for patients with neuromuscular disorders and gait abnormalities. Sensors (Basel), 15(5): 10734-10752.10.3390/s150510734448200325954954
  14. 14. Herrmann D.B. (1990) Validity study of head and neck flexion-extension motion comparing measurements of a pendulum goniometer and roentgenograms. J. Orthop. Sports. Phys. Ther., 11(9): 414-418.10.2519/jospt.1990.11.9.41418787272
  15. 15. Hirata I., Nakamoto H., Ootaka H., Tada M. (2015) The flexible interface ssing a stretch sensor. Procedia Manuf., 3: 845-849.10.1016/j.promfg.2015.07.340
  16. 16. Huang B., Li M., Mei T., McCoul D., Qin S., Zhao Z., Zhao J. (2017) Wearable stretch sensors for motion meas­urement of the wrist joint based on dielectric elastomers. Sensors (Basel), 17: 1-12.10.3390/s17122708575173629168775
  17. 17. Kumar Y., Yen S.C., Tay A., Lee W., Gao F., Zhao Z., Li J., Hon B., Tian-Ma Xu T., Cheong A., Koh K., Ng Y.S., Chew E., Koh G. (2015) Wireless wearable range-of-motion sensor system for upper and lower ex­tremity joints: a validation study. Healthc. Technol. Lett., 2(1): 12-17.10.1049/htl.2014.0100461389426609398
  18. 18. Naylor J.M., Ko V., Adie S., Gaskin C., Walker R., Har­ris I.A., Mittal R. (2011) Validity and reliability of us­ing photography for measuring knee range of motion: a methodological study. BMC Musculoskelet. Disord., 12(77): 1-10.10.1186/1471-2474-12-77
  19. 19. Papi E., Bo Y.N., McGregor A.H. (2018) A flexible wear­able sensor for knee flexion assessment during gait. Gait Posture, 62: 480-483.10.1016/j.gaitpost.2018.04.015598099629674288
  20. 20. Peters P.G., Herbenick M.A., Anloague P.A., Mark­ert R.J., Rubino L.J. (2011) Knee range of motion: reli­ability and agreement of 3 measurement methods. Am. J. Orthop., 40(12): 249-252.
  21. 21. Phillips A., Goubran A., Naim S., Searle D., Mandalia V., Toms A. (2012) Reliability of radiographic measure­ments of knee motion following knee arthroplasty for use in a virtual knee clinic. Ann. R. Coll. Surg. Engl., 94(7): 506-512.10.1308/003588412X13373405385575395424823031771
  22. 22. Saggio G., Quitadamo L.R., Albero L. (2014) Develop­ment and evaluation of a novel low-cost sensor-based knee flexion angle measurement system. Knee, 21(5): 896-901.10.1016/j.knee.2014.04.01425022838
  23. 23. Tajali S.B., MacDermid J.C., Grewal R., Young C. (2016) Reliability and validity of electro-goniometric range of motion measurements in patients with hand and wrist limitations. Open Orthop. J., 10: 190-205.10.2174/1874325001610010190
  24. 24. Tognetti A., Lorussi F., Carbonaro N., de Rossi D. (2015) Wearable goniometer and accelerometer sensory fusion for knee joint angle measurement in daily life. Sensors (Basel), 15(11): 28435-28455.10.3390/s151128435470128826569249
  25. 25. Unver B., Karatosun V., Bakirhan S. (2009) Reliability of goniometric measurements of flexion in total knee arthroplasty patients: with special reference to the body position. J. Phys. Ther. Sci., 21(3): 257-262.10.1589/jpts.21.257
  26. 26. Wilken J.M., Rodriguez K.M., Brawner M., Darter B.J. (2012) Reliability and minimal detectible change values for gait kinematics and kinetics in healthy adults. Gait Posture, 35(2) 301-307.10.1016/j.gaitpost.2011.09.10522041096
  27. 27. Wood L., Peat G., Wilkie R., Hay E., Thomas E., Sim J. (2006) A study of the noninstrumented physical examina­tion of the knee found high observer variability. J. Clin. Epidemiol., 59(5): 512-520.10.1016/j.jclinepi.2005.11.00416632140
Language: English
Page range: 1 - 8
Submitted on: Sep 7, 2018
Accepted on: Jan 4, 2019
Published on: Jan 18, 2019
Published by: University of Physical Education in Warsaw
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2019 Somruthai Poomsalood, Karthik Muthumayandi, Karen Hambly, published by University of Physical Education in Warsaw
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.