筆圧履歴を用いた書字作業の身体負担評価
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| Published in | 日本機械学会論文集 Vol. 86; no. 887; p. 19-00416 |
|---|---|
| Main Authors | , , |
| Format | Journal Article |
| Language | Japanese |
| Published |
一般社団法人 日本機械学会
2020
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| Subjects | |
| Online Access | Get full text |
| ISSN | 2187-9761 |
| DOI | 10.1299/transjsme.19-00416 |
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| Author | 瀬尾, 明彦 倉元, 昭季 平内, 和樹 |
|---|---|
| Author_xml | – sequence: 1 fullname: 倉元, 昭季 organization: 東京都立大学システムデザイン学部 – sequence: 1 fullname: 平内, 和樹 organization: 東京都立大学大学院システムデザイン研究科 – sequence: 1 fullname: 瀬尾, 明彦 organization: 東京都立大学システムデザイン学部 |
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| References | Werremeyer, M. M. and Cole, K. J., Wrist action affects precision grip force, Journal of Neurophysiology, Vol.78, No.1 (1997), pp. 271–280. Hook, C., Kempf, J. and Scharfenberg, G., New pen device for biometrical 3D pressure analysis of handwritten characters, words and signatures, Proceedings of the 2003 ACM SIGMM workshop on Biometrics methods and applications (2003), pp. 38–44. Yokoyama, K., Tate, T., Fujimaki, G. and Ando, T., Evaluation of grip comfort with concavo-convex surface profile, The Japanese journal of ergonomics, Vol.52, No.4 (2016), pp. 165–171 (in Japanese). Hooke, A. W., Park, J. and Shim, J. K., The forces behind the words: development of the kinetic pen, Journal of biomechanics, Vol.41, No.9 (2008), pp. 2060–2064. Gatouillat, A., Dumortier, A., Perera, S., Badr, Y., Gehin, C. and Sejdic, E., Analysis of the pen pressure and grip force signal during basic drawing tasks: The timing and speed changes impact drawing characteristics, Computers in Biology and Medicine, Vol.87 (2017), pp. 124–131. Naider-Steinhart, S. and Katz-Leurer, M., Analysis of proximal and distal muscle activity during handwriting tasks, The American Journal of Occupational Therapy, Vol.61, No.4 (2007), pp. 392–398. Zheng, G., Shi, G., Luo, Y., Wong, H., Li, W. J., Leong, P. H. W. and Wong, M. Y., Towards an ubiquitous wireless digital writing instrument ssing MEMS motion sensing technology, In Proceedings of 2005 IEEE/ASME International Conference on Advanced Intelligent Mechatronics (2005), pp. 795–800. Chang, S. H., Chen, C. L. and Yu, N. Y., Biomechanical analyses of prolonged handwriting in subjects with and without perceived discomfort, Human movement science, Vol.43 (2015), pp. 1–8. Latash, M. L., Danion, F., Scholz, J. F., Zatsiorsky, V. M. and Schöner, G., Approaches to analysis of handwriting as a task of coordinating a redundant motor system, Human movement science, Vol.22, No.2 (2003), pp. 153–171. Mussa Ivaldi, F. A., Morasso, P. and Zaccaria, R., Kinematic networks: A distributed model for representing and regularizing motor redundancy, Biological Cybernetics, Vol.60 (1989), pp. 1-–16. Enomoto, S. and Matsuzaki, G., A Study on the characteristics of stationery products, BULLETIN OF JSSD, Vol.59 (2012), pp. 276–277. Lacquaniti, F., Ferrigno, G., Pedotti, A., Soechting, J. F. and Terzuolo, C., Changes in spatial scale in drawing and handwriting: kinematic contributions by proximal and distal joints, Journal of Neuroscience, Vol.7, No.3 (1987), pp. 819–828. Udo, H., Otani, T., Udo, A. and Yoshinaga, F., An electromyographic study of two different types of ballpoint pens-investigation of a one hour writing operation, Industrial Health, Vol.38, No.1 (2000), pp. 47-–56. Saran, V., Kumar, S., Nigam, K., Ahmed, S. and Fupta, A. K., Automated measuring tool for handwriting examination, International Journal Of Engineering And Computer Science, Vol.4, No.3 (2015), pp. 10964–10967. Thrun, S., Burgard, W. and Fox, D., Probabilistic robotics (Intelligent robotics and autonomous agents), Cambridge, MA, USA: MIT Press (2005). Shimizu, H., Kiyono, S., Motoki, T. and Gao, W., An electrical pen for signature verification using a two-dimensional optical angle sensor, Sensors and Actuators A: Physical, Vol.111, No.2-3 (2004), pp. 216–221. de Almeida, P. H. T. Q., da Cruz, D. M. C., Magna, L. A. and Ferrigno, I. S. V., An electromyographic analysis of two handwriting grasp patterns. Journal of Electromyography and Kinesiology, Vol.23, No.4 (2013), pp. 838-843. NOVITA, Frequent 4-character idiom learning print, available from <http://novita-study.com/790/>, (accessed on 27 January, 2019). Wang, J. S., Hsu, Y. L. and Chu, C. L., Online handwriting recognition using an accelerometer-based pen device, In proceedings of 2nd International Conference on Advances in Computer Science and Engineering (2013), pp. 229–232. Schomaker, L. R. B. and Plamondon, R., The relation between pen force and pen-point kinematics in handwriting, Biological Cybernetics, Vol.63, No.4 (1990), pp. 277–289. Wann, J. and Nimmo-Smith, I., The control of pen pressure in handwriting: A subtle point, Human movement science, Vol.10, No.2-3 (1991), pp. 233–246. Dounskaia, N., Van Gemmert, A. W. A. and Stelmach, G. E., Interjoint coordination during handwriting-like movements, Experimental Brain Research, Vol.135, No.1 (2000), pp. 127–140. |
| References_xml | – reference: Gatouillat, A., Dumortier, A., Perera, S., Badr, Y., Gehin, C. and Sejdic, E., Analysis of the pen pressure and grip force signal during basic drawing tasks: The timing and speed changes impact drawing characteristics, Computers in Biology and Medicine, Vol.87 (2017), pp. 124–131. – reference: Naider-Steinhart, S. and Katz-Leurer, M., Analysis of proximal and distal muscle activity during handwriting tasks, The American Journal of Occupational Therapy, Vol.61, No.4 (2007), pp. 392–398. – reference: Thrun, S., Burgard, W. and Fox, D., Probabilistic robotics (Intelligent robotics and autonomous agents), Cambridge, MA, USA: MIT Press (2005). – reference: Chang, S. H., Chen, C. L. and Yu, N. Y., Biomechanical analyses of prolonged handwriting in subjects with and without perceived discomfort, Human movement science, Vol.43 (2015), pp. 1–8. – reference: Werremeyer, M. M. and Cole, K. J., Wrist action affects precision grip force, Journal of Neurophysiology, Vol.78, No.1 (1997), pp. 271–280. – reference: Latash, M. L., Danion, F., Scholz, J. F., Zatsiorsky, V. M. and Schöner, G., Approaches to analysis of handwriting as a task of coordinating a redundant motor system, Human movement science, Vol.22, No.2 (2003), pp. 153–171. – reference: Udo, H., Otani, T., Udo, A. and Yoshinaga, F., An electromyographic study of two different types of ballpoint pens-investigation of a one hour writing operation, Industrial Health, Vol.38, No.1 (2000), pp. 47-–56. – reference: Wang, J. S., Hsu, Y. L. and Chu, C. L., Online handwriting recognition using an accelerometer-based pen device, In proceedings of 2nd International Conference on Advances in Computer Science and Engineering (2013), pp. 229–232. – reference: Mussa Ivaldi, F. A., Morasso, P. and Zaccaria, R., Kinematic networks: A distributed model for representing and regularizing motor redundancy, Biological Cybernetics, Vol.60 (1989), pp. 1-–16. – reference: Hook, C., Kempf, J. and Scharfenberg, G., New pen device for biometrical 3D pressure analysis of handwritten characters, words and signatures, Proceedings of the 2003 ACM SIGMM workshop on Biometrics methods and applications (2003), pp. 38–44. – reference: Saran, V., Kumar, S., Nigam, K., Ahmed, S. and Fupta, A. K., Automated measuring tool for handwriting examination, International Journal Of Engineering And Computer Science, Vol.4, No.3 (2015), pp. 10964–10967. – reference: Wann, J. and Nimmo-Smith, I., The control of pen pressure in handwriting: A subtle point, Human movement science, Vol.10, No.2-3 (1991), pp. 233–246. – reference: Dounskaia, N., Van Gemmert, A. W. A. and Stelmach, G. E., Interjoint coordination during handwriting-like movements, Experimental Brain Research, Vol.135, No.1 (2000), pp. 127–140. – reference: Lacquaniti, F., Ferrigno, G., Pedotti, A., Soechting, J. F. and Terzuolo, C., Changes in spatial scale in drawing and handwriting: kinematic contributions by proximal and distal joints, Journal of Neuroscience, Vol.7, No.3 (1987), pp. 819–828. – reference: Schomaker, L. R. B. and Plamondon, R., The relation between pen force and pen-point kinematics in handwriting, Biological Cybernetics, Vol.63, No.4 (1990), pp. 277–289. – reference: Yokoyama, K., Tate, T., Fujimaki, G. and Ando, T., Evaluation of grip comfort with concavo-convex surface profile, The Japanese journal of ergonomics, Vol.52, No.4 (2016), pp. 165–171 (in Japanese). – reference: Hooke, A. W., Park, J. and Shim, J. K., The forces behind the words: development of the kinetic pen, Journal of biomechanics, Vol.41, No.9 (2008), pp. 2060–2064. – reference: de Almeida, P. H. T. Q., da Cruz, D. M. C., Magna, L. A. and Ferrigno, I. S. V., An electromyographic analysis of two handwriting grasp patterns. Journal of Electromyography and Kinesiology, Vol.23, No.4 (2013), pp. 838-843. – reference: Shimizu, H., Kiyono, S., Motoki, T. and Gao, W., An electrical pen for signature verification using a two-dimensional optical angle sensor, Sensors and Actuators A: Physical, Vol.111, No.2-3 (2004), pp. 216–221. – reference: Enomoto, S. and Matsuzaki, G., A Study on the characteristics of stationery products, BULLETIN OF JSSD, Vol.59 (2012), pp. 276–277. – reference: NOVITA, Frequent 4-character idiom learning print, available from <http://novita-study.com/790/>, (accessed on 27 January, 2019). – reference: Zheng, G., Shi, G., Luo, Y., Wong, H., Li, W. J., Leong, P. H. W. and Wong, M. Y., Towards an ubiquitous wireless digital writing instrument ssing MEMS motion sensing technology, In Proceedings of 2005 IEEE/ASME International Conference on Advanced Intelligent Mechatronics (2005), pp. 795–800. |
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| SubjectTerms | 6DoF force and torque sensor Binary Bayes Filter Four character idiom Handwriting Impulse Pen pressure Physical workload |
| Title | 筆圧履歴を用いた書字作業の身体負担評価 |
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