[1] ? Lightglove.
[ http ]
[2] D. G. Alden, R. W. Daniels, and A. F. Kanarick. Keyboard Design and Operation: A Review of the Major Issues. Human Factors, 14(4):275-293, 1972.
[3] Avaion, Inc. FatFinger, 2001.
[ http ]
[4] C. H. Blinkenstorfer. Graffiti. Pen Computing, pages 30-31, January 1995.
[5] D. A. Bowman. Design and evaluation of text input techniques for VEs; ongoing research effort at 3DI Group, Virginia Tech.
[6] I. Canesta. Electronic perception technology, 2002.
[ http ]
[7] Chicagologic. Delta II.
[ http ]
[8] CTD Resource Network, Inc. Typing injury faq.
[ .html ]
[9] W. H. Cushman. Data entry performance and operator preferences for various keyboard heights. Ergonomics and Health in Modern Offices, pages 495-504, 1984.
[10] K. W. Daniel. Murphy Was a Captioner.
[ .html ]
[11] DataHand Systems, Inc. Datahand ergonomic keyboards.
[ .html ]
[12] David J. Ward and Alan F. Blackwell and David J. C. MacKay. Dasher - a Data Entry Interface Using Continuous Gestures and Language Models. In UIST, 2000.
[ http ]
[13] J. R. Davis. Let Your Fingers do the Spelling: Implicit disambiguation of words spelled with the telephone keypad. Avios Journal, 9:57-66, March 1991.
[14] M. C. Detweiler, R. M. Schumacher, and N. L. Gattuso. Alphabetic Input on a Telephone Keypad. In Proc. of the Human Factors Society 34th Annual Meeting, pages 212-216, 1990.
[15] DSI Datotech Systems Inc. Multi-Point Touchpad.
[ http ]
[16] A. Dvorak. Typewriter Keyboard, 1936.
[17] A. Dvorak. There is a Better Typewriter Keyboard. National Business Education Quarterly, 1943. 11, 51-58, 66.
[18] K. EA. Rationalisierung der Schreibmaschine und ihrer Bedienung. Springer Verlag, Berlin, 1926.
[19] F. Evans, S. Skiena, and A. Varshney. VType: Entering Text in a Virtual World. In submitted to International Journal of Human-Computer Studies, 1999.
[20] I. FingerWorks. TouchStream.
[ http ]
[21] I. O. for Standardization. Ergonomic requirements for office work with visual display terminals (vdts) - part 4: Keyboard requirements, 1998.
[ http ]
[22] M. Fukumoto and Y. Tonomura. Body Coupled FingeRing: Wireless Wearable Keyboard. In ACM CHI, 1997.
[23] M. Fukumoto and Y. Tonomura. Whisper: A Wristwatch-Style Wearable Handset. In Proc. of the ACM CHI, pages 112-119, May 1999.
[24] M. Goldstein and D. Chincholle. Finger-Joint Gesture Wearable Keypad. In Second Workshop on Human Computer Interaction with Mobile Devices, August 1999.
[25] G. Grimes. Digital Data Entry Glove Interface Device, 1983. US Patent number 4,414,537.
[26] S. Hastings, C. Brace, R. Haslam, and V. Woods. An investigation of the use of support appliances for use with computer input devices. In Proc. Premus 2001, Fourth International Scientific Conference on Prevention of Work-Related Musculoskeletal Disorders, page 194, 2001.
[27] B. Howard. Lightglove, 2002.
[ http ]
[28] P. Isokoski. Model for unistroke writing time. In Proc. of the SIGCHI conference on Human factors in computing systems, pages 357-364. ACM Press, 2001.
[29] P. Isokoski and M. Käki. Comparison of two touchpad-based methods for numeric entry. In Proc. of the SIGCHI conference on Human factors in computing systems, pages 25-32. ACM Press, 2002.
[30] C. L. James and K. M. Reishcel. Text input for mobile devices: comparing model prediction to actual performance. In Proc. of the SIGCHI conference on Human factors in computing systems, pages 365-371. ACM Press, 2001.
[31] L. E. James. Processor-assisted communication system using tone-generating telephones, March 1987.
[32] R. Kinkead. Typing speed, keying rates, and optimal keyboard layouts. In Proc. of the 19th Annual Meeting of the Human Factors Society, pages 159-161. Human Factors Society, 1975.
[33] K. C. Knowlton. Method and apparatus for using pushbutton telephone keys for generation of alpha-numeric information, June 1976.
[34] G. V. Kondraske. Character pattern recognition and communications apparatus, June 1987.
[35] K. H. Kroemer. Human engineering the keyboard. Human Factors, 14(1):51-63, 1972.
[36] S. Lee, W. Buxton, and K. Smith. A Multi-Touch Three Dimensional Touch-Sensitive Tablet. In Proc. of the ACM Conference on Human Factors in Computing Systems, pages 21-27, 1985.
[37] S. J. Liebowitz and S. E. Margolis. The Fable of the Keys. Journal of Law & Economics, XXXIII, April 1990.
[38] T. Läubli, A. Fleischer, and H. Krüger. Gestaltung von bildschirmarbeit, 1989.
Keywords: Forschungsergebnisse für die Praxis - Bildschirmarbeitsplätze
[39] I. S. MacKenzie and R. W. Soukoreff. A Model of Two-Thumb Text Entry. In Proc. of Graphics Interface, pages 117-124, 2002.
[40] I. S. MacKenzie and R. W. Soukoreff. Text Entry for Mobile Computing: Models and Methods, Theory and Practice. In Human-Computer Interaction, 2002.
[ .html ]
[41] I. S. MacKenzie and S. X. Zhang. The Design and Evaluation of a High-Performance Soft Keyboard. In Proc. of CHI: ACM Conference on Human Factors in Computing Systems, pages 25-31, 1999.
[42] J. Mankoff and G. D. Abowd. Cirrin: A Word-Level Unistroke Keyboard for Pen Input. In ACM Symposium on User Interface Software and Technology, pages 213-214, 1998.
[ .html ]
[43] T. Masui. An efficient text input method for pen-based computers. In Conference proceedings on Human factors in computing systems, pages 328-335. ACM, 1998.
[44] T. Masui. Pobox: An efficient text input method for handheld and ubiquitous computers. Lecture Notes in Computer Science - Handheld and Ubiquitous Computing, 1707:289-300, 1999.
[45] R. P. McCarty. Keyglove.
[ .html ]
[46] Mehring. The Kitty Project.
[ http ]
[47] C. Mehring.
[48] T. Muss and A. Hedge. Effects of a Vertical-Split Keyboard on Posture, Comfort and Performance.
[ .html ]
[49] A. J. F. Natoli. Virtual reality keyboard system and method, May 1998.
[50] D. A. Norman and D. Fisher. Why Alphabetic Keyboards Are Not Easy to Use: Keyboard Layout Doesn't Much Matter. Human Factors, 24(5):509-519, 1982.
[51] J. Noyes. The QWERTY Keyboard: A Review. Int. J. Man-Machine Studies, 18:265-281, 1983.
[52] K. Perlin. Quikwriting: Continuous Stylus-based Text Entry. In ACM Symposium on User Interface Software and Technology, 1998.
[53] S. Plant. On The Mobile.
[ http ]
[54] V. R. Pratt. Thumbcode: A Device-Independent Digital Sign Language.
[ http ]
[55] J. H. Rebollar. Acceleglove.
[56] B. N. Riskin. Method and apparatus for identifying words entered on DTMF pushbuttons, July 1991.
[57] W. Rohmert and E. Haider. Leitregeln und Handbuch zur ergonomischen Gestaltung von Tastaturen. Institut für Arbeitswissenschaft, TH Darmstadt, 1981.
[58] R. Rosenberg. Computing without Mice and Keyboards: Text and Graphic Input Devices for Mobile Computing. PhD thesis, Dept. of Computer Science, University College, London, 1998.
[59] Samsung. Scurry.
[60] Senseboard. Virtual keyboard.
[ http ]
[61] C. E. Shannon. A Mathematical Theory of Communication. Bell System Technical Journal, 27(10):379-423, 623-656, October 1948.
[62] C. E. Shannon. Prediction and Entropy of Printed English. Bell System Technical Journal, 30:51-64, 1951.
[63] M. Silfverberg, I. S. MacKenzie, and P. Korhonen. Predicting Text Entry Speeds on Mobile Phones. In Proc. of the ACM Conference on Human Factors in Computing Systems, CHI, pages 9-16, 2000.
[64] T. solutions. Fitaly one-finger keyboard.
[ http ]
[65] Tegic Communications. T9 Text Input.
[ http ]
[66] C. Tomasi, A. Rafii, and I. Torunoglu. Full-Size Projection Keyboard for Handheld Devices. Communications of the ACM, 46(7):70-75, July 2003.
[67] I. Virtual Devices. VKey.
[ http ]
[68] VKB Ltd. Virtual Keyboard, 2002.
[ http ]
[69] M. Wienecke, G. A. Fink, and G. Sagerer. A Handwriting Recognition System Based on Visual Input. In 2nd International Workshop on Computer Vision Systems, pages 63-72, 2001.
[70] Xrgomics. tengo.
[ http ]
[71] S. Zhai, M. Hunter, and B. A. Smith. The Metropolis Keyboard - An Exploration of Quantitative Techniques for Virtual Keyboard Design. In UIST, 2000.
[72] S. Zhai, A. Sue, and J. Accot. Movement model, hits distribution and learning in virtual keyboarding. In Proc. of the SIGCHI conference on Human factors in computing systems, pages 17-24. ACM Press, 2002.
[73] T. Zimmerman and J. Lanier. Computer Data Entry and Manipulation Apparatus and Method, 1991. US Patent number 4,988,981.

This file has been generated by bibtex2html 1.78