• Non ci sono risultati.

2) R. Johansson: “Tactile Sensory coding in the glabrous skin of the human hand”, Trends in Neurosciences, vol.6, num.1, pp.27-32 (1983)

N/A
N/A
Protected

Academic year: 2021

Condividi "2) R. Johansson: “Tactile Sensory coding in the glabrous skin of the human hand”, Trends in Neurosciences, vol.6, num.1, pp.27-32 (1983) "

Copied!
5
0
0

Testo completo

(1)

Bibliografia

1) C. Casella, V. Taglietti: “Principi di fisiologia, Volume II”, Edizione La Goliardica Pavese (1996)

2) R. Johansson: “Tactile Sensory coding in the glabrous skin of the human hand”, Trends in Neurosciences, vol.6, num.1, pp.27-32 (1983)

3) G.A. Gescheider, J.M. Thorpe, J. Bolanowski: “The effects of skin temperature on the detection and discrimination of tactile stimulation”, Somatosensory & Motor Research, vol.14, num.3, pp.181-188 (1997)

4) W. Schroeder, K. Martin, B. Lorensen: “The Visualization Toolkit”. Prentice Hall, Upper Saddle River, NJ (1998)

5) T. Munzner: “Interactive visualization of large graphs and networks”. PhD thesis, Staford University (2000)

6) C.G. Healey: “Effective visualization of large multidimensional datasets”. PhD thesis, University of British Columbia (1996)

7) C.G. Healey, K.S. Booth, J.T. Enns: “Visualizing real-time multivariate data using preattentive processing”. ACM Transaction on Modelling and Computer Simulation, 5(3):190-221 (1995)

8) K.O. Johnson, T. Yoshima, F. Vega-Bermudez. J.Clin.Nuerophysiol. n.17, pp.539-558 (2000)

9) G. Robles-De-La-Torre, V. Hayward. Nature num.412, pp.445-448

10) S.R. Geiger: “Handbook of Physiology: The Nervous System”. American Physiological Society (1984)

11) E. Nunziata, C.A. Perez, E. Jarmul, L. Lipetz, H. Weed: “Effect of tactile stimulation pulse characteristics on sensation threshold and power consuption”. Ann. Biomed. Eng., num.17, pp.423-435 (1989)

12) C.A. Perez, P. Munoz: “Optimization of the power targeted to the frequency region of maximum tactile sensitivity”. Med. Prog. Technol., num.21, pp.67-76 (1995)

13) C.A. Perez, C.A. Holzmann, H.E. Jaeschke: “Two-point vibrotactile discrimination related to parameters of pulse burst stimulus”. Med. Biol. Eng. Comput., num.38, pp. 74-79 (2000) 14) S. Brewster, L.M.Brown: “Tactons: Structured Tactile Messages for Non-Visual

Information Display”. Proc. 5

th

Australasian User Interface Conference (AUIC2004), Dunedin, pp.15-23 (2004)

15) N. Sadato, T. Okada, K. Kubota: “Tactile discrimination activates the visual cortex of recently blind naive to Braille: a functional magnetic resonance imaging study in humans”.

Neuroscience letters, num.356, pp.49-52

(2)

16) T. Ikeda: “Fundamentals of piezoelectricity”. Oxford University Press (1990) 17) J. Moulson, J.M. Herbert: “Electroceramics”. Chapmann and Hall, London (1990) 18) G. H. Heartling: “Ceramics materials for electronics. Processing, properties and

application”. Edited by R.C. Buchanan, M. Dekker, New York (1986)

19) V.G. Chouvardas, A.N. Miliou, M.K. Hatalis: “Tactile displays: a short overview and recent developments”. University of Thessaloniki, Department of Informatics (2005)

20) H. Conrad: “Properties and design of electrorheological suspension”. MRS Bulletin, Vol.131, pp.134-138 (1999)

21) K.D. Weiss, D.J. Carlson, J.P. Coulter: “Material aspects of electrorheological system”.

Advances in Intelligent Material Systems and Structures, Technomic Publishing Company, pp.30-52 (1994)

22) D. Lampe: “Materials database on commercially available Electro- and Magnetorheological Fluids (ERF and MRF)”. (1997)

23) Y. Liu, R. Davidson, P. Taylor, J. Ngu, J. Zarraga: “Single Cell magnetorheological fluid based tactile display”. Display, vol.26, num.1, pp.29-35 (2005)

24) G. Magnac, P. Meneroud, M.F. Six, G. Patient, R. leletty, F. Claeyssen: ”Characterisation of magneto-rheological fluids for actuators application”. Actuator 2006, 10

th

International Conference on New Actuator, Brema (2006)

25) B.W. White: “Perceptual Findings with the Vision-Substitution System”. IEEE Trans. Man- Machine System, MMS-11(1), pp.54-58 (1970)

26) C.C. Collins: “Tactile Television: Mechanical and Electrical Image projection”. IEEE Trans.

Man-Machine System, MMS-11(1), pp.65-71 (1970)

27) J.C. Bliss, M.H. Katcher, C.H. Rogers, R.P. Sheppard: “Optical-to-tactile image conversion for the blind”. IEEE Trans. Man-Machine System, MMS-11(1), pp.58-65 (1970)

28) L.T. Schoof: “An Analysis of Optacon usage”. Res Bull Am Found Blind, 19:pp.33-50 (1975)

29) R.D. Sorkin: “Design of Auditory and Tactile Displays”. Handbook of Human Factor, pp.549-576, New York (1987)

30) V. Hayward, J.M. Hernandez: “Tactile display device using distributed lateral skin stretch”.

Proceedings of the 8

th

Symposium on Haptic Interfaces for virtual environment and teleoperator system. Vol. DSC-69-2, pp.1309-1314 (2000)

31) J. Pasquero, V. Hayward: “Stress: a practical tactile display system with one millimetre

spatial resolution and 700 Hz refresh rate”. Proceedings of EUROHAPTIC (2003)

(3)

32) V. Levesque, J. Pasquero, V. Hayward: “Display of virtual Braille dots by lateral skin deformation: feasibility study”. ACM Transaction on applied perception, pp.1-20 (2005) 33) M.Hafez, M.B. Khoudja, J. Alexandre, G. Hamon: “Electromagnetically driven High-

Density tactile interface based on a multilayer approach”. Best Paper in International Symposium on Micromechatronics and human science, pp.147-152, Japan (2003)

34) M.B. Khoudja, M. Hafez, J.M. Alexandre, A. Kheddar, V. Moreau: “VITAL: a new low- cost Vibrotactile display system”, USA (2004)

35) R. Pelrine, R. Kornbluh, J. Joseph, R. Heydt, Q. Pei, S. Chiba: “High-field deformation of elastomeric dielectries for actuators”. Material Science and Engineering, C11, Elsevier Science, pp.89-100 (2000)

36) T.Fukuda, H. Morita, F. Arai, H. Ishihara, H. Matsuura: “Micro resonator using electromagnetic actuator for tactile display”. International Symposium on micromechatronics and human science, pp.143-148 (1997)

37) M. Shinohara, Y. Shimizu, A. Mochizuki: “Three-dimensional tactile display for the blind”.

IEEE Tansaction on Rehabilitation Engineering, Vol.6, num.3, pp.249-256 (1998) 38) P.M. Taylor, A. Moser, A. Creed: “The design and control of a tactile display based on

shape memory alloys”. Proceedings of the IEEE International Conference on Robotics and Automation, vol.2, pp.1-4 (1997)

39) D.A. Kontarinis, J.S. Son, W. Peine, R.D. Howe: “A tactile sensing and display system for teleoperated manipulation”. IEEE International Conference on Robotics and Automation, pp.641-646 (1995)

40) D.G. Caldwell, N. Tsagarakis, C. Giesler: “An integrated tactile/shear feedback array of stimulation of finger mechanoreceptor”. Proceedings of the IEEE International Conference on Robotics and Automation, pp.187-192 (1999)

41) G. Moy, C. Wagner, R.S. Fearing: “A compliant tactile display for teletaction”. Proceedings of the IEEE International Conference on Robotics and Automation, pp.3409-3415 (2000) 42) C.R. Wagner, S.J. Lederman, R.D. Howe: “A tactile shape display using RC Servo-motors”.

Tenth Symposium on Haptic Interfaces for Virtual Environment and Teleoperator System (2002)

43) P.S. Wellman, W.J. Peine, R.D. Howe: “Mechanical design and control of a high bandwith shape memory alloy tactile display”. Proceedings of the International Symposium of Experimental Robotics (1997)

44) M. Nakamura, L. Jones: “An actuator for a tactile vest: a torso-based haptic device”. 11

th

Symposium on Haptic Interfaces for Virtual Environment and Teleoperator System, pp.333- 339 (2003)

45) S. Ino, S. Shimizu, T. Odagawa, M. Sato, M. Takahashi, T. Izumi, T. Ifukube: “A tactile display for presenting quality of materials by changing the temperature of skin surface”.

IEEE 2

nd

International Workshop on Robot and Human Communication, pp.220-224 (1993)

(4)

46) P.M. Taylor, D.M. Pollet, A. Hosseini-Sianaki, C.J. Varley: “Advances in an

electrorheological fluid based tactile array”. Display, vol.18, num.3, pp.135-141 (1998) 47) Y. Kawai, F. Tomita: “Interactive tactile display system: a support system for the visually

disabled to recognize 3D objects”. Proceedings of the second annual ACM Conference on Assistive technologies, ACM Press, pp.45-50 (1996)

48) H. Takahashi, F. Tomita: “Planarity Constraint in stereo matching”. Proceedings of the 9

th

International Conference on Pattern Recognition, pp.446-449 (1988)

49) Y. Ishiyama, F. Tomita: “Recovery of curved surface from stereo of isoluminance contours”. Proceedings of 7

th

Scandinavian Conference on Image Analysis, pp. 636-643 (1991)

50) S. Barrass: “Auditory Information Design”. Australian National University (1997) 51) A. Bregman: “Auditory Scene Analysis”. MIT Press (1990)

52) E.D. Sheirer: “Music-Listening Systems”. PhD Thesis, MIT (2000)

53) G. Brown: “Auditory Scene Analysis: listening to several things at once”. Available on web (2000)

54) G.B. Vicario: “L’effetto tunnel acustico”. Rivista di psicologia (54; 41-52) (1960)

55) R.W. Warren: “Perceptual restoration of missing speech sounds”. Science (167; 392-393) (1970)

56) D. Keller: “Touch’n’go: Ecological Models in Composition”. Master of fine arts, Simon Fraser University, Burnaby, BC (1999)

57) W.H. Warren, R.R Verbrugge: “Auditory perception of breaking and bouncing events: a case study in ecological acoustics”. Journal of Experimental Psycology: Human Perception and Performance (10; 704-705) (1984)

58) B.H. Repp: “The sound of two hands clapping: an exploratory study”. J. Acoust. Soci.

Am.(81;1100-1109) (1987)

59) X. Li, R.J. Logan, R.E. Pastore: “Perception of acoustic source characteristics: Walking sound”. J. Acoust. Soc. Am. (90; 3036-3049) (1991)

60) J. Cronly-Dillon, K. Persaud, R.P.F. Gregory: “The perception of visual images encoded in musical form: a study in cross-modality information transfer”. Royal Society (1999)

61) J. Cronly-Dillon, K. Persaud, R. Blore: “Blind subjects construct conscious mental images of visual scenes encoded in musical form”. Royal Society (2000)

62) P. Meijer: “An Experimental System for Auditory Image Representations”. IEEE

Transactions On Biomedical Engineering, vol.39, pp.112-121 (1992)

(5)

63) Y. Kawai, F. Tomita: “A Support System for Visually Impaired Persons to Understand Three-dimensional Visual Information Using Acoustic Interface”. IEEE (2002)

64) Y. Kawai, M. Kobayashi, H. Minagawa, M. Miyakawa, F. Tomita: “A Support System for Visually Impaired Persons Using Three-Dimensional Virtual Sound”. Proc. Of

ICCCHP2000, pp.327-334 (2000)

65) P. Meijer: “Seeing with Sound – The vOICe”. In invited presentation at Tucson 2002 conference on Consciousness, April 8-12, 2002. Abstract no. 187 in “Toward a Science of Consciousness”, in Consciousness Research Abstracts (Journal of Consciousness Studies) Tucson, Arizona, p.83, Oxford University Press (2002)

66) R. Nagarajan, S. Yaacob, G. Sainarayanan: “Role of Object Identification in Sonification System for Visually Impaired”. IEEE (2003)

67) C. Capelle, C. Trullemans: “A Real-Time Experimental Prototype for Enhancemente of Vision Rehabilitation Using Auditory Substitution”. IEEE Transaction on Biomedical Engineering, vol. 45, num. 10, pp. 1279-1293 (1998)

68) Perrott: “Discrimination of the spatial distribution of concurrently active sound sources:

some experiments with stereophonic arrays”. Journal of the Acoustic Society of America, 76(6), 1704-1712 (1984)

69) L. Kay: “Auditory perception and its relation to ultrasonic blind guidance aids”. J. Inst.

Radio Engrs, 24;309-317 (1962)

70) K. Van der Doel: “Soundview: Sensing Color Images by Kinesthetic Audio”. Proceedings of the International Conference on Auditory Display, Boston (2003)

71) K. Van der Doel: “Geometric Shape Detection with SoundView” Proceedings of ICAD 04- Tenth Meeting of the International Conference on Auditory Display Sydney (2004) 72) J.M. McNeil: “Household economic studies. Current population reports: American with

disabilities 1997” (2004)

73) National Alliance for Eye and Vision Research: “The demographics of eye and vision disorders” (2002)

74) C. Doering: “New tool helps blind students learn math” (2004)

Riferimenti

Documenti correlati

The aim of this study was to investigate the homocysteine (Hcy) levels and the C677T polymorphism of 5,10-methyl- enetetrahydrofolate reductase (MTHFR), a crucial factor of the

94 ai due centri come avamposti militari deputati alla difesa delle ricche città e dei fertili territori dell’Alto Campidano, spesso devastati dai briganti della Barbària (par.

(2019) conclude that (1) the decline of capital deepening (tangible and intangible) directly accounts for a large part of the labour productivity slowdown after the financial

Prevalence, incidence and residual risk of transfusion-transmitted hepatitis C virus and human immunodeficiency virus after the implementation of nucleic acid testing in Italy:

Use of all other works requires consent of the right holder (author or publisher) if not exempted from copyright protection by the applicable

There is a clear correlation between time to the peak and the luminosity at the peak; in this parameter space, each subtype of CCSNe are located in specific areas; CCSNe show

In seguito ai dati ottenuti nella fase di applicazione della metodica su campioni ambientali per la ricerca virale, si è deciso di concentrare tredici campioni di

To reproduce, at least in part, the conditions of the CF airway epithelium in vivo, we treated cultured bronchial epithelial cells with pyocyanin and bacterial supernatant.. Analysis