-
1
-
-
85067758961
-
-
Vicon, (accessed 10.02.15).
-
Vicon, 2015 < http://www.vicon.com/ > (accessed 10.02.15).
-
(2015)
-
-
-
2
-
-
84924979895
-
-
Qualisys, (accessed 10.02.15).
-
Qualisys Motion Capture Systems, Qualisys, 2015 < http://www.qualisys.com/ > (accessed 10.02.15).
-
(2015)
Qualisys Motion Capture Systems
-
-
-
3
-
-
84924962056
-
-
(accessed 10.02.15).
-
OptiTrack, 2015 < https://www.naturalpoint.com/optitrack/ > (accessed 10.02.15).
-
(2015)
OptiTrack
-
-
-
4
-
-
0021200788
-
Gait analysis methodology
-
A. Cappozzo Gait analysis methodology Hum. Movement Sci. 1984 27 50
-
(1984)
Hum. Movement Sci.
, pp. 27-50
-
-
Cappozzo, A.1
-
5
-
-
85032751173
-
Motion capture technology for entertainment [in the spotlight]
-
C. Bregler Motion capture technology for entertainment [in the spotlight] Signal Proc. Mag., IEEE 2007 158 160
-
(2007)
Signal Proc. Mag., IEEE
, pp. 158-160
-
-
Bregler, C.1
-
6
-
-
77956601974
-
The grasp multiple micro-UAV testbed
-
N. Michael, D. Mellinger, Q. Lindsey, and V. Kumar The grasp multiple micro-UAV testbed Robot. Autom. Mag., IEEE 2010 56 65
-
(2010)
Robot. Autom. Mag., IEEE
, pp. 56-65
-
-
Michael, N.1
Mellinger, D.2
Lindsey, Q.3
Kumar, V.4
-
7
-
-
84862132530
-
Pixhawk: A micro aerial vehicle design for autonomous flight using onboard computer vision
-
L. Meier, P. Tanskanen, L. Heng, G.H. Lee, F. Fraundorfer, and M. Pollefeys Pixhawk: a micro aerial vehicle design for autonomous flight using onboard computer vision Auton. Robots 2012 21 39
-
(2012)
Auton. Robots
, pp. 21-39
-
-
Meier, L.1
Tanskanen, P.2
Heng, L.3
Lee, G.H.4
Fraundorfer, F.5
Pollefeys, M.6
-
10
-
-
19644389189
-
A human movement analysis using stereophotogrammetry - Part 2: Instrumental errors
-
L. Chiari, U.D. Croce, A. Leardini, and A. Cappozzo A human movement analysis using stereophotogrammetry - part 2: instrumental errors Gait Posture 2005 197 211
-
(2005)
Gait Posture
, pp. 197-211
-
-
Chiari, L.1
Croce, U.D.2
Leardini, A.3
Cappozzo, A.4
-
11
-
-
84871776818
-
Evaluation of the performance of a motion capture system for small displacement recording and a discussion for its application potential in bone deformation in vivo measurements
-
P.F. Yang, M. Sanno, G.P. Brüggemann, and J. Rittweger Evaluation of the performance of a motion capture system for small displacement recording and a discussion for its application potential in bone deformation in vivo measurements Proc. Inst. Mech. Eng., Part H: J. Eng. Med. 2012 838 847
-
(2012)
Proc. Inst. Mech. Eng., Part H: J. Eng. Med.
, pp. 838-847
-
-
Yang, P.F.1
Sanno, M.2
Brüggemann, G.P.3
Rittweger, J.4
-
12
-
-
33845197308
-
Accuracy and repeatability of an optical motion analysis system for measuring small deformations of biological tissues
-
H. Liu, C. Holt, and S. Evans Accuracy and repeatability of an optical motion analysis system for measuring small deformations of biological tissues J. Biomech. 2007 210 214
-
(2007)
J. Biomech.
, pp. 210-214
-
-
Liu, H.1
Holt, C.2
Evans, S.3
-
13
-
-
49449118813
-
Systematic accuracy and precision analysis of video motion capturing systems - Exemplified on the Vicon-460 system
-
M. Windolf, N. Gotzen, and M. Morlock Systematic accuracy and precision analysis of video motion capturing systems - exemplified on the Vicon-460 system J. Biomech. 2008 2776 2780
-
(2008)
J. Biomech.
, pp. 2776-2780
-
-
Windolf, M.1
Gotzen, N.2
Morlock, M.3
-
14
-
-
80051891323
-
A non-contact ultrasonic platform for structural inspection
-
G. Dobie, R. Summan, S. Pierce, W. Galbraith, and G. Hayward A non-contact ultrasonic platform for structural inspection IEEE Sens. J. 2011 2458 2468
-
(2011)
IEEE Sens. J.
, pp. 2458-2468
-
-
Dobie, G.1
Summan, R.2
Pierce, S.3
Galbraith, W.4
Hayward, G.5
-
15
-
-
85067777275
-
-
C. Mineo, D. Herbert, M. Morozov, S.G. Pierce, P.I. Nicholson, I. Cooper, Robotic non-destructive inspection 51st Annual Conference of the British Institute for Non-Destructive Testing, 2012.
-
C. Mineo, D. Herbert, M. Morozov, S.G. Pierce, P.I. Nicholson, I. Cooper, Robotic non-destructive inspection 51st Annual Conference of the British Institute for Non-Destructive Testing, 2012.
-
-
-
-
16
-
-
0030764482
-
Comparison of the performance of 3D camera systems II
-
Y. Ehara, H. Fujimoto, S. Miyazaki, M. Mochimaru, S. Tanaka, and S. Yamamoto Comparison of the performance of 3D camera systems II Gait Posture 5 1997 251 255
-
(1997)
Gait Posture
, vol.5
, pp. 251-255
-
-
Ehara, Y.1
Fujimoto, H.2
Miyazaki, S.3
Mochimaru, M.4
Tanaka, S.5
Yamamoto, S.6
-
17
-
-
0001746929
-
The measurement of human motion: A comparison of commercially available systems
-
J.G. Richards The measurement of human motion: a comparison of commercially available systems Hum. Movement Sci. 1999 589 602
-
(1999)
Hum. Movement Sci.
, pp. 589-602
-
-
Richards, J.G.1
-
18
-
-
0035147559
-
A fast method for calibrating video-based motion analysers using only a rigid bar
-
N.A. Borghese, P. Cerveri, and P. Rigiroli A fast method for calibrating video-based motion analysers using only a rigid bar Med. Biol. Eng. Comput. 2001 76 81
-
(2001)
Med. Biol. Eng. Comput.
, pp. 76-81
-
-
Borghese, N.A.1
Cerveri, P.2
Rigiroli, P.3
-
20
-
-
85067779932
-
-
(accessed 10.02.15).
-
GOM, ATOS Professional, 2015 < http://www.gom.com/3dsoftware/atos-professional.html > (accessed 10.02.15).
-
(2015)
GOM, ATOS Professional
-
-
-
21
-
-
33745178432
-
Simultaneous localization and mapping: Part i
-
H. Durrant-Whyte, and T. Bailey Simultaneous localization and mapping: part I Robot. Autom. Mag., IEEE 13 2 2006 99 110
-
(2006)
Robot. Autom. Mag., IEEE
, vol.13
, Issue.2
, pp. 99-110
-
-
Durrant-Whyte, H.1
Bailey, T.2
-
25
-
-
85067778644
-
-
BS ISO 3290-1: Rolling bearings Balls. Part 1. Steel balls
-
BS ISO 3290-1: Rolling bearings Balls. Part 1. Steel balls, 2008.
-
(2008)
-
-
-
26
-
-
0026137964
-
Least-squares estimation of transformation parameters between two point patterns
-
S. Umeyama Least-squares estimation of transformation parameters between two point patterns IEEE Trans. Pattern Anal. Mach. Intell. 1991 376 380
-
(1991)
IEEE Trans. Pattern Anal. Mach. Intell.
, pp. 376-380
-
-
Umeyama, S.1
|