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LEADER 00000cam  2200745Ii 4500 
001    209986289 
003    OCoLC 
005    20181116042239.9 
006    m     o  d         
007    cr cn||||||||| 
008    080226s2008    ne a    ob    101 0 eng d 
019    232302310|a288185724|a299059661|a319640126|a437205796
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       |a1035665801|a1044269840 
020    9781402066931 
020    1402066937 
020    9781402066924 
020    1402066929 
024 8  XO928943 
035    (OCoLC)209986289|z(OCoLC)232302310|z(OCoLC)288185724
       |z(OCoLC)299059661|z(OCoLC)319640126|z(OCoLC)437205796
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       |z(OCoLC)1005804209|z(OCoLC)1035665801|z(OCoLC)1044269840 
037    978-1-4020-6692-4|bSpringer|nhttp://www.springerlink.com 
040    GW5XE|beng|epn|erda|cGW5XE|dGW5XE|dCEF|dYNG|dNUI|dN$T
       |dYDXCP|dOCLCQ|dMNU|dE7B|dUBC|dUX0|dIDEBK|dOCLCO|dOCLCQ
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       |dOCLCO|dOCLCQ|dWYU|dOCLCO 
049    MAIN 
050  4 TA1650|b.H85 2008eb 
060  4 WE 103|bH9167 2008 
060  4 2008 G-387 
072  7 MED|x075000|2bisacsh 
072  7 SCI|x036000|2bisacsh 
082 04 006.4/2|222 
245 00 Human motion :|bunderstanding, modelling, capture and 
       animation /|cedited by Bodo Rosenhahn, Reinhard Klette and
       Dimitris Metaxas. 
264  1 Dordrecht, the Netherlands :|bSpringer,|c2008. 
300    1 online resource (x, 633 pages) :|billustrations. 
336    text|btxt|2rdacontent 
337    computer|bc|2rdamedia 
338    online resource|bcr|2rdacarrier 
340    |gpolychrome|2rdacc|0http://rdaregistry.info/termList/
       RDAColourContent/1003 
490 1  Computational imaging and vision ;|vv. 36 
504    Includes bibliographical references and index. 
505 00 |g1.|tUnderstanding human motion: a historic review /
       |rReinhard Klette and Garry Tee --|gpt. I.|t2D tracking:
       |g2.|tThe role of manifold learning in human motion 
       analysis /|rAhmed Elgammal and Chan-Su Lee ;|g3.
       |tRecognition of action as a Bayesian parameter estimation
       problem over time /|rVolker Kruger ;|g4.|tThe William 
       Harvey code: mathematical analysis of optical flow 
       computation for cardiac motion /|rYusuke Kameda and 
       Atsushi Imiya ;|g5.|tDetection and tracking of humans in 
       single view sequences using 2D articulated model /|rFilip 
       Korc and Vaclav Hlavac --|gpt. II.|tLearning:|g6.
       |tCombining discrete and continuous 3D trackers /|rGabriel
       Tsechpenakis, Dimitris Metaxas, and Carol Neidle ;|g7.
       |tGraphical models for human motion modelling /|rKooksang 
       Moon and Vladimir Pavlovic ;|g8.|t3D human motion analysis
       in monocular video: techniques and challenges /|rChristian
       Sminchisescu ;|g9.|tSpatially and temporally segmenting 
       movement to recognize actions /|rRichard Green ;|g10.
       |tTopologically constrained idometric embedding /|rGuy 
       Rosman, Alexander M. Bronstein, Michael M. Bronstein, and 
       Ron Kimmel --|gpt. III.|t2D-3D tracking:|g11.|tContours, 
       optic flow, and prior knowledge: cues for capturing 3D 
       human motion in videos /|rThomas Brox, Bodo Rosenhahn, and
       Daniel Cremers ;|g12.|tTracking clothed people /|rBodo 
       Rosenhahn, Uwe G. Kersting, Katie Powell, T. Brox, and 
       Hans-Peter Seidel ;|g13.|tAn introduction to interacting 
       simulated annealing /|rJurgen Gall, Bodo Rosenhahn, and 
       Hans-Peter Seidel ;|g14.|tMotion capture for interaction 
       environments /|rDaniel Grest and Reinhard Koch ;|g15.
       |tMarkerless motion capture for biomechanical applications
       /|rLars Mundermann, Stefano Corazza, and Thomas P. 
       Andriacchi --|gpt. IV.|tBiomechanics and applications:
       |g16.|tQualitative and quantitative aspects of movement: 
       the discrepancy between clinical gait analysis and 
       activities of daily life /|rDieter Rosenbaum and Mirko 
       Brandes ;|g17. Optimization of human motion exemplified 
       with handbiking by means of motion analysis and 
       musculoskeletal models /|rHarald Bohm and Christian Kramer
       ;|g18.|tImitation learning and transferring of human 
       movement and hand grasping to adapt to environment changes
       /|rStephan Al-Zubi and Gerald Sommer ;|g19.|tAccurate and 
       model-free pose estimation of crash test dummies /|rStefan
       K. Gehrig, Hernan Badino, and Jurgen Gall --|gpt. V.
       |tModelling and animation:|g20.|tA relational approach to 
       content-based analysis of motion capture data /|rMeinard 
       Muller and Tido Roder ;|g21.|tThe representation of rigid 
       body motions in the conformal model of geometric algebra /
       |rLeo Dorst ;|g22.|tVideo-based capturing and rendering of
       people /|rChristian Theobalt, Marcus Magnor, and Hans-
       Peter Seidel ;|g23.|tInteracting deformable objects /
       |rMatthias Teschner, Bruno Heidelberger, and Matthias 
       Muller-Fischer ;|g24.|tFrom performance theory to 
       character animation tools /|rMichael Neff and Eugene 
       Fiume. 
520    The study of human motion dates back more than 2000 years.
       With the event of information technology, new areas have 
       been added to this field. Research using computer vision 
       and computer graphics contributes to a transformation of 
       biomechanics into a discipline that now applies computing 
       technology throughout; on the other hand, computer vision 
       and computer graphics also benefit from defining goals 
       aimed at solving problems in biomechanics. Besides 
       interactions, all three areas also developed their own 
       inherent research dynamics towards studying human motion. 
       Researchers from all three of these. 
588 0  Print version record. 
650  0 Optical pattern recognition|vCongresses.|0http://
       id.loc.gov/authorities/subjects/sh2008108668 
650  0 Human locomotion|0http://id.loc.gov/authorities/subjects/
       sh85062882|xComputer simulation|0http://id.loc.gov/
       authorities/subjects/sh99005300|vCongresses.|0http://
       id.loc.gov/authorities/subjects/sh99001533 
650  0 Kinesiology|vCongresses.|0http://id.loc.gov/authorities/
       subjects/sh2009128065 
650  0 Biometric identification|vCongresses.|0http://id.loc.gov/
       authorities/subjects/sh2009117104 
650  0 Multimedia systems|vCongresses.|0http://id.loc.gov/
       authorities/subjects/sh2008107510 
650 12 Movement|xphysiology.|0https://id.nlm.nih.gov/mesh/
       D009068Q000502 
650 20 Biomechanics.|0http://id.loc.gov/authorities/subjects/
       sh85014236 
650 22 Biomechanical Phenomena.|0https://id.nlm.nih.gov/mesh/
       D001696 
650 22 Computer Simulation.|0https://id.nlm.nih.gov/mesh/D003198 
650 22 Models, Biological.|0https://id.nlm.nih.gov/mesh/D008954 
650 22 Video Recording.|0https://id.nlm.nih.gov/mesh/D014741 
655  4 Electronic books. 
655  7 Conference papers and proceedings.|2fast|0http://
       id.worldcat.org/fast/1423772 
655  7 Conference papers and proceedings.|2lcgft|0http://
       id.loc.gov/authorities/genreForms/gf2014026068 
700 1  Rosenhahn, Bodo.|0http://id.loc.gov/authorities/names/
       nb2007024979 
700 1  Klette, Reinhard.|0http://id.loc.gov/authorities/names/
       n85325068 
700 1  Metaxas, Dimitris N.,|d1962-|0http://id.loc.gov/
       authorities/names/n96110336 
776 08 |iPrint version:|tHuman motion.|dDordrecht, the 
       Netherlands : Springer, 2008|z9781402066924|z1402066929
       |w(OCoLC)175285099 
830  0 Computational imaging and vision ;|0http://id.loc.gov/
       authorities/names/n94071648|vv. 36. 
990    SpringerLink|bSpringer English/International eBooks 2008 -
       Full Set|c2018-11-16|yMaster record variable field(s) 
       change: 650|5OH1 
990    SpringerLink|bSpringer English/International eBooks 2008 -
       Full Set|c2018-10-31|yNew collection 
       springerlink.ebooks2008|5OH1 
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