Serveur d'exploration sur les dispositifs haptiques - Analysis (USA)

Index « Keywords » - entrée « Biomechanical Phenomena »
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Biomaterial < Biomechanical Phenomena < Biomechanical Phenomena (instrumentation)  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 44.
[20-40] [0 - 20][0 - 44][40-43][40-60]
Ident.Authors (with country if any)Title
000971 (2011) Alma S. Merians [États-Unis] ; Gerard G. Fluet [États-Unis] ; Qinyin Qiu [États-Unis] ; Ian Lafond [États-Unis] ; Sergei V. Adamovich [États-Unis]Learning in a Virtual Environment Using Haptic Systems for Movement Re-Education: Can This Medium Be Used for Remodeling Other Behaviors and Actions?
000A21 (2011) Woei-Nan Bair [États-Unis] ; José A. Barela [Brésil] ; Jill Whitall [États-Unis] ; John J. Jeka [États-Unis] ; Jane E. Clark [États-Unis]Children with Developmental Coordination Disorder Benefit from Using Vision in Combination with Touch Information for Quiet Standing
000C33 (2010) Andrew D. Pearle [États-Unis] ; Padhraig F. O'Loughlin ; Daniel O. KendoffRobot-assisted unicompartmental knee arthroplasty.
000C34 (2010) Cara E. Stepp [États-Unis] ; Yoky MatsuokaRelative to direct haptic feedback, remote vibrotactile feedback improves but slows object manipulation.
000C72 (2010) D W Repperger [États-Unis] ; C A PhillipsHaptic devices as a paradigm to enhance learning/function--theory and empirical studies.
000F19 (2009) Ganesh Sankaranarayanan [États-Unis] ; Dhanannjay Deo ; Suvranu DeHybrid network architecture for interactive multi-user surgical simulator with scalable deformable models.
001081 (2008) Thomas S. Lendvay [États-Unis] ; Feng-Ju Hsieh ; Blake Hannaford ; Jacob RosenThe biomechanics of percutaneous needle insertion.
001133 (2008) Jacob Rosen [États-Unis] ; Jeffrey D. Brown ; Smita De ; Mika Sinanan ; Blake HannafordBiomechanical properties of abdominal organs in vivo and postmortem under compression loads.
001272 (2007) Kunlin Wei [États-Unis] ; Tjeerd M H. Dijkstra ; Dagmar SternadPassive stability and active control in a rhythmic task.
001686 (2004) Jeffrey D. Brown [États-Unis] ; Jacob Rosen ; Lily Chang ; Mika N. Sinanan ; Blake HannafordQuantifying surgeon grasping mechanics in laparoscopy using the Blue DRAGON system.
001693 (2004) T. Hu [États-Unis] ; G. Tholey ; J P Desai ; A E CastellanosEvaluation of a laparoscopic grasper with force feedback.
001699 (2004) James K. Deorio [États-Unis] ; John P. PedenAccuracy of haptic assessment of patellar symmetry in total knee arthroplasty.
001826 (2003) Roberta L. Klatzky [États-Unis] ; Susan J. Lederman ; Sara LangsethWatching a cursor distorts haptically guided reproduction of mouse movement.
001909 (2003) Hiromu Katsumata [États-Unis] ; Vladimir Zatsiorsky [États-Unis] ; Dagmar Sternad [États-Unis]Control of ball-racket interactions in rhythmic propulsion of elastic and non-elastic balls
001918 (2002) J Brian Fisher [États-Unis] ; Susan M. PorterUsing mixed reality, force feedback and tactile augmentation to improve the realism of medical simulation.
001921 (2002) B K Tay [États-Unis] ; N. Stylopoulos ; S. De ; D W Rattner ; M A SrinivasanMeasurement of in-vivo force response of intra-abdominal soft tissues for surgical simulation.
001923 (2002) Eric Acosta [États-Unis] ; Bharti Temkin ; John A. Griswold ; Sammy A. Deeb ; Tom Krummel ; Randy S. Haluck ; Louis R. KavoussiHeuristic haptic texture for surgical simulations.
001924 (2002) Kevin Montgomery [États-Unis] ; Cynthia D. BruynsGeneralized interactions using virtual tools within the spring framework: probing, piercing, cauterizing and ablating.
001925 (2002) Roger Webster [États-Unis] ; Randy Haluck ; Rob Ravenscroft ; Betty Mohler ; Eric Crouthamel ; Tyson Frack ; Steve Terlecki ; Jeremy SheafferElastically deformable 3D organs for haptic surgical simulation.
001A52 (2001) J. Longnion [États-Unis] ; J. Rosen ; M. Sinanan ; B. HannafordEffects of geared motor characteristics on tactile perception of tissue stiffness.
001C01 (2001) Michael A. Riley [États-Unis] ; M. T. Turvey [États-Unis]Inertial constraints on limb proprioception are independent of visual calibration

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