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Publication numberUSD588753 S1
Publication typeGrant
Application numberUS 29/300,030
Publication dateMar 17, 2009
Filing dateFeb 12, 2008
Priority dateFeb 12, 2008
Publication number29300030, 300030, US D588753 S1, US D588753S1, US-S1-D588753, USD588753 S1, USD588753S1
InventorsArni Thor Ingimundarson, Palmi Einarsson
Original AssigneeOssur Hf
Export CitationBiBTeX, EndNote, RefMan
External Links: USPTO, USPTO Assignment, Espacenet
Patella protector assembly
US D588753 S1
Abstract  available in
Images(5)
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Claims(1)
  1. The ornamental design for a patella protector assembly, as shown and described.
Description

FIG. 1 is a front perspective view of the patella protector assembly with the phantom lines depicting solely environmental and supplementary structure, and forming no part of the claimed design.

FIG. 2 is a first side elevational view of the brace of FIG. 1.

FIG. 3 is a front elevational view of the brace of FIG. 1.

FIG. 4 is a second side elevational view of the brace of FIG. 1.

FIG. 5 is a rear elevational view of the brace of FIG. 1.

FIG. 6 is top plan view of the brace of FIG. 1; and,

FIG. 7 is bottom plan view of the brace of FIG. 1.

Referenced by
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US8376971Feb 19, 2013Massachusetts Institute Of TechnologyActive ankle foot orthosis
US8419804Sep 1, 2009Apr 16, 2013Iwalk, Inc.Hybrid terrain-adaptive lower-extremity systems
US8500823Feb 1, 2010Aug 6, 2013Massachusetts Institute Of TechnologyPowered artificial knee with agonist-antagonist actuation
US8512415Jun 12, 2008Aug 20, 2013Massachusetts Institute Of TechnologyPowered ankle-foot prothesis
US8551029Feb 13, 2013Oct 8, 2013Massachusetts Institute Of TechnologyActive ankle foot orthosis
US8551184Feb 1, 2012Oct 8, 2013Iwalk, Inc.Variable mechanical-impedance artificial legs
US8734528Dec 21, 2012May 27, 2014Massachusetts Institute Of TechnologyArtificial ankle-foot system with spring, variable-damping, and series-elastic actuator components
US8808214Nov 18, 2011Aug 19, 2014Massachusetts Institute Of TechnologyActive ankle foot orthosis
US8864846Feb 1, 2010Oct 21, 2014Massachusetts Institute Of TechnologyModel-based neuromechanical controller for a robotic leg
US8870967Oct 29, 2009Oct 28, 2014Massachusetts Institute Of TechnologyArtificial joints using agonist-antagonist actuators
US8900325Sep 24, 2013Dec 2, 2014Iwalk, Inc.Hybrid terrain-adaptive lower-extremity systems
US9032635Dec 14, 2012May 19, 2015Massachusetts Institute Of TechnologyPhysiological measurement device or wearable device interface simulator and method of use
US9060883Mar 12, 2012Jun 23, 2015Iwalk, Inc.Biomimetic joint actuators
US9149370Aug 5, 2013Oct 6, 2015Massachusetts Institute Of TechnologyPowered artificial knee with agonist-antagonist actuation
US9211201Mar 15, 2013Dec 15, 2015Iwalk, Inc.Hybrid terrain-adaptive lower-extremity systems
US9221177Apr 18, 2013Dec 29, 2015Massachusetts Institute Of TechnologyNeuromuscular model-based sensing and control paradigm for a robotic leg
US20040064195 *Jul 3, 2003Apr 1, 2004Hugh HerrVariable-mechanical-impedance artificial legs
US20100114329 *Sep 1, 2009May 6, 2010Iwalk, Inc.Hybrid terrain-adaptive lower-extremity systems
US20100174385 *Sep 1, 2009Jul 8, 2010Iwalk, Inc.Hybrid Terrain-Adaptive Lower-Extremity Systems
US20100179668 *Jul 15, 2010Iwalk, Inc.Hybrid Terrain-Adaptive Lower-Extremity Systems
US20100241242 *Oct 29, 2009Sep 23, 2010Massachusetts Institute Of TechnologyArtificial Joints Using Agonist-Antagonist Actuators
US20100324699 *Feb 1, 2010Dec 23, 2010Massachusetts Institute Of TechnologyModel-Based Neuromechanical Controller for a Robotic Leg
US20110040216 *Feb 17, 2011Massachusetts Institute Of TechnologyExoskeletons for running and walking
US20110082566 *Aug 31, 2010Apr 7, 2011Herr Hugh MImplementing a stand-up sequence using a lower-extremity prosthesis or orthosis
Classifications
U.S. ClassificationD29/121.1