Modular fabrication systems and methods

Plastic article or earthenware shaping or treating: apparatus – Means applying electrical or wave energy directly to work

Reexamination Certificate

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C425S169000, C425S375000

Reexamination Certificate

active

07625198

ABSTRACT:
The present invention relates to an article fabrication system having a plurality of material deposition tools containing one or more materials useful in fabricating the article, and a material deposition device having a tool interface for receiving one of the material deposition tools. A system controller is operably connected to the material deposition device to control operation of the material deposition device. Also disclosed is a method of fabricating an article using the system of the invention and a method of fabricating a living three-dimensional structure.

REFERENCES:
patent: 5121329 (1992-06-01), Crump
patent: 5126529 (1992-06-01), Weiss et al.
patent: 5134569 (1992-07-01), Masters
patent: 5204055 (1993-04-01), Sachs et al.
patent: 5260009 (1993-11-01), Penn
patent: 5312224 (1994-05-01), Batchelder et al.
patent: 5900207 (1999-05-01), Danforth et al.
patent: 6030199 (2000-02-01), Tseng
patent: 6036777 (2000-03-01), Sachs
patent: 6153034 (2000-11-01), Lipsker
patent: 6224893 (2001-05-01), Langer et al.
patent: 6251340 (2001-06-01), Tseng
patent: 6658314 (2003-12-01), Gothait
patent: 6773713 (2004-08-01), Bonassar et al.
patent: 6850334 (2005-02-01), Gothait
patent: 6905738 (2005-06-01), Ringeisen et al.
patent: 6986739 (2006-01-01), Warren et al.
patent: 7168935 (2007-01-01), Taminger et al.
patent: 7195475 (2007-03-01), Silverbrook
patent: 7220112 (2007-05-01), Silverbrook
patent: 7220115 (2007-05-01), Silverbrook
patent: 7306323 (2007-12-01), Silverbrook
patent: 7322674 (2008-01-01), Silverbrook
patent: 2002/0149137 (2002-10-01), Jang et al.
patent: 2002/0182241 (2002-12-01), Borenstein et al.
patent: 2003/0170285 (2003-09-01), Veazey et al.
patent: 2004/0143358 (2004-07-01), Silverbrook
patent: 2005/0253308 (2005-11-01), Sherwood
patent: 2006/0156978 (2006-07-01), Bonassar et al.
patent: 2006/0160250 (2006-07-01), Bonassar et al.
patent: 2007/0182799 (2007-08-01), Silverbrook
patent: 2008/0001997 (2008-01-01), Silverbrook
patent: 2008/0062214 (2008-03-01), Silverbrook
patent: 2008/0068416 (2008-03-01), Silverbrook
patent: 2008/0084450 (2008-04-01), Silverbrook
patent: WO 2005/057436 (2005-06-01), None
Chang et al., “Injection Molding of Chondrocyte/Alginate Constructs in the Shape of Facial Implants,”J. Biomed. Mat. Res. 55:503-511 (2001).
Cohen et al., “Direct Freeform Fabrication of Spatially Heterogeneous Living Pre-Cell-Seeded Implants,”Proceedings of the 15thSolid Freeform Fabrication Symposium, Austin TX (2004).
Czaplewski et al., “Nanofluidic Channels with Elliptical Cross Sections Formed Using a Nonlithographic Process,”Applied Physics Letters83(23):4836-4838 (2003).
Czaplewski et al., “Nonlithographic Approach to Nanostructure Fabrication Using a Scanned Electrospinning Source,”J. Vac. Sci. Technol. B21(6):2994-2997 (2003).
Fuller et al., “Ink-jet Printed Nanoparticle Microelectromechanical Systems,”Journal of Microelectromechanical Systems11:54-60 (2002).
Genes et al., “Effect of Substrate Mechanics on Chondrocyte Adhesion to Modified Alginate Surfaces,”Arch. Biochem. Biophys. 422:161-167 (2004).
Hung et al., “Anatomically Shaped Osteochondral Constructs for Articular Cartilage Repair,”J. Biomech. 36:1853-1864 (2003).
Kameoka & Craighead, “Fabrication of Oriented Polymeric Nanofibers on Planar Surfaces by Electrospinning,”Applied Physics Letters83(2):371-373 (2003).
Kameoka et al., “A Scanning Tip Electrospinning Source for Deposition of Oriented Nanofibres,”Nanotechnology14:1124-1129 (2003).
Kameoka et al.; “Fabrication of Suspended Silica Glass Nanofibers from Polymeric Materials Using a Scanned Electrospinning Source,”Nano Letters4(11):2105-2108 (2004).
Kameoka et al., “Polymeric Nanowire Architecture,”J. Mater. Chem.14:1503-1505 (2004).
Kim et al., “Experimental Model for Cartilage Tissue Engineering to Regenerate the Zonal Organization of Articular Cartilage,”Osteoarthritis Cartilage00:1-12 (2003).
Klein et al., “Tissue Engineering of Stratified Articular Cartilage from Chondrocyte Subpopulations,”Osteoarthritis Cartilage11:595-602 (2003).
Landers et al., “Desktop Manufacturing of Complex Objects, Prototypes and Biomedical Scaffolds by Means of Computer-Assisted Design Combined with Computer-guided 3D Plotting of Polymers and Reactive Oligomers,”Macromol. Mater. Eng. 282:17-21 (2000).
Lipson & Bongard, “An Exploration-Estimation Algorithm for Synthesis and Analysis of Engineering Systems Using Minimal Physical Testing,”Proceedings of the ASME Design Automation Conference(DAC04), Salt Lake City, UT (2004).
Malone & Lipson, “Freeform Fabrication of Electroactive Polymer Actuators and Electromechanical Devices,”Proceedings of the 15thSolid Freeform Fabrication Symposium, Austin, TX (2004).
Malone & Lipson, “Functional Freeform Fabrication for Physical Artificial Life,”Proceedings of the 9th International Conference on Artificial Life(ALIFE IX) (2004).
Malone & Lipson, “Solid Freeform Fabrication for Autonomous Manufacturing of Complete Mobile Robots,”Proceedings of Robosphere 2004, NASA Ames Research Center, CA, USA (2004).
Malone & Lipson, “Solid Free-Form Fabrication For Self-Sustained Robot Ecologies: Challenges and Opportunities,”Proceedings of Robosphere 2002, NASA Ames Research Center, CA, USA (2002).
Malone & Purwin, “Application of Machine Learning Methods to the Open-Loop Control of a Freeform Fabrication System,”Proceedings of the 15th Solid Freeform Fabrication Symposium, Austin, TX (2004).
Malone et al., “Freeform Fabrication of Zinc-Air Batteries and Electromechanical Assemblies,”Rapid Prototyping Journal10(1):58-69 (2004).
Malone et al., “Freeform Fabrication of Zinc-Air Batteries and Electromechanical Assemblies,”Proceedings of the 14thSolid Freeform Fabrication Symposium, Austin, TX, (2003).
Mironov et al., “Organ Printing: Computer-Aided Jet-based 3D Tissue Engineering,”Trends in Biotechnology21(4):157-161 (2003).
Ouyang et al., “Rapid Prototyping and Characterization of a WC-(NiSiB Alloy) Ceramet/Tool Steel Functionally Graded Material (FGM) Synthesized by Laser Cladding,” in Rapid Prototyping of Materials, F.D.S. Marquis and D.L. Bourell Eds., TMS (The Minerals, Metals & Materials Society) 77-93 (2002).
Pfister et al., “Biofunctional Rapid Prototyping for Tissue-Engineering Applications: 3D Bioplotting Versus 3D Printing,”Journal of Polymer Science Part A: Polymer Chemistry42:624-638 (2004).
Roth et al., “Inkjet Printing for High-Throughput Cell Patterning,”Biomaterials25:3707-3715 (2004).
Smurov et al., “Laser-assisted Direct Manufacturing of Functionally Graded 3D Objects by Coaxial Powder Injection,”Proceedings of the SPIE—The International Society for Optical Engineering5399:27-37 (2004).
Sun et al., “Multi-nozzle Biopolymer Deposition for Tissue Engineering Application,”6thInternational Conference on Tissue Engineering, Orlando, FL (Oct. 10-13, 2003) (Abstract only).
Xu et al., “Injectable Tissue-Engineered Cartilage with Different Chondrocyte Sources,”Plast. Reconstr. Surg. 113(5):1361-1371 (2004).
Jun. 19, 2009, Office Action from the U.S. Patent and Trademark Office in U.S. Appl. No. 11/201,057.

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