Patents by Inventor Douglas A. Kornbluth
Douglas A. Kornbluth has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 8936382Abstract: In an embodiment, an attachment system for communicating light energy from a light source to a light-conducting fiber includes a light pipe body sufficiently designed to engage a distal end of a light pipe, the light pipe body comprising at least one opening configured to dissipate heat buildup from light energy; a front assembly sufficiently designed to engage the light pipe body, the front assembly comprising an orifice and at least one opening configured to dissipate heat buildup from light energy; a light-conducting fiber body sufficiently designed to engage the front assembly and to hold a proximal portion of a light-conducting fiber, the light-conducting fiber body positioned in the orifice of the front assembly; and an optical taper assembly sufficiently designed to hold an optical taper, the optical taper assembly positioned between and spaced apart from the front assembly, and positioned between and spaced apart from the light pipe.Type: GrantFiled: September 13, 2012Date of Patent: January 20, 2015Assignee: IlluminOss Medical, Inc.Inventors: Anthony W. O'Leary, Robert A. Rabiner, Dennis P. Colleran, Justin G. Dye, Douglas A. Kornbluth, Narissa Y. Chang, Joshua M. Morin
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Patent number: 8574233Abstract: Photodynamic bone stabilization systems are disclosed herein. In an embodiment, a photodynamic bone stabilization system includes a catheter having an elongated shaft with a proximal end adapter, a distal end releasably engaging an expandable portion, and a longitudinal axis therebetween; a light-conducting fiber configured to transmit light energy to the expandable portion; a light-sensitive liquid monomer comprising an initiator, wherein the initiator is activated when the light-conducting fiber transmits the light energy to initiate polymerization of the light-sensitive liquid monomer; and a cooling medium configured to control polymerization temperature, wherein the catheter comprises an inner void sufficiently designed to pass the light-sensitive liquid monomer into the expandable portion, and wherein the catheter comprises an inner lumen sufficiently designed to pass the light-conducting fiber into the expandable portion and configured to circulate the cooling medium.Type: GrantFiled: September 14, 2012Date of Patent: November 5, 2013Assignee: IlluminOss Medical, Inc.Inventors: Robert A. Rabiner, Dennis P. Colleran, Anthony W. O'Leary, Narissa Y. Chang, Douglas A. Kornbluth, Justin G. Dye, Joshua M. Morin
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Patent number: 8512338Abstract: Photodynamic bone stabilization systems are disclosed herein. In an embodiment, a photodynamic bone stabilization system includes a catheter having an elongated shaft with a proximal end adapter, a distal end releasably engaging an expandable portion, and a longitudinal axis therebetween; a light-conducting fiber configured to transmit light energy to the expandable portion; a light-sensitive liquid monomer comprising an initiator, wherein the initiator is activated when the light-conducting fiber transmits the light energy to initiate polymerization of the light-sensitive liquid monomer; and a cooling medium configured to control polymerization temperature, wherein the catheter comprises an inner void sufficiently designed to pass the light-sensitive liquid monomer into the expandable portion, and wherein the catheter comprises an inner lumen sufficiently designed to pass the light-conducting fiber into the expandable portion and configured to circulate the cooling medium.Type: GrantFiled: April 7, 2010Date of Patent: August 20, 2013Assignee: IlluminOss Medical, Inc.Inventors: Robert A. Rabiner, Dennis P. Colleran, Anthony W. O'Leary, Narissa Y. Chang, Douglas A. Kornbluth, Justin G. Dye, Joshua M. Morin
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Publication number: 20130023877Abstract: Photodynamic bone stabilization systems are disclosed herein. In an embodiment, a photodynamic bone stabilization system includes a catheter having an elongated shaft with a proximal end adapter, a distal end releasably engaging an expandable portion, and a longitudinal axis therebetween; a light-conducting fiber configured to transmit light energy to the expandable portion; a light-sensitive liquid monomer comprising an initiator, wherein the initiator is activated when the light-conducting fiber transmits the light energy to initiate polymerization of the light-sensitive liquid monomer; and a cooling medium configured to control polymerization temperature, wherein the catheter comprises an inner void sufficiently designed to pass the light-sensitive liquid monomer into the expandable portion, and wherein the catheter comprises an inner lumen sufficiently designed to pass the light-conducting fiber into the expandable portion and configured to circulate the cooling medium.Type: ApplicationFiled: September 14, 2012Publication date: January 24, 2013Inventors: Robert A. Rabiner, Dennis P. Colleran, Anthony W. O'Leary, Narissa Y. Chang, Douglas A. Kornbluth, Justin G. Dye, Joshua M. Morin
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Publication number: 20130003406Abstract: In an embodiment, an attachment system for communicating light energy from a light source to a light-conducting fiber includes a light pipe body sufficiently designed to engage a distal end of a light pipe, the light pipe body comprising at least one opening configured to dissipate heat buildup from light energy; a front assembly sufficiently designed to engage the light pipe body, the front assembly comprising an orifice and at least one opening configured to dissipate heat buildup from light energy; a light-conducting fiber body sufficiently designed to engage the front assembly and to hold a proximal portion of a light-conducting fiber, the light-conducting fiber body positioned in the orifice of the front assembly; and an optical taper assembly sufficiently designed to hold an optical taper, the optical taper assembly positioned between and spaced apart from the front assembly, and positioned between and spaced apart from the light pipe.Type: ApplicationFiled: September 13, 2012Publication date: January 3, 2013Inventors: Anthony W. O'Leary, Robert A. Rabiner, Dennis P. Colleran, Justin G. Dye, Douglas A. Kornbluth, Narissa Y. Chang, Joshua M. Morin
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Patent number: 8328402Abstract: In an embodiment, an attachment system for communicating light energy from a light source to a light-conducting fiber includes a light pipe body sufficiently designed to engage a distal end of a light pipe, the light pipe body comprising at least one opening configured to dissipate heat buildup from light energy; a front assembly sufficiently designed to engage the light pipe body, the front assembly comprising an orifice and at least one opening configured to dissipate heat buildup from light energy; a light-conducting fiber body sufficiently designed to engage the front assembly and to hold a proximal portion of a light-conducting fiber, the light-conducting fiber body positioned in the orifice of the front assembly; and an optical taper assembly sufficiently designed to hold an optical taper, the optical taper assembly positioned between and spaced apart from the front assembly, and positioned between and spaced apart from the light pipe.Type: GrantFiled: June 29, 2012Date of Patent: December 11, 2012Assignee: IlluminOss Medical, Inc.Inventors: Anthony W. O'Leary, Robert A. Rabiner, Dennis P. Colleran, Justin G. Dye, Douglas A. Kornbluth, Narissa Y. Chang, Joshua M. Morin
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Publication number: 20120262939Abstract: In an embodiment, an attachment system for communicating light energy from a light source to a light-conducting fiber includes a light pipe body sufficiently designed to engage a distal end of a light pipe, the light pipe body comprising at least one opening configured to dissipate heat buildup from light energy; a front assembly sufficiently designed to engage the light pipe body, the front assembly comprising an orifice and at least one opening configured to dissipate heat buildup from light energy; a light-conducting fiber body sufficiently designed to engage the front assembly and to hold a proximal portion of a light-conducting fiber, the light-conducting fiber body positioned in the orifice of the front assembly; and an optical taper assembly sufficiently designed to hold an optical taper, the optical taper assembly positioned between and spaced apart from the front assembly, and positioned between and spaced apart from the light pipe.Type: ApplicationFiled: June 29, 2012Publication date: October 18, 2012Inventors: Anthony W. O'Leary, Robert A. Rabiner, Dennis P. Colleran, Justin G. Dye, Douglas A. Kornbluth, Narissa Y. Chang, Joshua M. Morin
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Patent number: 8210729Abstract: In an embodiment, an attachment system for communicating light energy from a light source to a light-conducting fiber includes a light pipe body sufficiently designed to engage a distal end of a light pipe, the light pipe body comprising at least one opening configured to dissipate heat buildup from light energy; a front assembly sufficiently designed to engage the light pipe body, the front assembly comprising an orifice and at least one opening configured to dissipate heat buildup from light energy; a light-conducting fiber body sufficiently designed to engage the front assembly and to hold a proximal portion of a light-conducting fiber, the light-conducting fiber body positioned in the orifice of the front assembly; and an optical taper assembly sufficiently designed to hold an optical taper, the optical taper assembly positioned between and spaced apart from the front assembly, and positioned between and spaced apart from the light pipe.Type: GrantFiled: April 6, 2010Date of Patent: July 3, 2012Assignee: IlluminOss Medical, Inc.Inventors: Anthony W. O'Leary, Robert A. Rabiner, Dennis P. Colleran, Justin G. Dye, Douglas A. Kornbluth, Narissa Y. Chang, Joshua M. Morin
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Publication number: 20100265733Abstract: In an embodiment, an attachment system for communicating light energy from a light source to a light-conducting fiber includes a light pipe body sufficiently designed to engage a distal end of a light pipe, the light pipe body comprising at least one opening configured to dissipate heat buildup from light energy; a front assembly sufficiently designed to engage the light pipe body, the front assembly comprising an orifice and at least one opening configured to dissipate heat buildup from light energy; a light-conducting fiber body sufficiently designed to engage the front assembly and to hold a proximal portion of a light-conducting fiber, the light-conducting fiber body positioned in the orifice of the front assembly; and an optical taper assembly sufficiently designed to hold an optical taper, the optical taper assembly positioned between and spaced apart from the front assembly, and positioned between and spaced apart from the light pipe.Type: ApplicationFiled: April 6, 2010Publication date: October 21, 2010Inventors: Anthony W. O'Leary, Robert A. Rabiner, Dennis P. Colleran, Justin G. Dye, Douglas A. Kornbluth, Narissa Y. Chang, Joshua M. Morin
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Publication number: 20100262069Abstract: Photodynamic bone stabilization systems are disclosed herein. In an embodiment, a photodynamic bone stabilization system includes a catheter having an elongated shaft with a proximal end adapter, a distal end releasably engaging an expandable portion, and a longitudinal axis therebetween; a light-conducting fiber configured to transmit light energy to the expandable portion; a light-sensitive liquid monomer comprising an initiator, wherein the initiator is activated when the light-conducting fiber transmits the light energy to initiate polymerization of the light-sensitive liquid monomer; and a cooling medium configured to control polymerization temperature, wherein the catheter comprises an inner void sufficiently designed to pass the light-sensitive liquid monomer into the expandable portion, and wherein the catheter comprises an inner lumen sufficiently designed to pass the light-conducting fiber into the expandable portion and configured to circulate the cooling medium.Type: ApplicationFiled: April 7, 2010Publication date: October 14, 2010Inventors: Robert A. Rabiner, Dennis P. Colleran, Anthony W. O'Leary, Narissa Y. Chang, Douglas A. Kornbluth, Justin G. Dye, Joshua M. Morin