Capek
Jeffrey T. Capek, Fishers, IN US
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20140299215 | PRESSURIZED GAS RESERVOIRS INCLUDING AN ELASTOMERIC WALL - A pressurizable gas reservoir can include a first end member and a second end member that is disposed in longitudinally-spaced relation to the first end member. A flexible reservoir member can extend between opposing first and second ends. The first end secured to the first end member and the second end secured to the second end member. The flexible reservoir member at least partially defines a reservoir chamber between the first and second end members that is capable of storing a quantity of pressurized gas for an extended duration of time. The first and second end members can be maintained in substantially-fixed axial position relative to one another. A suspension system including such a pressurized gas reservoir and a method of assembly are also included. | 10-09-2014 |
John M. Capek, Los Gatos, CA US
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20110307053 | POLYMER METAL AND COMPOSITE IMPLANTABLE MEDICAL DEVICES - A device and a method of manufacturing an implantable medical device, such as a stent, are described herein. The device includes a metallic region composed of a bioerodable metal and a polymer region composed of a biodegradable polymer contacting the metallic region. The metallic region may erode at a different rate when exposed to bodily fluids than the polymer region when exposed to bodily fluids. In certain embodiments, the polymer region is an outer layer and the metallic region is an inner layer of the device. | 12-15-2011 |
20110313510 | Polymer Metal and Composite Implantable Medical Devices - A device and a method of manufacturing an implantable medical device, such as a stent, are described herein. The device includes a metallic region composed of a bioerodable metal and a polymer region composed of a biodegradable polymer contacting the metallic region. The metallic region may erode at a different rate when exposed to bodily fluids than the polymer region when exposed to bodily fluids. In certain embodiments, the polymer region is an outer layer and the metallic region is an inner layer of the device. A further aspect of the invention includes device and a method of manufacturing the device that includes a mixture of a biodegradable polymer and bioerodable metallic particles. The mixture may be used to fabricate an implantable medical device or to coat an implantable medical device. In some embodiments, the metallic particles are metallic nanoparticles. | 12-22-2011 |
Joseph C. Capek, Granger, IN US
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20130204265 | ENGAGEABLE SLAPHAMMER TOOL AND INSTRUMENTATION - A slap hammer tool and associated instrumentation to engage with the slap hammer tool are disclosed herein. In some examples, a slap hammer tool including an end adapted for engagement with a quick release connector of an instrument is provided. The instrument can be adapted to receive the distal end of the slap hammer for engagement, the engagement being provided through rotation of the slap hammer relative to the instrument. Once the slap hammer and instrument are engageably coupled, the slap hammer can be used to provide force and accompanying motion away from the instrument in the direction of the slap hammer instrument. Force can be provided by the slap hammer tool to a coupled instrument, for example, to move or extract the coupled instrument from placement on a surgical area. | 08-08-2013 |
Peter G. Capek, Ossining, NY US
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20130283278 | Apparatus And Methods For Performing Computer System Maintenance And Notification Activities In An Opportunistic Manner - A computer-readable medium tangibly embodying a program of machine-readable instructions executable by a digital processor of a computer system to perform operations for controlling computer system activities. The operations include receiving a command entered with an input device of the computer system to begin opportunistic computer system activities, where the command specifies a time period available for opportunistic computer system activities. Then initiating at least one computer system activity during the time period available for opportunistic computer system activities. | 10-24-2013 |
Petr Capek, San Diego, CA US
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20120258871 | PEPTIDE CONSTRUCTS AND ASSAY SYSTEMS - The present invention provides methods for constructing peptide construct sets and methods of use of these peptide construct sets in assay systems for peptide analysis, and in particular for use in high throughput peptide analysis. The methods allow for analysis of large sets of peptide constructs in a cost-effective manner, employing molecular biological techniques that are both robust and easily parallelized. Thus, the methods allow for the construction of peptide construct sets encompassing, e.g., the human proteome. | 10-11-2012 |
20140051589 | PEPTIDE CONSTRUCTS AND ASSAY SYSTEMS - The present invention provides methods for constructing peptide construct sets and methods of use of these peptide construct sets in assay systems for peptide analysis, and in particular for use in high throughput peptide analysis. The methods allow for analysis of large sets of peptide constructs in a cost-effective manner, employing molecular biological techniques that are both robust and easily parallelized. Thus, the methods allow for the construction of peptide construct sets encompassing, e.g., the human proteome. | 02-20-2014 |
20140287942 | Methods and Devices for Detection and Acquisition of Biomarkers - The present invention provides devices and methods for detecting and capturing molecular biomarkers from a subject in situ. Specifically, the devices contain an array of microneedles to which are attached probes specific for one or more biomarkers of interest. The devices can be used directly on a subject (e.g., via skin piercing) in detecting the biomarkers in the body of the subject (e.g., tissues, blood stream). | 09-25-2014 |
Thomas George Capek, Elmira, NY US
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20150114041 | METHOD OF MAKING A COVER GLASS - A method of making a strengthened glass article includes providing a flat glass article having a select contour and a glass surface covered by a protective coating layer. The protective coating layer is removed from the glass surface without touching the glass surface with any solid object. Immediately after the protective coating layer is removed from the glass surface, the flat glass article is subjected to an ion-exchange process to strengthen the flat glass article and improve the resistance of the flat glass article to subsequent damage. | 04-30-2015 |