Abstract:
Embodiments of the disclosure pertain to compositions containing (i) one or more non-antifreeze proteins or cell components or cells and (ii) one or more antifreeze proteins (AFPs), mimetics thereof, and/or analogs thereof, and a method of stabilizing a biologic (e.g., a protein, microbe, cell component or cell) against temperature stress and aggregation. The AFP may be selected from known antifreeze polypeptides and antifreeze peptides, analogs and mimetics of antifreeze proteins, active fragments of such antifreeze proteins, polypeptide and peptide mimetics, antifreeze peptoids and polymers, and combinations thereof. The non-antifreeze protein, cell component or cell comprises a known protein, cell component or cell used in the pharmaceutical, medical, agricultural, veterinary and/or food industry(ies). The AFP protects the function of the non-antifreeze protein, microbe(s), cell component(s) or cell(s) under temperature stress (e.g., a temperature of −20-60° C.).
Abstract:
An automated manufacturing system comprises a computer processing system and a plurality of consolidation systems. The computer processing system receives information on product subbatches and product packages and consolidation status information to produce consolidation assignment information, each product package comprising one or more product subbatches. The consolidation systems receive the product subbatches in accordance to the consolidation assignment information and consolidate the product subbatches into product packages, wherein the status of the consolidation systems are tracked and the consolidation status information is sent to the computer processing system.
Abstract:
A compound of formula: where Ar1, Ar2, X, R3, and m are as disclosed herein or a pharmaceutically acceptable salt thereof (a “Cycloheteroalkenyl Compound”); compositions comprising an effective amount of a Cycloheteroalkenyl Compound; and methods for treating or preventing pain, UI, an ulcer, IBD, IBS, an addictive disorder, Parkinson's disease, parkinsonism, anxiety, epilepsy, stroke, a seizure, a pruritic condition, psychosis, a cognitive disorder, a memory deficit, restricted brain function, Huntington's chorea, amyotrophic lateral sclerosis, dementia, retinopathy, a muscle spasm, a migraine, vomiting, dyskinesia, or depression in an animal comprising administering to an animal in need thereof an effective amount of a Cycloheteroalkenyl Compound are disclosed herein.
Abstract:
A method for producing a gift card for a gift imaging product, comprises receiving an order of the gift imaging product from a user, producing the gift imaging product, producing the gift card by the user for the gift imaging product; and consolidating the gift card with the gift imaging product into one package.
Abstract:
An automated manufacturing system comprises a computer processing system and a plurality of consolidation systems. The computer processing system receives information on product subbatches and product packages and consolidation status information to produce consolidation assignment information, each product package comprising one or more product subbatches. The consolidation systems receive the product subbatches in accordance to the consolidation assignment information and consolidate the product subbatches into product packages, wherein the status of the consolidation systems are tracked and the consolidation status information is sent to the computer processing system.
Abstract:
A method for personalizing an image-based physical manifestation to conform with user preferences for image processing. In one implementation, the method includes identifying an image for processing, identifying user preferences for image processing and processing the image including manipulating image data for the image in accordance with the user preferences.
Abstract:
An automated manufacturing system comprises a computer processing system and a plurality of consolidation systems. The computer processing system receives information on product subbatches and product packages and consolidation status information to produce consolidation assignment information, each product package comprising one or more product subbatches. The consolidation systems receive the product subbatches in accordance to the consolidation assignment information and consolidate the product subbatches into product packages, wherein the status of the consolidation systems are tracked and the consolidation status information is sent to the computer processing system.
Abstract:
Digital ink jet printing apparatus and method. The apparatus receives an input image file having a plurality of pixels, each pixel described by at least one pixel value respectively associated with an optical density. The apparatus comprises a printhead and at least one nozzle integrally attached to the printhead, the nozzle being capable of ejecting an ink droplet therefrom to define an associated one of the optical densities. A waveform generator is connected to the nozzle for generating an electronic waveform to be supplied to the nozzle. In this manner, the nozzle ejects the ink droplet in response to the waveform supplied thereto. The waveform is defined by a plurality of pulses. A look-up table stores a plurality of waveform serial numbers assigned to respective waveforms, each waveform being defined by at least one predetermined parameter, such as number of pulses, pulse amplitude, pulse width and/or time delay between pulses. A calibrator receiving the input image converts the pixel values of the input image to waveform index number associated with the waveform serial number.
Abstract:
Ink jet printing apparatus for forming a plurality of ink images on receivers in response to one or more digital image file(s) each including at least one or more digital images and information indicating the number of ink images to be made. The ink jet printing apparatus includes at least one ink jet print head adapted to deliver ink to the receiver and at least two receiver webs. The ink jet printing apparatus selectively moves one or more receiver webs along a receiver path past the ink jet print head. A control circuitry responsive to the digital image file(s) determines the locations of the ink images to be formed on the two receiver webs in such a manner that minimizes receiver waste. The ink jet printing apparatus actuates the ink jet print head(s) to form ink images on the receiver webs, whereby receiver waste is minimized.
Abstract:
Printer and print head capable of printing in a plurality of dynamic ranges of ink droplet volumes, and method of assembling same. A plurality of first nozzles are connected to a print head body, each first nozzle having a first orifice of a first size for ejecting an ink droplet having a first volume. The ink droplet volume is selected from a first dynamic range of volumes uniquely associated with each first nozzle. A plurality of second nozzles are also connected to the print head body, each second nozzle having a second orifice of a second size larger than the first size of the first nozzles for ejecting an ink droplet therethrough having a second volume larger than the first volume. The second volume is selected from a second dynamic range of volumes, which second dynamic range of volumes may be greater than the first dynamic range of volumes. In this manner, the printer and associated print head body are capable of printing in a plurality of dynamic ranges of volumes, so that a single printer can print either at low density levels or at high density levels with a minimum number of nozzles.