Abstract:
A garment may be configured with one or more sensors and circuitry to communicate information related to a physiological condition to the user.
Abstract:
Exemplary methods, systems and components are implemented on a multipassenger transit vehicle to provide passenger access to a pre-assigned interactive electronic media device associated with a passenger identification (ID) code or associated with an on-board situs location. The electronic media device may include a storage component, and a battery module that can periodically be replaced or recharged. Security techniques may provide protection against unauthorized usage of each electronic media device, and also help prevent unauthorized removal of the electronic media device from its approved location in the transit vehicle. Selective content may be accessible or downloaded via a communication node, wherein such content may include application programs or informational data specifically correlated with a media device location or a designated vehicle passenger. Selective content and/or operation capability for the electronic media device may be varied based on predetermined qualifications or passenger request.
Abstract:
For example, and without limitation, an embodiment of the subject matter described herein includes a computer-implemented method. The computer-implemented method includes electronically receiving data indicative of a healthcare service provided to a particular patient. The received data includes at least one of data indicative of an activity within a proximity of the patient, or data inputted by the patient and relevant to determining an aspect of the healthcare service. The computer-implemented method includes converting the received data into information indicative of one or more units of service. The computer-implemented method includes estimating probable fees and costs incurred to date in providing the healthcare service. The estimating is responsive to the information indicative of units of healthcare service provided to the patient. The computer-implemented method includes outputting information indicative of the probable fees and costs incurred to date providing the healthcare service.
Abstract:
For example, and without limitation, an embodiment of the subject matter described herein includes a computer-implemented method. The computer-implemented method includes electronically receiving a request for information indicative of future fees and costs to be incurred by a particular patient presently undergoing a healthcare service. The computer-implemented method includes electronically receiving data at least partially indicative of the healthcare service provided to the patient. The computer-implemented method includes forecasting probable future fees and costs to complete delivery of the healthcare service. The forecasting is responsive to the received data and a characteristic of the healthcare service. The computer-implemented method includes identifying an efficacious alternative healthcare service option. The computer-implemented method includes outputting in substantially real time information indicative of the forecasted probable future fees and costs to complete delivery of the healthcare service to the patient and the efficacious alternative healthcare service option.
Abstract:
An improved heat engine is disclosed. The heat engine comprises at least one heat pipe containing a working fluid flowing in a thermal cycle between vapor phase at an evaporator end and liquid phase at a condenser end. Heat pipe configurations for high-efficiency/high-performance heat engines are disclosed. The heat pipe may have an improved capillary structure configuration with characteristic pore sizes between 1μ and 1 nm (e.g. formed through nano- or micro-fabrication techniques) and a continuous or stepwise gradient in pore size along the capillary flow direction. The heat engine may have an improved generator assembly configuration that comprises an expander (e.g. rotary/turbine or reciprocating piston machine) and generator along with magnetic bearings, magnetic couplings and/or magnetic gearing. The expander-generator may be wholly or partially sealed within the heat pipe. A heat engine system (e.g. individual heat engine or array of heat engines in series and/or in parallel) for conversion of thermal energy to useful work (including heat engines operating from a common heat source) is also disclosed. The system can be installed in a vehicle or facility to generate electricity.
Abstract:
Described embodiments include a system, device and method. A described device includes a first material configured to reflect a substantial portion of a specified incident air blast wave energy. The first material has an acoustic impedance substantially mismatched to air's acoustic impedance. A second material is configured for wearing proximate to a human body. The second material includes attenuating-regions. A first attenuating-region is configured to attenuate a first range of overpressures utilizing a first inelastic response. A second attenuating-region is configured to attenuate a second range of overpressures utilizing a second inelastic response. At least a portion of the back surface of the layer of the first material is proximate to at least a portion of the front surface of the layer of the second material.
Abstract:
Exemplary methods, systems and components enable selective control of an operational mode for a vehicle that is subject to an administrative standard. In some instances a qualified person or entity may attain a preferred consequential result related to a selected vehicle operation mode that may involve a vehicle operation paradigm and/or a vehicle travel route and/or a vehicle travel destination. In some embodiments, implementation of the selected vehicle operation mode may modify a conformity status of the vehicle relative to the administrative standard. Various accessible records may be maintained regarding administrative compliance states and their respective benefits, as well as regarding certification of preferable consequential results available to qualified recipients based on a correlated vehicle operational mode.
Abstract:
Systems and methods for vending devices having ad-watching as consideration are described. In some implementations, a vending apparatus includes a dispensing portion operable to dispense a product (e.g. electricity) to a user; a communication portion operable to provide a communicable content (e.g. an advertisement) to the user; and a control system operatively coupled to the dispensing portion and the communication portion. The control system receives a signal indicative of a consent by the user to receive or review the communicable content at least partially in exchange for the product, and after receipt of the signal, causes the communication portion to provide the communicable content to the user and causes the dispensing portion to dispense the product to the user. In further implementations, the apparatus may include a monitoring system operable to determine whether the user is receiving or reviewing the communicable content.
Abstract:
Described embodiments include a system, method, and program product. A described system includes a circuit that determines a substantial correspondence between (x) a perceivable feature included in a border region of a selected digital image and (y) a perceivable feature included in each other digital image of a plurality of digital images. A circuit gathers the determined substantial correspondences. A circuit generates data indicative of a border region-overlap status of the selected digital image. A circuit adds the data to an omitted-coverage list. A circuit iteratively designates a next digital image from the plurality of digital images as the selected digital image until each digital image has been designated. This circuit initiates processing of each of the iteratively designated next digital images. A circuit identifies a possible non-imaged portion of the region of interest. A circuit outputs informational data indicative of the possible non-imaged portion.
Abstract:
A method of converting user-selected printed text to a synthesized image sequence is provided. The method includes capturing a first image of printed text and generating a model information associated with the text.