发明名称 Personalized Nutritional and Wellness Assistant
摘要 The invention pertains to the establishment, implementation and management of a personalized information system pertinent to a user's general health, wellness and/or sport performance. A novel set of portable devices with calorimetric, metabolic sensing, computing and communication capabilities are used for non-stop real-time measurement and display as well as long-term logging of highly accurate information about a user's metabolic state. Continuous real-time feedback on the user's respiratory quotient (RQ) and other data may be provided. A novel dual-battery system is also provided by which an uninterrupted power supply can be provided for electronic components. The personalized information system is further designed to consider measured and calculated metabolic parameters in relation to manually specified, user-specific goal(s), and to provide feedback about the user's progress with regards to these goals over the short- and long term. The system may be used to continuously determine the real-time nutritional state, energy uptake and energy expenditure level of the user, and may provide subsequent personalized nutritional- and exercise guidance to advance the user's efficiency at achieving and maintaining his/her specific health, wellness and/or sport performance goal(s). The invention also integrates user information, such as, but not limited to real-time energy uptake and real-time energy balance with social networking/gaming and other social interactions.
申请公布号 US2016235309(A1) 申请公布日期 2016.08.18
申请号 US201615080789 申请日期 2016.03.25
申请人 LifeQ Global Limited 发明人 Olivier Laurence Richard
分类号 A61B5/0205;A61B5/00 主分类号 A61B5/0205
代理机构 代理人
主权项 1. A portable device for analyzing the composition of the respired gasses of a subject, wherein the device comprises: (a) a body adapted to be held in a hand of the subject; and (b) at least one air flow conduit through which the subject can inspire or expire air through the body of the device; and (c) a sample analysis chamber; and (d) at least one sampling portal through which air may move into or out of the sample analysis chamber, favoring net inflow of expired air into the sample analysis chamber as a result of a diodicity generated by the design of the air flow conduit and sampling portal; and (e) an oxygen sensor for measuring the oxygen concentration of the air inside the sample analysis chamber; and (f) at least one flow sensor for measuring the flow of inspired or expired air through the device.
地址 Dublin IE