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    • 8. 发明专利
    • Methods relating to pest control
    • AU2020413656A1
    • 2022-07-14
    • AU2020413656
    • 2020-12-24
    • GLOBALFORCE IP LTDHOWARD PETERBETTS RICHARD
    • HOWARD PETERBETTS RICHARD
    • A01M23/14A01M19/00A01M23/00A01M23/24A01M23/36A01M23/38A01M27/00
    • Disclosed is a method of incapacitating a target pest species. The method having the steps of providing a trap enclosure, the trap enclosure having an entry point for the target pest species into an interior of the trap enclosure, and a bait station to attract the target pest species. Provided also is a kill engine, at least in part mounted from the trap enclosure, to at least in part deliver incapacitating energy to the target species, whereby the kill engine does not require electricity, the kill engine using an inflammable gas charge, the kill engine when triggered actuates and then resets itself. A source of compressed inflammable gas is connected to and supplies the kill engine. Present is a species adapter connected at least in part to the trap enclosure to adapt the trap enclosure to the target pest species, the species adapter based on the size, habits or travel, nature of the target pest species. A kill zone is defined within an interior of the trap enclosure and or the species adapter. A trigger mechanism actuates the kill engine when triggered by the target pest species when in the kill zone. A force delivery hammer, driven by the kill engine, delivers the incapacitating energy, such that when the target pest species enters the apparatus and the kill zone it triggers the trigger mechanism to in turn actuate the kill engine to deliver the incapacitating energy by impacting the pest.
    • 10. 发明专利
    • Sensor
    • GB0906368D0
    • 2009-05-20
    • GB0906368
    • 2005-04-14
    • PISANI JUSTINWARD STEPHENHOWARD PETERCADE DANIEL
    • A61B5/00
    • The device comprises a body worn unit and a processing unit 40. The former includes at least three electrodes 51-54 arranged in a substantially triangular configuration to measure various physiological parameters, and may be a strap-on harness 57, an item of clothing or a self-adhesive patch (fig. 6). Additional sensors may be provided on the unit (e.g. thermometer 42, pulse oximetry sensor, accelerometer). The processing unit is removably attached to the body worn unit using snap rivets 58, 59, 60, 63, 64 and eyelets 44, and comprises sensor electronics to analyse data and transmit it to a remote site. The monitoring device measures physiological parameters such as ECG, respiration (using motion or impedance measurements), skin surface temperature, body gravitational load, skin surface electrical impedance, blood oxygen level, orientation, and motion. Alternatively, the device may be mounted remotely (fig. 8). Also disclosed is an ECG measurement device using an accelerometer to detect motion and reduce signal bandwidth and improve ECG signal to noise ratio (fig. 9).