Abstract:
A device for measuring a compound with in a sample both non-invasively and invasively is provided. The devise comprised a source of electromagnetic radiation (EMR) operatively coupled to a power source, one or more receptors and a detector. The one or more receptors shaped to receive a body part and a sample holder and optically coupled to the source of EMR by one or more radiation guiding elements. The radiation guiding element comprising an input in operable association with the source of EMR, and an output in operable association with a detector and coupled to a processing system.
Abstract:
The present invention provides a method for measuring a blood analyte concentration of a body part comprising removing a portion or all of the blood from the body part to produce a modified body part, and recording a first absorbance value of the modified body part. This is followed by filling the body part with blood to produce a filled body part, and recording a second absorbance value of the filled body part. A difference spectrum is obtained by subtracting the first absorbance values from the second absorbance values, and a calibration algorithm for the blood analyte is applied to the difference spectrum, thereby measuring the concentration of the blood analyte. Also provided is an apparatus for determining the concentration of a blood analyte of a body part. The apparatus comprising a chamber of a size and shape to receive the body part, where the chamber comprises an element for withdrawing and reintroducing blood from the body part, when the body part is inserted within the chamber. The chamber also comprising one or more than one port for introducing electromagnetic radiation into the chamber and onto that body part, and collecting remaining electromagnetic radiation following interaction with the body part.
Abstract:
A method for measuring the concentration of a compound in the blood of a part of a subject is provided. An invasive or non-invasive sample of blood may be used for this determination. Also provided is a device for measuring the concentration of a compound in the blood of a subject. The device comprises a source of electromagnetic radiation, a holder, a detector and a processing system.
Abstract:
A method for measuring the concentration of various analytes in the blood of a part of a subject is provided An invasive or non-invasive sample of blood may be used for this determination Also provided is a device for measuring the concentration of a compound in the blood of a subject. The device comprises a source of electromagnetic radiation, a holder, a detector and a processing system.
Abstract:
A method for measuring the concentration of a compound in the blood of a part of a subject is provided. An invasive or non-invasive sample of blood may used for this determination. Also provided is a device for measuring the concentration of a compound in the blood of a subject.
Abstract:
A method for measuring the concentration of a compound in the blood of a part of a subject is provided. An invasive or non-invasive sample of blood may used for this determination. Also provided is a device for measuring the concentration of a compound in the blood of a subject.
Abstract:
A photo-spectroscopic analytic device is given for detecting analytes in a sample. The analyte may be microbial pathogen, a food sample, a sample of a body fluid, water, or a combination thereof. The device comprises an electromagnetic radiation (EMR) source in operative communication with one or more optic inputs, one or more receptors for receiving one or more sample holders, each receptor comprising one or more of the optic inputs which are operatively coupled to one or more optic outputs thereby forming an optic input-optic output pair. Each of the receptors may comprise different cross-sectional profiles corresponding to cross-sectional profiles of the sample holders.
Abstract:
A device for measuring a compound with in a sample both non-invasively and invasively is provided. The devise comprised a source of electromagnetic radiation (EMR) operatively coupled to a power source, one or more receptors and a detector. The one or more receptors shaped to receive a body part and a sample holder and optically coupled to the source of EMR by one or more radiation guiding elements. The radiation guiding element comprising an input in operable association with the source of EMR, and an output in operable association with a detector and coupled to a processing system.
Abstract:
The presence of rank vegetation or loose crop residue on the soil surface (straw, maize stalks etc.) is always troublesome to ploughs, cultivators, seed drills and other agricultural implements required to slice vertically through and penetrate the soil. In the illustrated embodiment of the invention (FIG. 1), the leading edge area of the knife coulter 10 of a seed drill 14 is continually cleared of trash by resilient disc-mounted cleaning members 16-18. The cleaning members comprise springs which have an outwardly positioned elongated section designed to be engaged by the ground or an abutment on the disc support structure to flex each member as the disc on which they are mounted is rotated. On losing contact with the ground or the abutment, each member will, in turn, spring back from a flexed position (member 16) to a relaxed position (member 17). During this spring back movement, the elongated section moves past or along the leading edge of the knife coulter and strikes trash therefrom.