US8465425B2 - Analyte Monitoring Device and Methods of Use - Google Pa…
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More notably, the present invention pertains to units and BloodVitals monitor methods for the in vivo monitoring of an analyte utilizing an electrochemical sensor to supply info to a affected person about the level of the analyte. High or low levels of glucose or different analytes could have detrimental results. This system doesn't permit steady or computerized monitoring of glucose levels in the body, however usually should be carried out manually on a periodic foundation. Unfortunately, BloodVitals SPO2 the consistency with which the level of glucose is checked varies widely amongst people. Many diabetics find the periodic testing inconvenient and so they generally overlook to test their glucose degree or do not have time for a correct check. As well as, some individuals wish to keep away from the ache associated with the check. These situations may end in hyperglycemic or hypoglycemic episodes. An in vivo glucose sensor that continuously or automatically screens the individual's glucose stage would enable people to extra simply BloodVitals monitor their glucose, or different analyte, ranges.
Some units embody a sensor information which rests on or close to the skin of the affected person and could also be connected to the patient to hold the sensor in place. These sensor guides are typically bulky and do not permit for freedom of movement. The size of the sensor guides and presence of cables and wires hinders the convenient use of those devices for on a regular basis purposes. There's a necessity for a small, compact device that can function the sensor and supply indicators to an analyzer with out considerably restricting the movements and actions of a patient. Continuous and/or computerized monitoring of the analyte can provide a warning to the affected person when the level of the analyte is at or near a threshold stage. For example, if glucose is the analyte, then the monitoring machine might be configured to warn the patient of present or impending hyperglycemia or BloodVitals SPO2 hypoglycemia. The affected person can then take appropriate actions. Many of these gadgets are small and comfy when used, thereby allowing a variety of actions.
One embodiment is a sensor management unit having a housing adapted for placement on pores and skin. The housing can also be tailored to obtain a portion of an electrochemical sensor. Other elements and options for the sensor are described beneath. Further parts and choices for the show unit are described under. Another embodiment is a technique of utilizing an electrochemical sensor. An insertion gun is aligned with a port on the mounting unit. One embodiment of the invention is a technique for detecting failures in an implanted analyte-responsive sensor. An analyte-responsive sensor is implanted right into a patient. N working electrodes, the place N is an integer and real-time SPO2 tracking is two or larger, and BloodVitals monitor a typical counter electrode. Signals generated at one of the N working electrodes and at the widespread counter electrode are then obtained and the sensor is determined to have failed if the signal from the frequent counter electrode is just not N occasions the signal from one of many working electrodes, inside a predetermined threshold limit.
Yet another embodiment is a technique of calibrating an electrochemical sensor having one or more working electrodes implanted in a patient. The calibration worth is then related to at the least one of many indicators from the a number of working electrodes if the circumstances described above are met. Two or extra conductive contacts on the sensor control unit are coupled to contact pads on the sensor. Then, using the sensor control unit, knowledge is collected concerning a stage of an analyte from indicators generated by the sensor. The collected knowledge is transmitted to a show unit and a sign of the extent of the analyte is displayed on the display unit. FIG. 2 is a top view of 1 embodiment of an analyte sensor, in accordance with the invention. FIG. 3B is a cross-sectional view of one other embodiment of an analyte sensor, in response to the invention. FIG. 4A is a cross-sectional view of a 3rd embodiment of an analyte sensor, in response to the invention.
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