摘要:
A multisystem sensor is disclosed that includes a first sensor subsystem and a second sensor subsystem. The multisystem sensor includes a sensor body having both sensor subsystems. The first sensor subsystem may monitor a first physiological characteristic and the second sensor subsystem may monitor a second physiological characteristic. The sensor body may include an isolating portion configured to isolate the first sensor subsystem and the second sensor subsystem. The sensor body and/or isolating portion may include refractive components and/or filters to prevent interference between sensor subsystems.
摘要:
A multisystem sensor is disclosed that includes a first sensor subsystem and a second sensor subsystem. The multisystem sensor includes a sensor body having both sensor subsystems. The first sensor subsystem may monitor a first physiological characteristic and the second sensor subsystem may monitor a second physiological characteristic. The sensor body may include an isolating portion configured to isolate the first sensor subsystem and the second sensor subsystem. The sensor body and/or isolating portion may include refractive components and/or filters to prevent interference between sensor subsystems.
摘要:
The present disclosure is generally directed to maintaining sensor quality standards and/or preventing improper remanufacture of sensors, such as pulse oximetry sensors. Present embodiments may include a system for facilitating the monitoring of physiologic conditions that includes a biometric measurement device configured to translate a unique biological feature of a patient into electronic data, a memory device configured to receive and store the electronic data after an initial reading of the unique biological feature by the biometric measurement device, and a processor configured limit access to the memory based on whether the biometric measurement device provides subsequent electronic data matching the electronic data from the initial reading.
摘要:
The present disclosure is generally directed to maintaining sensor quality standards and/or preventing improper remanufacture of sensors, such as pulse oximetry sensors. Present embodiments may include a system for facilitating the monitoring of physiologic conditions that includes an optical reader configured to translate an optical machine-readable representation of data associated with a patient into electronic data, a memory device configured to receive and store the electronic data after an initial reading of the machine-readable representation of data by the optical reader, and a processor configured to associate the electronic data with historical data obtained from the patient and limit access to the historical data based on whether the optical reader provides matching electronic data based on a subsequently read optical machine-readable representation of data when predefined conditions are met.
摘要:
The present disclosure is generally directed to maintaining sensor quality standards and/or preventing improper remanufacture of sensors, such as pulse oximetry sensors. Present embodiments may include a sensor that includes an optical machine-readable representation of data included on the sensor and/or packaged therewith, and an information element configured to store data corresponding to the data represented by the optical machine-readable representation.
摘要:
The present disclosure is generally directed to maintaining sensor quality standards and/or preventing improper remanufacture of sensors, such as pulse oximetry sensors. Present embodiments may include a sensor that includes an optical machine-readable representation of data included on the sensor and/or packaged therewith, and an information element configured to store data corresponding to the data represented by the optical machine-readable representation.
摘要:
The present disclosure is generally directed to maintaining sensor quality standards and/or preventing improper remanufacture of sensors, such as pulse oximetry sensors. Present embodiments may include a system for facilitating the monitoring of physiologic conditions that includes an optical reader configured to translate an optical machine-readable representation of data associated with a patient into electronic data, a memory device configured to receive and store the electronic data after an initial reading of the machine-readable representation of data by the optical reader, and a processor configured to associate the electronic data with historical data obtained from the patient and limit access to the historical data based on whether the optical reader provides matching electronic data based on a subsequently read optical machine-readable representation of data when predefined conditions are met.