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The Genius Behind SmartDose: |
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Auto-adjusting is what puts SmartDose in a class of its own. No other portable on the market incorporates the necessary intelligent technology that enables SmartDose to automatically and continuously monitor and adjust dosing according to the user’s demand.
The brain behind SmartDose is a microprocessor that constantly monitors and interprets the pressure transducer.This microprocessor monitors the user’s requirements for each and every individual breath. Using sophisticated algorithms, instructions are instantaneously sent to the multi-valve mechanism to deliver the appropriate oxygen dose. A second technological distinction that only SmartDose offers is a unique multi-valve mechanism. Utilizing one 4 LPM valve and one 8 LPM valve, SmartDose can deliver the necessary doses from either valve in isolation, or both valves in combination. In conjunction with the microprocessor-controlled pressure transducer, SmartDose always delivers at the lowest flow for quiet operation. With this multi-valve configuration, the right volume transmission to a remote PC within the clinical environment, or to a simple SD memory card.
Utilizing the CODR (Clinical Oxygen Dose Recorder), the clinician is free to monitor the patient rather than monitoring and recording an oximeter. Detailed information enables dealers to assist in the treatment of difficult patients, and offer distinct differentiating benefits to the referring physician or rehab clinics by providing information that has not previously been available.With Inspired Technologies’ CODR, a breathby- breath stream of data is available to manage patients, without manual recording. The unit is simply powered up and begins to collect a file of the test that can be printed out in various forms. For complete information on the CODR, go to www.inspiredtechnologies.com of oxygen is delivered at the lowest flow option to fit the dose to the user’s breath rate, giving a quiet and comfortable dose during rest, but allowing larger doses to fit into the first 2/3 of the inhale when active.
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