Method and system for monitoring oxygenation levels of a compartment for detecting conditions of a compartment syndrome
Abstract
A method and system for continually monitoring oxygenation levels in real-time in compartments of an animal limb, such as in a human leg or a human thigh or a forearm, can be used to assist in the diagnosis of a compartment syndrome. The method and system can include one or more near infrared compartment sensors in which each sensor can be provided with a compartment alignment mechanism and a central scan depth marker so that each sensor may be precisely positioned over a compartment of a living organism. The method and system can include a device for displaying oxygenation levels corresponding to respective compartment sensors that are measuring oxygenation levels of a compartment of interest. The method and system can also monitor the relationship between blood pressure and oxygenation levels and activate alarms based on predetermined conditions relating to the oxygenation levels or blood pressure or both.
Claims
exact text as granted — not AI-modified1 - 4 . (canceled)
5 . A spectrophotometric-based system for simultaneously monitoring blood perfusion in multiple compartments of a leg, the system comprising:
a first near-infrared sensor configured for application to a target compartment of a target leg and a second near-infrared sensor configured for application to a contralateral compartment of a contralateral leg, wherein each of the first near-infrared sensor and the second near-infrared sensor comprises:
a light source for emitting near-infrared energy into a compartment of tissue; and
a light receiver for receiving near-infrared energy exiting the compartment of tissue;
a visual display device in electrical communication with the first near-infrared sensor and the second near-infrared sensor, wherein the visual display device is configured to:
display hemoglobin oxygen saturation readings received from each of the first near-infrared sensor and the second near-infrared sensor;
indicate hyperemia in the target compartment of the target leg when a first hemoglobin oxygen saturation reading associated with the first near-infrared sensor exceeds a second hemoglobin oxygen saturation reading associated with the second near-infrared sensor; and
indicate compartment syndrome in the target compartment of the target leg when a first hemoglobin oxygen saturation reading associated with the first near-infrared sensor equals or is less than a second hemoglobin oxygen saturation reading associated with the second near-infrared sensor.
6 . The system of claim 5 , wherein the visual display device is further configured to indicate a warning when a first hemoglobin oxygen saturation reading associated with the first near-infrared sensor drops by a predefined amount.
7 . The system of claim 5 , wherein indicating hyperemia in the target compartment comprises one or more of a visual indicator and an audible indicator.
8 . The system of claim 5 , wherein indicating compartment syndrome in the target compartment comprises one or more of a visual indicator and an audible indicator.
9 . The system of claim 5 , wherein the first near-infrared sensor comprises an array of near-infrared sensors, each configured to generate a unique hemoglobin oxygen saturation reading.
10 . The system of claim 9 , wherein the display is further configured to indicate an expanding hematoma based on a comparison of the unique hemoglobin oxygen saturation readings of the array of near-infrared sensors.
11 . The system of claim 5 , wherein at least one of the first near-infrared sensor and the second near-infrared sensor comprises an alignment mechanism.
12 . The system of claim 5 , wherein at least one of the first near-infrared sensor and the second near-infrared sensor is a stacked compartment sensor comprising a plurality of light receivers.
13 . The system of claim 5 , wherein at least one of the first near-infrared sensor and the second near-infrared sensor comprises a material layer between a substrate of the sensor and a patient skin surface, the material layer operable to affect a scan depth of the sensor.
14 . The system of claim 5 , wherein the visual display device is further configured to present sensor placement data to a user for orienting a sensor on a patient.
15 . The system of claim 5 , wherein at least one of the first near-infrared sensor and the second near-infrared sensor is wireless and so further comprises:
a processing module coupled to the light source and the light receiver and configured to generate hemoglobin oxygen saturation readings; a wireless transmitter coupled to the processing module for transmitting the hemoglobin oxygen saturation readings; a portable energy source configured to energize the light source, the processing module, and the wireless transmitter.
16 . The system of claim 15 , wherein the first near-infrared sensor comprises an array of near-infrared sensors, each configured to generate a unique hemoglobin oxygen saturation reading.Join the waitlist — get patent alerts
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