HEAD-WORN REMOTE INFORMATICS SYSTEM
20200060544 ยท 2020-02-27
Inventors
Cpc classification
A61B5/0002
HUMAN NECESSITIES
A61B5/6803
HUMAN NECESSITIES
A42B3/142
HUMAN NECESSITIES
A61B2562/0219
HUMAN NECESSITIES
International classification
Abstract
An informatics system that can be head-worn under a helmet and used to provide a wearer's vital statistics and other information to a remote monitoring station, for example in connection with pre-hospital emergency care.
Claims
1. An informatics system, comprising a sensor package configured for monitoring of a wearer's vital statistics and a telemetry transmitter for transmitting a record of the wearer's vital statistics to a remote monitoring location, said informatics system integrated within a helmet retention system that is adapted to be removably secured to a helmet.
2. The informatics system of claim 1, wherein the sensor package comprises one or more sensor pads configured to contact a wearer at one or more points on the wearer's body, the sensor pads coupled to provide electrical signal inputs to a processor of the informatics system, which processor is configured to sample the signals from the sensor pads periodically and to transmit a record of the sampled signals to the remote monitoring location via the telemetry transmitter.
3. The informatics system of claim 2, wherein said processor is further configured to store a record of the sampled signals in a writable memory of the informatics system.
4. The informatics system of claim 2, further comprising a power supply included within the helmet retention system.
5. The informatics system of claim 2, further comprising an accelerometer coupled to provide an input to said processor.
6. A headband comprising a sensor arrangement configured for monitoring of a wearer's vital statistics, said sensor arrangement including one or more sensor pads configured to contact a wearer at one or more points on the wearer's body, the sensor pads coupled to provide electrical signal inputs to a processor of the sensor arrangement that is configured to sample the signals from the sensor pads periodically, said headband wearable under a helmet such that removal of the helmet from the wearer will not cause removal of the sensor arrangement.
7. The headband of claim 6, wherein the headband comprises a helmet retention system adapted to be removably securable to said helmet.
8. The headband of claim 7, wherein the helmet retention system includes a telemetry transmitter coupled to the processor.
9. The headband of claim 8, wherein the helmet retention system includes a power source for said sensor arrangement.
10. The headband of claim 7, wherein the sensor arrangement includes an accelerometer coupled to the processor.
11. The headband of claim 7, wherein the sensor arrangement includes a writable memory coupled to the processor.
12. A method, comprising periodically sampling, by a processor of a head-worn informatics system, electrical signals provided by one or more sensor pads of the informatics system, said sensor pads configured for electrophysiological monitoring of a wearer of the informatics system, transmitting a record of the sampled signals to a monitoring facility remote from the informatics system via a telemetry transmitter of the informatics system, and continuing to sample the electrical signals and transmit the record of the sampled signals to the monitoring facility subsequent to removal of a helmet from the wearer.
13. The method of claim 12, wherein removal of the helmet from the wearer of the head-worn informatics system does not cause removal of the head-worn informatics system from the wearer.
14. The method of claim 12, wherein removal of the helmet from the wearer of the head-worn informatics system does not cause removal of a helmet retention system in which the head-worn informatics system is integrated from the wearer.
15. The method of claim 12, wherein removal of the helmet from the wearer of the head-worn informatics system does not cause removal of sensor package of the head-worn informatics system from the wearer.
16. The method of claim 12, wherein removal of the helmet from the wearer of the head-worn informatics system does not cause removal of a headband in which the sensor pads of the head-worn informatics system are integrated from the wearer.
17. The method of claim 12, wherein prior to removal of the helmet from the wearer of the head-worn informatics system, dissociating the head-worn informatics system from a primary power source, and the head-worn informatic system reverting to using a secondary power source.
18. The method of claim 17, wherein subsequent to removal of the helmet from the wearer of the head-worn informatics system and the head-worn informatic system reverting to using a secondary power source, restoring primary power to the head-worn informatics system from a transportable power supply.
19. The method of claim 12, further comprising storing the record of the sampled signals in a memory of the head-worn informatics system.
20. The method of claim 12, further comprising providing inputs concerning rapid accelerations/decelerations of the wearer's head to a processor of the head-worn informatics system from one or more accelerometers of the head-worn informatics system.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] The present invention is illustrated by way of example, and not limitation, in the figures of the accompanying drawings, in which:
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
DETAILED DESCRIPTION
[0017] Described herein is an informatics system that can be head-worn under a helmet and used to provide a wearer's vital statistics and other information to a remote monitoring station, for example in connection with pre-hospital emergency care. In one embodiment, the informatics system is included within or mounted to a harness that remains on a wearer's head after the helmet is removed. Thus, monitoring of the wearer's vital signs and other biometric information and telemetry are not interrupted by removal of the helmet.
[0018]
[0019]
[0020] As illustrated in these views, headband 16 is fitted over the wearer's head and sized using the dial/ratchet adjustment mechanism 18 located at the back of the headband. When headband 16 is secured within helmet 12, for example using snaps, hook and loop, or other fastening means, adjusting the fit of headband 16 using the ratchet will thus secure the helmet to the wearer's head. However, because the headband 16 is only removably secured within the helmet 12, the helmet 12 can be taken off of the wearer's head while leaving the headband 16 in place (as shown in
[0021]
[0022] Yet a further embodiment is illustrated in
[0023] In this example, the helmet may be removed while leaving the headband arrangement and sensor package(s) in place by physically cutting the helmet off of the wearer at one or more points 64a-64c. For example, the headband arrangement may be severed at a cut point 64a near the forehead and at a cut point 64b behind the ears of the wearer. Straps 56 may be severed at a cut point 64c behind the head of the wearer, allowing the helmet to be fully removed. In this way, removal of the helmet will not cause removal of the sensor arrangement(s). Alternatively, one or more of the headband arrangement and/or straps may be filled with quick release buckles 66 (see
[0024] As illustrated in
[0025] The sensor pads 36 and associated electronics may allow for detection of electrical signals in the manner described by von Rosenberg et al. For example, the sensor pads may be attached by electrical leads to a processor 38, e.g., via associated amplifiers 40, analog-to-digital converter 42, etc., which samples the signals from the sensor pads periodically. A record of the sampled signals may be stored locally at the helmet, e.g., in a suitable writable memory 44 such as a flash memory, and also may be transmitted to a remote monitoring location via the telemetry transmitter 24 and an associated antenna 46. Alternatively, the telemetry may be transmitted only when the transmitter is activated, e.g., by an on-scene paramedic, or by the wearer him/herself. Upon command, any stored samples may be similarly transmitted so that a history of the wearer's biometric and vital signs can be analyzed by a physician or other person at the remote monitoring station.
[0026] In some embodiments, the sensor package 20 may also include one or more accelerometers 48 which provide inputs to processor 38 concerning rapid accelerations/decelerations of the wearer's head. Such measurements may be important when assessing possible traumatic brain injuries, cervical spinal injuries, and the like.
[0027] Although not shown in this view, a power source for the electronics is provided and may be housed within the retention system or located external thereto (e.g., worn on a vest or pack). In some cases, a primary power source may be located external to the other components of the system and a secondary power source provided integral thereto. This would allow the primary power source to be decoupled from the system, which would then revert to using the secondary power source (e.g., a small battery or the like), at least temporarily. This would allow for continuous monitoring of the biometric and vital signs and provision of related telemetry. Primary power may later be restored by an attending medic using a transportable power supply. To facilitate this operation, the system may be provided with one or more ports allowing connection of different forms of power supplies.
[0028] Importantly, in embodiments of the invention, removal of the helmet does not dissociate the sensor pads and associated electronics from the wearer permanently. Thus, recording and telemetry of the wearer's vital statistics and other biometric information, e.g., via the sensor pads, does not stop when the helmet is removed.