IP Library › Granted Patent US 8,033,281
Granted Patent B2
US 8,033,281 · App. 11/983,673 · Granted Oct 11, 2011

Modular transportable life support device

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Quick Facts
Patent No.
US 8,033,281
App. No.
11/983,673
Granted
Oct 11, 2011
Kind
B2
Abstract

There is provided a patient care and treatment platform that is connectable to a plurality of modules capable of providing medical functionality. The platform includes a housing and a patient support surface. The platform also includes a power receiver for receiving power. The platform further includes a module interface including power, data, and pneumatic spines having power data and pneumatic ports, respectively. The spines are operative to transfer data, power, and fluid within the platform. The ports are connectable to the modules to integrate the modules into the platform. The platform also includes a head fairing having a patient interface panel. The head fairing includes an inner surface that is substantially concave in shape and slopes away from the patient support surface to allow access to the head of a patient. The patient interface panel includes a plurality of ports connectable to electrical and pneumatic apparatus.

Claims (40)

1. A patient care and treatment platform being connectable to a plurality of medical modules, each medical module being configured to provide discrete medical functionality, the platform comprising:

a housing having a patient support surface disposed on the housing, the patient support surface being configured to support a patient thereon, the housing configured to receive a plurality of the medical modules below the patient support surface with at least one of the modules in communication with detachable sensors adapted for placement on a patient during use or detachable patient treatment devices for patient treatment during use;

a control spine connected to the housing and extending along a centrally located length of the housing and below the patient support surface, the housing configured to receive modules disposed on opposing sides of the housing and opposing sides of the spine, the control spine having a plurality of control ports along a length of the spine, each control port being configured to enable selective attachment/detachment to a respective one of the plurality of medical modules to enable centralized control over the plurality of modules, the control spine including a control unit configured to transmit control communications and sensor communications along the control spine during use, the control unit being configured to detect attachment/detachment of the modules to/from the control spine and to provide control capabilities needed to access the functionalities detected; and

a patient interface panel connected to the housing, the patient interface panel having a plurality of treatment ports, each treatment port being connectable with a respective one of the plurality of medical modules and a treatment apparatus through the control spine during use.

2. The platform of claim 1 , wherein the housing includes a head fairing having a bottom surface abutting the patient support surface, a top surface in parallel spaced relation to the bottom surface, and a sloped, arcuate inner surface extending from the top surface to the bottom surface for accessing a head of a patient.

3. The platform of claim 2 , wherein the patient interface panel is disposed on the head fairing.

4. The platform of claim 1 , further comprising a user interface connected to the housing and in electrical communication with the control spine, the user interface being operative to enable operator control over the modules.

5. The platform of claim 4 , wherein the user interface includes a button-wheel selector to enable the operator to input operator instructions into the control spine.

6. The platform of claim 1 , further comprising a handle connected to the housing to facilitate transport of the platform.

7. The platform of claim 6 , wherein the handle includes a receptacle portion and a body portion, the receptacle portion being connected to the housing, wherein the body portion is retractably connected to the receptacle portion.

8. The platform of claim 1 , wherein at least one of the plurality of treatment ports is an electronic treatment port being electrically connectable to a respective one of the plurality of medical modules and an electronic treatment apparatus.

9. The platform of claim 1 , wherein at least one of the plurality of treatment ports is a pneumatic treatment port being fluidly connectable to a respective one of the plurality of medical modules and a pneumatic treatment apparatus.

10. The platform of claim 1 , further comprising a patient support surface disposed on the housing, the patient support surface being configured to support a patient thereon.

11. The platform of claim 1 , further comprising a power receiver connected to the housing and in electrical communication with the control spine, the power receiver being operative to receive power from a power source.

12. The platform of claim 1 , further comprising an environmental control unit disposed within the housing, the environmental control unit being operative to control the heating and cooling within the housing, the environmental control unit comprising:

a temperature sensor to monitor the temperature within the housing;

an environmental control circuit in electrical communication with the temperature sensor; and

a fan in electrical communication with the environmental control circuit, the fan being operative to force air-flow within the housing to control the temperature within the housing, wherein the fan is responsive to operational instructions communicated from the environmental control circuit.

13. The platform of claim 1 , wherein the patient interface panel is re-configurable to provide treatment ports which correspond to medical modules connected to the platform.

14. The platform of claim 1 , further comprising a display in electrical communication with the plurality of modules, the display being operative to display patient data.

15. The platform of claim 1 , further comprising a comfort pad disposed on the patient support surface.

16. The platform of claim 1 , wherein the control spine is a data control spine, the control unit being operative to transmit data communications along the data control spine.

17. The platform of claim 1 , wherein the control spine is a power control spine, the control unit being operative to transmit power communications along the power control spine.

18. The platform of claim 1 , wherein the control spine is a fluid control spine, the control unit being operative to transmit fluid communications along the fluid control spine.

19. The platform of claim 1 , wherein each control port is configured to enable selective attachment/detachment to a respective one of the plurality of medical modules during platform operation.

20. The platform of claim 1 , wherein each medical module defines an operational parameter, the operation of each medical module being dependent upon the operational parameter being satisfied, the control spine being configured to detect the respective operational parameter of at least one of the plurality of medical modules attached to the control spine and to adapt the control communications to meet the operational parameters of the medical modules.

21. A patient care and treatment platform comprising:

a housing having an elongated portion on which the patient can be placed during use;

a control spine connected to the housing and extending along a center of the elongated portion of the housing, the control spine having a plurality of control ports on opposing sides of the control spine, the control spine including a control unit configured to transmit control communications along the control spine during use; and

at least one medical module being selectively attachable/detachable to the control spine, the at least one medical module including:

a module housing;

a medical device disposed within the module housing, the medical device being configured to perform medical functionality and generating patient data;

an adaptive interface being connectable to one of the plurality of control ports; and

a module translator associated with each medical device, the module translator being in communication with the adaptive interface and the medical device, the module translator being operative to adapt the communications received from the control network to the operational requirements of the medical device;

wherein the control unit is configured to regulate the control communications in response to the patient data generated by the medical device.

22. The platform of claim 21 , wherein the housing includes a head fairing having a bottom surface abutting the patient support surface, a top surface in parallel spaced relation to the bottom surface, and a sloped, arcuate inner surface extending from the top surface to the bottom surface for accessing a head of a patient.

23. The platform of claim 22 , wherein the patient interface panel is disposed on the head fairing.

24. The platform of claim 21 , further comprising a patient interface panel connected to the housing, the patient interface panel having a plurality of treatment ports, each treatment port being connectable with a respective one of the plurality of medical modules.

25. The platform of claim 21 , further comprising a patient support surface disposed on the housing, the patient support surface being configured to support a patient thereon.

26. The platform of claim 21 , wherein the at least one medical module is selectively attachable/detachable to the control spine during platform operation.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2014
From: INTEGRATED MEDICAL SYSTEMS, INC
To: MEDFLEX, LLC
Reel/Frame 032697/0230 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2008
From: KNEALE, TODD DOUGLAS; ALEXANDER, STEVEN BRUCE; DOMAE, TERRANCE PAUL; QUILLEN, JOHN WILLIAM; BONGIOVANNI, RICHARD ANTHONY; BARNETT, PETER ANDREW
To: INTEGRATED MEDICAL SYSTEMS, INC.
Reel/Frame 020538/0109 →
Continuity (1)
Related Publication 20090119834A1 · May 14, 2009