IP Library › Granted Patent US 8,951,047
Granted Patent B2
US 8,951,047 · App. 13/863,210 · Granted Feb 10, 2015

Interactive education system for teaching patient care

Inventors: John S. Eggert (Miami, FL); Michael S. Eggert (Norfolk, VA); Alberto Rodriguez (Miami, FL)
Assignee: Gaumard Scientific Company, Inc.
G09B23/281G06F19/3437G09B23/28
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Quick Facts
Patent No.
US 8,951,047
App. No.
13/863,210
Granted
Feb 10, 2015
Kind
B2
Abstract

Simulator systems including a maternal simulator and a fetal simulator are provided. In some instances, the maternal simulator includes a chamber sized and shaped to receive a fetal simulator and a birthing mechanism disposed within the chamber for providing rotational and translational movement to the fetal simulator in a birthing simulation. In some instances, the fetal simulator is configured to be selectively, fixedly engaged with a locking mechanism of the maternal simulator such that the fetal simulator is not removable from the maternal simulator during the birthing simulation when fixedly engaged with the locking mechanism and the fetal simulator is removable from the maternal simulator during birthing simulation when not fixedly engaged with the locking mechanism.

Claims (24)

1. A simulator system for teaching patient care, the simulator system comprising:

a maternal simulator sized and shaped to simulate a pregnant woman, the maternal simulator including a chamber sized and shaped to receive a fetal simulator and a birthing mechanism disposed within the chamber for providing rotational and translational movement to the fetal simulator in a birthing simulation; and

a fetal simulator sized and shaped to simulate a fetus, the fetal simulator configured to be selectively, fixedly engaged with a locking mechanism of the maternal simulator such that the fetal simulator is not removable from the maternal simulator during the birthing simulation when fixedly engaged with the locking mechanism and the fetal simulator is removable from the maternal simulator during birthing simulation when not fixedly engaged with the locking mechanism.

2. The simulator system of claim 1 , wherein the maternal simulator is operable without physical connection to an external device.

3. The simulator system of claim 1 , wherein the maternal simulator includes a simulated heart for providing a simulated heartbeat.

4. The simulator system of claim 3 , wherein the maternal simulator includes simulated lungs for providing a simulated respiratory pattern.

5. The simulator system of claim 4 , wherein the simulated heart and lungs are operable to provide the simulated heart beat and respiratory pattern without physical connection to an external device.

6. The simulator system of claim 1 , wherein the maternal simulator includes an output device for communicating with an external device.

7. The simulator system of claim 6 , wherein the output device is a wireless transceiver.

8. The simulator system of claim 7 , wherein the external device is a control system configured to set operational parameters of the maternal simulator.

9. The simulator system of claim 1 , wherein the maternal simulator includes a compressor.

10. The simulator system of claim 1 , wherein the fetal simulator includes a simulated heart for providing a simulated heartbeat.

11. The simulator system of claim 10 , wherein the fetal simulator includes simulated lungs for providing a simulated respiratory pattern.

12. The simulator system of claim 11 , wherein the simulated heart and lungs are operable to provide the simulated heart beat and respiratory pattern without physical connection to an external device.

13. The simulator system of claim 1 , wherein the fetal simulator includes an output device for communicating with an external device.

14. The simulator system of claim 13 , wherein the output device is a wireless transceiver.

15. The simulator system of claim 14 , wherein the external device is a control system configured to set operational parameters of the fetal simulator.

16. The simulator system of claim 1 , wherein the fetal simulator includes a compressor.

17. The simulator of claim 1 , wherein the fetal simulator is sized to approximate an average sized neonate at a selected gestational age within the range from about 28 weeks to about 40 weeks.

18. The simulator of claim 1 , wherein the locking mechanism is part of the birthing mechanism.

19. The simulator of claim 1 , wherein the locking mechanism is coupled to the birthing mechanism.

20. A simulator system for teaching patient care, the simulator system comprising:

a maternal simulator sized and shaped to simulate a pregnant woman, the maternal simulator including a birthing mechanism for imparting movement to a fetal simulator to simulate a birthing scenario; and

a fetal simulator sized and shaped to simulate a fetus, the fetal simulator configured to be selectively, fixedly engaged with the birthing mechanism of the maternal simulator such that the fetal simulator is not removable from the maternal simulator during the birthing simulation when fixedly engaged with the birthing mechanism and the fetal simulator is removable from the maternal simulator during birthing simulation when not fixedly engaged with the birthing mechanism.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2014
From: EGGERT, JOHN S.; EGGERT, MICHAEL S.; RODRIGUEZ, ALBERTO
To: GAUMARD SCIENTIFIC COMPANY, INC.
Reel/Frame 033004/0971 →
Continuity (5)
Continuation 13223020 · Aug 31, 2011
Continuation 11952559 · Dec 7, 2007
Continuation In Part 11538306 · Oct 3, 2006
Continuation In Part 10721307 · Nov 25, 2003
Related Publication 20130330699A1 · Dec 12, 2013