Claims
- 1. A patient module for acquisition of EEG signals in a harsh electromagnetic and electrostatic environment comprising:a. a plurality of high resistance opto-isolators; b. at least one pre-amplifier structured to suppress EMI to eliminate electrical artifacts; c. at least two optimized multistage input filters; d. an optimized input stage circuit topography; e. an ultra-isolation sub-module; f. an oversampling sub-module; g. a multiplexer inter-sample charge dump; and h. a high-performance low frequency enhanced shielding system configured to shield electronically the amplifier from electromagnetic and electrostatic fields, thereby reducing the artifact of the EEG signal.
- 2. The patient module of claim 1 in which the at least two optimized multistage input filters comprise a signal filter and a reference filter.
- 3. The patient module of claim 2 in which the signal filter and the reference filter each comprise an active element and a passive element.
- 4. The patient module of claim 3 in which the passive filter element for each of the signal filter and the reference filter comprise a resistance element, a capacitance element, and an inductance element optimized for 90 Hz signal bandwidth with isolation and suppression of frequencies between 0.5 MHz and 2 MHz.
- 5. The patient module of claim 4 in which the inductance element for each of the signal filter and the reference filter comprise separate windings on a common mode choke.
- 6. The patient module of claim 5 in which the common mode choke is wound on a toroidal core.
- 7. The patient module of claim 4 in which the passive filter element for each of the signal filter and the reference filter additionally comprises a device that bypasses RF energy.
- 8. The patient module of claim 7 in which the device that bypasses RF energy is a Transorb.
- 9. The patient module of claim 4 in which the passive filter element for each of the signal filter and the reference filter additionally comprises an anti-aliasing filter.
- 10. The patient module of claim 1 in which the multiplexer inter-sample charge dump comprises a low charge injection multiplexer coupled to an analog switch.
- 11. The patient module of claim 1 in which the high-performance low frequency enhanced shielding system comprises an EMC barrier and a dielectric barrier.
- 12. The patient module of claim 1 in which the optimized input stage circuit topography comprises multi-layer printed circuit boards with minimized input circuitry.
- 13. The patient module of claim 1 additionally comprising a medical grade isolated power supply.
Parent Case Info
This application claims the benefit of priority under U.S. Provisional Application No. 60/161,834, filed Oct. 27, 1999.
US Referenced Citations (3)
| Number |
Name |
Date |
Kind |
|
5479934 |
Imran |
Jan 1996 |
A |
|
6014587 |
Shaw et al. |
Jan 2000 |
A |
|
6317627 |
Ennen et al. |
Nov 2001 |
B1 |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/161834 |
Oct 1999 |
US |