Children's Crisis Treatment Center Philadelphia, PA Jul 2012 to Oct 2012 Administrative Specialist for Outpatient and Trauma ClinicsChildren's Crisis Treatment Center Philadelphia, PA Jan 2012 to Jun 2012 Administrative Specialist to Clinical Manager, Julia Deburgos SchoolChildren's Crisis Treatment Center Philadelphia, PA Sep 2010 to Dec 2011 Events and Special Projects Coordinator, Corporate OfficeChildren's Crisis Treatment Center Philadelphia, PA Sep 2007 to Sep 2010 Administrative Specialist to Clinical Manager, Ferguson SchoolDiNardo's Philadelphia, PA 2006 to 2009 WaiterLowe's Hotel Philadelphia, PA 2003 to 2006 WaiterMr. Henry's Capitol Hill Washington, DC 1997 to 2003 WaiterPA Department of Transportation Harrisburg, PA 1991 to 1997 Administrative Assistant to Regional Manager, State Driver Licensing CentersPA Bar Association Harrisburg, PA 1981 to 1991 Publications Manager
Education:
Boiling Springs High School Boiling Springs, PA 1979 Diploma3 Yr. Trade School Cumberland, PA, US Graphic Arts
An optical sensor device for determining the presence or concentration of an analyte, contains a waveguide disposed over a light source and a light detector mounted on a surface of a substrate and separated by an internal baffle, wherein the waveguide has a thickness corresponding to a far field emission point of the light source as determined by a light shielding baffle between the light source and light detector. An analyte indicator matrix is disposed on the outer surface of the waveguide. The sensor device geometry takes advantage of only direct illumination of the indicator matrix, and direct collection of indicator matrix illumination, without any significant reflection by said waveguide. Undesirable light noise generated by the light source passes directly out of the device through the waveguide.
An optical sensor device for determining the presence or concentration of an analyte, contains a waveguide disposed over a light source and a light detector mounted on a surface of a substrate and separated by an internal baffle, wherein the waveguide has a thickness corresponding to a far field emission point of the light source as determined by a light shielding baffle between the light source and light detector. An analyte indicator matrix is disposed on the outer surface of the waveguide. The sensor device geometry takes advantage of only direct illumination of the indicator matrix, and direct collection of indicator matrix illumination, without any significant reflection by said waveguide. Undesirable light noise generated by the light source passes directly out of the device through the waveguide.
Housing For A Circuit That Is To Be Implanted In-Vivo And Process Of Making The Same
Arthur Colvin - Mt. Airy MD, US Carrie Lorenz - Woodbine MD, US Casey O'Connor - Gaithersburg MD, US Steven Walters - Ellicott City MD, US
Assignee:
Sensors for Medicine and Science, Inc. - Germantown MD
International Classification:
H01H073/00 H05K005/04 A61B005/00
US Classification:
600310000, 361757000
Abstract:
The present invention provides a biocompatible circuit assembly that includes a circuit encased within a housing. In some embodiments, the housing is a PMMA housing and before the circuit is enclosed within the housing the circuit is encased within a brick of epoxy.
Steven Walters - Ellicott City MD, US Casey O'Connor - Gaithersburg MD, US
Assignee:
Sensors for Medicine and Science, Inc. - Germantown MD
International Classification:
A61M 5/178 A61F 13/20
US Classification:
604164010, 604015000, 604038000
Abstract:
The present invention provides an insertion device and method for implanting a biosensor into a patient subject. In one embodiment, a biosensor is stored in the instrument's hydration chamber which enables the biosensor to maintain proper hydration and sterilization prior to insertion. The instrument further includes a plunger that travels along a channel within the support device. After the biosensor is placed into the channel, the user pushes the plunger causing the biosensor to move through the channel and a hollow tube and into the patient subject. The present invention also provides for packaging and storing a biosensor and insertion device so that the biosensor is hydrated and sterile prior to insertion.
Housing For A Circuit That Is To Be Implanted In-Vivo And Process Of Making The Same
Arthur Earl COLVIN - Mt. Airy MD, US Carrie R. LORENZ - Woodbine MD, US Casey J. O'CONNOR - Gaithersburg MD, US Steven J. WALTERS - Ellicott City MD, US
Assignee:
Sensors for Medicine and Science, Inc. - Germantown MD
International Classification:
H05K 7/02 H01L 21/56
US Classification:
361752, 26427217
Abstract:
The present invention provides a biocompatible circuit assembly that includes a circuit encased within a housing. In some embodiments, the housing is a PMMA housing and before the circuit is enclosed within the housing the circuit is encased within a brick of epoxy.
Multiple Modes Of Transceiver Operation In Analyte Monitoring System
- Germantown MD, US Shang Zhao - Germantown MD, US Steven J. Walters - Ellicott City MD, US
Assignee:
Senseonics, Incorporated - Germantown MD
International Classification:
A61B 5/00 A61B 5/145 A61B 5/1495
Abstract:
An analyte monitoring system may include an analyte sensor, a transceiver, and a display device. The transceiver may be configured to operate in two or more modes of operation. The display device may be configured to communicate with the transceiver. The two or more modes of operation may include a clinical mode in which the transceiver receives first sensor data from the analyte sensor and calculates one or more first analyte levels using at least the received first sensor data but does not convey the one or more first analyte levels to the display device. The two or more modes of operation may include an unblinded mode in which the transceiver receives second sensor data from the analyte sensor, calculates one or more second analyte levels using at least the received second sensor data, and conveys the one or more second analyte levels to the display device.
Housing For A Circuit That Is To Be Implanted In-Vivo And Process Of Making The Same
- Germantown MD, US Carrie R. Lorenz - Woodbine MD, US Casey J. O'Connor - Gaithersburg MD, US Steven J. Walters - Ellicott City MD, US
Assignee:
Senseonics, Incorporated - Germantown MD
International Classification:
A61B 5/00 H05K 5/06
Abstract:
The present invention provides a biocompatible circuit assembly that includes a circuit encased within a housing. In some embodiments, the housing is a PMMA housing and before the circuit is enclosed within the housing the circuit is encased within a brick of epoxy.
- Germantown MD, US Todd Whitehurst - Germantown MD, US Christina Long - Germantown MD, US Steven Walters - Germantown MD, US Andrew Dehennis - Germantown MD, US
Assignee:
Senseonics, Incorporated - Germantown MD
International Classification:
A61B 5/00 A61B 5/1455 A61B 5/1495 A61B 5/145
Abstract:
A computing device receives analyte data produced by an analyte monitoring sensor over a communications link from at least one first device. Health data, comprising at least part of the analyte data, may be communicated over a communications link to at least one second device in response to a request. The first device may be positioned over the analyte monitoring sensor using signal strength and location information. External analyte data may be employed to calibrate the analyte monitoring sensor.
44 Silver Ln, East Hartford, CT 06118 1619 Winterwood Pl, Herndon, VA 20170 252 Naubuc Ave, East Hartford, CT 06118
Steven C. Walters
PROPERTY MANAGEMENT RESOURCES, LLC
252 E Hartford Ct, East Hartford, CT 06118 1619 Winterwood Pl, Herndon, VA 20170 454 Main St, East Hartford, CT 06118 252 Naubuc Ave, East Hartford, CT 06118
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