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Lisa Ferrara, 531701 Empire Rd, Willowick, OH 44092

Lisa Ferrara Phones & Addresses

1701 Empire Rd, Wickliffe, OH 44092   

Mentor, OH   

North Ridgeville, OH   

Stow, OH   

446 Richmond Ave, Cleveland, OH 44143    440-4499352   

Richmond Heights, OH   

3840 Kirkwood Rd, Cleveland Hts, OH 44121    216-5386266   

Work

Position: Protective Service Occupations

Education

Degree: Associate degree or higher

Emails

Mentions for Lisa Ferrara

Publications & IP owners

Us Patents

Apparatus And Method For Assessing Loads On Adjacent Bones

US Patent:
7182736, Feb 27, 2007
Filed:
Feb 2, 2004
Appl. No.:
10/769823
Inventors:
Shuvo Roy - Cleveland OH, US
Aaron J. Fleischman - University Heights OH, US
Edward C. Benzel - Gates Mills OH, US
Lisa Ferrara - Cleveland Heights OH, US
Assignee:
Cleveland Clinic Foundation - Cleveland OH
International Classification:
A61B 5/117
A61B 5/103
US Classification:
600587
Abstract:
An apparatus () that utilizes microelectromechanical systems (MEMS) technology to provide an in vivo assessment of loads on adjacent bones ( and ) comprises a body () for insertion between the adjacent bones. At least one sensor () is associated with the body (). The sensor () generates an output signal in response to and indicative of a load being applied to the body () through the adjacent bones ( and ). A telemetric device () is operatively coupled with the sensor (). The telemetric device () is operable to receive the output signal from the sensor () and to transmit an EMF signal dependent upon the output signal. According to various aspects of the invention, the sensor comprises a pressure sensor (), a load cell (), and/or at least one strain gauge ().

Apparatus And Method For Assessing Loads On Adjacent Bones

US Patent:
7491179, Feb 17, 2009
Filed:
Jan 30, 2007
Appl. No.:
11/700219
Inventors:
Shuvo Roy - Cleveland OH, US
Aaron J Fleischman - University Heights OH, US
Edward C. Benzel - Gates Mills OH, US
Lisa Ferrara - Cleveland Heights OH, US
Assignee:
The Cleveland Clinic Foundation - Cleveland OH
International Classification:
A61B 5/117
A61B 5/103
US Classification:
600587, 600594
Abstract:
An apparatus () that utilizes microelectromechanical systems (MEMS) technology to provide an in vivo assessment of loads on adjacent bones ( and ) comprises a body () for insertion between the adjacent bones. At least one sensor () is associated with the body (). The sensor () generates an output signal in response to and indicative of a load being applied to the body () through the adjacent bones ( and ). A telemetric device () is operatively coupled with the sensor (). The telemetric device () is operable to receive the output signal from the sensor () and to transmit an EMF signal dependent upon the output signal. According to various aspects of the invention, the sensor comprises a pressure sensor (), a load cell (), and/or at least one strain gauge ().

Apparatus And Method For Assessing Loads On Adjacent Bones

US Patent:
2002004, Apr 25, 2002
Filed:
Aug 24, 2001
Appl. No.:
09/939331
Inventors:
Shuvo Roy - Cleveland OH, US
Aaron Fleischman - University Heights OH, US
Edward Benzel - Gates Mills OH, US
Lisa Ferrara - Cleveland Heights OH, US
Assignee:
The Cleveland Clinic Foundation
International Classification:
A61B005/103
A61F002/44
US Classification:
600/594000, 623/017110
Abstract:
An apparatus () that utilizes microelectromechanical systems (MEMS) technology to provide an in vivo assessment of loads on adjacent bones (and ) comprises a body () for insertion between the adjacent bones. At least one sensor () is associated with the body (). The sensor () generates an output signal in response to and indicative of a load being applied to the body () through the adjacent bones (and ). A telemetric device () is operatively coupled with the sensor (). The telemetric device () is operable to receive the output signal from the sensor () and to transmit an EMF signal dependent upon the output signal. According to various aspects of the invention, the sensor comprises a pressure sensor (), a load cell (), and/or at least one strain gauge ().

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