Title of article :
Development of a versatile intra-articular pressure sensing array
Author/Authors :
Welcher، نويسنده , , J.B. and Popovich Jr.، نويسنده , , J.M. and Hedman، نويسنده , , T.P.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
7
From page :
950
To page :
956
Abstract :
A new sensor array intended to accurately and directly measure spatial and time-dependent pressures within a highly curved biological intra-articular joint was developed and tested. luate performance of the new sensor array for application within intra-articular joints generally, and specifically to fit within the relatively restrictive space of the lumbar spine facet joint, geometric constraints of length, width, thickness and sensor spatial resolution were evaluated. Additionally, the effects of sensor array curvature, frequency response, linearity, drift, hysteresis, repeatability, and total system cost were assessed. w sensor array was approximately 0.6 mm in thickness, scalable to below the nominal 12 mm wide by 15 high lumbar spine facet joint size, offered no inherent limitations on the number or spacing of the sensors with less than 1.7% cross talk with sensor immediately adjacent to one another. No difference was observed in sensor performance down to a radius of curvature of 7 mm and a 0.66 ± 0.97% change in sensor sensitivity was observed at a radius of 5.5 mm. The sensor array had less than 0.07 dB signal loss up to 5.5 Hz, linearity was 0.58 ± 0.13% full scale (FS), drift was less than 0.2% FS at 250 s and less than 0.6% FS at 700 s, hysteresis was 0.78 ± 0.18%. Repeatability was excellent with a coefficient of variation less than 2% at pressures between 0 and 1.000 MPa. Total system cost was relatively small as standard commercially available data acquisition systems could be utilized, with no specialized software, and individual sensors within an array can be replaced as needed. w sensor array had small and scalable geometry and very acceptable intrinsic performance including minimal to no alteration in performance at physiologically relevant ranges of joint curvature.
Keywords :
Pressure sensor , Facet pressure , Curvature effects , Pressure sensor calibration , Intra articular pressure , Facet pressure , Intra articular load
Journal title :
Medical Engineering and Physics
Serial Year :
2011
Journal title :
Medical Engineering and Physics
Record number :
1731402
Link To Document :
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