Digital Processing of Intracranial Pressure Signal Acquired by Means of a Strain Gauge Sensor

Author(s):  
A. Calisto ◽  
A. Bramanti ◽  
M. Galeano ◽  
S. Serrano
2021 ◽  
Vol 31 (1) ◽  
pp. 127-142
Author(s):  
Vyacheslav F. Fedorenko ◽  
Vitaly E. Tarkivskiy ◽  
Nikolay P. Mishurov ◽  
Nikolay V. Trubitsyn

Introduction. When carrying out an energy assessment of agricultural machines and traction tests of tractors, the most important indicator is the value of the tractive effort. The existing methods for determining the tractive effort of tractors imply the use of specialized measuring instruments, such as strain gauges and devices for processing and displaying information. The accuracy of determining the tractive effort is significantly influenced by the physical and mechanical properties of soil. To process the useful signal during the measurement of tractive effort, the data stream of the strain gauge sensor must be subjected to additional digital filtering taking into account the operating conditions of the agricultural unit. Materials and Methods. The functions of changing the tractive effort obtained on the K-744R2 tractor in various gears have been analyzed. An algorithm for digital processing of the signal of a strain gauge force meter based on a median filter has been developed that makes it possible to increase the measurement accuracy. The advantage of the proposed method is the ability to cut off sharp short-term impulse noise and sharp fluctuations in the amplitude of the measured value. Results. A method for determining the amount of tractive effort using median signal processing has been proposed. A device for determining the tractive effort during testing of agricultural tractors and units has been developed. The choice of the main components of the device for determining the magnitude of the tractive effort has been substantiated. As a result of the research, a device for measuring and digital processing of the signal of a force meter based on a microcontroller and specialized software for processing initial data in real time was designed and manufactured. Discussion and Conclusion. The developed method makes it possible to exclude the negative effect of impulse noise arising in the process of measuring the tractive effort of the tractor. The proposed device for measuring the tractive effort of tractors is compatible at the level of the exchange protocol with existing devices, has a high speed of operation in real time, multi-channel operation.


Author(s):  
Maya A. Babu ◽  
John L. D. Atkinson

Several studies have shown that increased ICP has been associated with poor neurologic outcomes. Management of elevated ICP can improve neurologic outcomes and influence medical and surgical therapy, and accurate recording of ICP is helpful in assessing a patient’s clinical status. Currently, the 2 most common forms of monitoring ICP involve 1) placement of a fiberoptic or strain gauge intraparenchymal monitor or 2) placement of a ventricular drain.


2018 ◽  
Vol 33 (2) ◽  
pp. 708-716 ◽  
Author(s):  
Beverly K. Sturges ◽  
Peter J. Dickinson ◽  
Linda D. Tripp ◽  
Irina Udaltsova ◽  
Richard A. LeCouteur

Author(s):  
Federico Wadehn ◽  
David-Jule Mack ◽  
Emanuela Keller ◽  
Thomas Heldt

Sensors ◽  
2020 ◽  
Vol 20 (12) ◽  
pp. 3579 ◽  
Author(s):  
Rico Tiedemann ◽  
Dennis Lepke ◽  
Martin Fischer ◽  
Christoph Pille ◽  
Matthias Busse ◽  
...  

There is currently a large demand for aluminum components to measure the mechanical and thermal loads to which they are subjected. With structural health monitoring, components in planes, vehicles, or bridges can monitor critical loads and potentially prevent an impending fatigue failure. Externally attached sensors need a structural model to obtain knowledge of the mechanical load at the point of interest, whereas embedded sensors can be used for direct measurement at the point of interest. To produce an embedded sensor, which is automatically encapsulated against environmental influence, the sensor must be able to withstand the boundary conditions of the host component’s manufacturing process. This embedding process is particularly demanding in the case of casting. Previous work showed that silicon-based sensors have a high failure rate when embedded in cast aluminum parts and that using aluminum as a substrate is preferable under these circumstances. In the present paper, we present the fabrication process for the combination of a thick-film insulation and a thin-film strain gauge sensor, on such an aluminum substrate. The sensor is capable of withstanding high temperatures of at least 600 °C for over 20 min and a subsequent embedding in a gravity die casting process.


2015 ◽  
Vol 15 (3) ◽  
pp. 274-278 ◽  
Author(s):  
Sangyul Baik ◽  
Namhun Kim ◽  
Tae-il Kim ◽  
Heeyeop Chae ◽  
Ki Hyun Kim ◽  
...  

1975 ◽  
Vol 42 (3) ◽  
pp. 249-257 ◽  
Author(s):  
Nicholas W. C. Dorsch ◽  
Lindsay Symon

✓ The authors discuss the technical problems involved in the continuous measurement of intracranial pressure, and describe a simple, inexpensive extradural strain gauge system that can be manufactured by most research units. The system has the merits of coplanar construction, a ready zero reference, and simplicity in design and use. The theoretical limits of the extradural method are presented and discussed in relation to transducer design.


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