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Biomedical subjects

J G Chubbuck

Publications and source records attributed to J G Chubbuck.

2 recordsLinked to original sources

A method for studying the control of three-dimensional isometric forces using dynamic stereogram.

A system has been developed for measuring the three-dimensional (3D) isometric forces produced by the arm in response to a visual stimulus. The output of 3 load cells is combined to determine the components of the 3D response force. The maximum force range of the load cells is 2000 g which can be read with a resolution of 4 g and with a measured accuracy of +/- 10 g. An overload stop protects the device to a load of 23 kg. The visual instruction to the subject concerning the direction and magnitude of the 3D force vector to be produced is presented using a vivid spherical stereogram. This stereogram is produced using the anaglyphic technique where the left and right images are separated by color filters. A dense aggregation of points defines the target cursor, which can be positioned anywhere inside or on the surface of the sphere. This cursor can represent a stationary or a moving target. A force feedback cursor can be provided to indicate to the subject his/her response. The color display on the cathode ray tube is produced by a display generator driven by a computer.

Amplifiers, Electronic↗

Clinical evaluation of long-term epidural monitoring of intracranial pressure.

Forty-two epidural sensors for measuring intracranial pressure were implanted in 38 patients over the last four years. The sensor is a passive device consisting of an inductance and a pressure sensitive capacitance resonant at about 50 megahertz. The study involved 17 cases of hydrocephalus, nine of pseudotumor cerebri, and the remainder included cases of cranial trauma, brain tumors, and aneurysms. Four of the sensors failed in patients and were removed. Two of these had to be replaced to continue the pressure monitoring. The intracranial pressure is still being monitored in 22 patients, while 15 have been lost to follow-up for various reasons. Fourteen patients have been followed for about a year, and four for two years. The baseline drift rate in most sensors is between 1 and 2 mm H2O per day, with a few having greater rates of drift. Calibration errors were found in some of the sensors after implantation. These errors were corrected by direct measurement of the cerebral spinal fluid pressure via lumbar puncture. The sensors have proven to be a valuable adjunct in the management and diagnosis of neurosurgical patients by simplifying the intermittent and continuous recording of intracranial pressure. This was so despite the presence of calibration errors and a drift which necessitated an occasional lumbar puncture for making corrections.

Brain Diseases↗