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Biomedical subjects

A W Schreurs

Publications and source records attributed to A W Schreurs.

9 recordsLinked to original sources

An instrumented, dynamic test for anterior laxity of the ankle joint complex.

Evaluation of anterior laxity of the ankle joint complex is a difficult clinical problem. Currently, the prime determinant for anterolateral ligament function is the subjective manual examination of anterior laxity of the ankle joint complex. An instrumented dynamic test was developed for objective measurement of anterior laxity of the ankle joint complex. The principle of the test was to apply a force-impulse to the calcaneus, within the muscle reflex time, and to measure anterior-posterior and mediolateral rotation. The test was performed on a cadaver specimen and on 15 volunteers of which five subjects suffered from chronic one-sided lateral ankle ligament instability. In the cadaver test, anterior translation values increased from 5 to 11 mm, after cutting the anterior talofibular ligament and subsequently cutting the calcaneofibular ligament. In the 10 normal subjects, the mean anterior translation value was 6.7 mm (+/-1.9 mm). The relative variation of the test result within a measurement session was 2.5% (+/-1.6%). Between the sessions the relative laxity variation was 2.6% (+/-2.6%). In the ten normal subjects the mean right-left difference was not significantly different from zero. In four out of the five patients it was more than 2mm. As in the cadaver test in all measurements, the mediolateral rotations were small (<2.5 degrees ). The volunteers complained about same pain at the heel after multiple test sessions. In conclusion the dynamic, functional test appears to be capable of objectively measuring a value for anterior laxity of the ankle joint complex reflecting the functional status of the anterolateral ankle ligaments.

Ankle Injuries↗

A new transducer system for direct motor unit force measurement.

A new transducer was developed for in situ measurement of the force vector in a complex muscle. The transducer measures the magnitude, and the line of action of a force in a single plane. The dynamic range of the transducer is 0-5 N. This range includes the small forces developed by an active motor unit and the relatively large passive force of a whole muscle. In this study we present the details of the transducer design and specifications, and describe its application in the measurement of motor unit forces of the rabbit masseter muscle.

Animals↗

Respiratory valve for oxygen uptake measurements during swimming.

A detailed description of a respiratory valve to measure oxygen uptake while swimming is given. The effect on body drag of the addition of this equipment was measured in four subjects swimming over a range of speeds (0.9-1.9 m s-1). The respiratory valve has a low airflow resistance (29 Pa at an airflow of 8 l X s-1) and a small deadspace (30 ml). Total body drag when swimming while wearing the respiratory equipment did not differ significantly from that when swimming without the equipment. It is concluded that this respiratory valve is ideal for making valid and reliable measurements of oxygen uptake during swimming.

Evaluation Studies as Topic↗

Measurement of active drag during crawl arm stroke swimming.

In order to measure active drag during front crawl swimming a system has been designed, built and tested. A tube (23 m long) with grips is fixed under the water surface and the swimmer crawls on this. At one end of the tube, a force transducer is attached to the wall of the swimming pool. It measures the momentary effective propulsive forces of the hands. During the measurements the subjects' legs are fixed together and supported by a buoy. After filtering and digitizing the electrical force signal, the mean propulsive force over one lane at constant speeds (ranging from about 1 to 2 m s-1) was calculated. The regression equation of the force on the speed turned out to be almost quadratic. At a mean speed of 1.55 m s-1 the mean force was 66.3 N. The accuracy of this force measured on one subject at different days was 4.1 N. The observed force, which is equal to the mean drag force, fits remarkably well with passive drag force values as well as with values calculated for propulsive forces during actual swimming reported in the literature. The use of the system does not interfere to any large extent with normal front crawl swimming; this conclusion is based on results of observations of film by skilled swim coaches. It was concluded that the system provides a good method of studying active drag and its relation to anthropometric variables and swimming technique.

Biomechanical Phenomena↗

A portable lightweight Douglas bag instrument for use during various types of exercise.

A construction outline of lightweight portable equipment for VO2 measurements by the Douglas bag method is given. The equipment consists of three separate units: an inspiration-expiration valve, a switch directing the expiratory flow, and a disconnectable bag with stopcock. The ease of operation assures good reproducibility of the results. Experiences during maximal speed skating are described. Use of the equipment demands only simple operations by the subject, which do not interfere with the exercise.

Adult↗

A mechanical oscilloscope for vision research.

A "mechanical oscilloscope" is described in which a lightbeam (Z-axis) is projected via a single front aluminized moving mirror. The mirror is mounted in a suspension frame allowing the simultaneous rotation about two mutually perpendicular axes. The linear displacements of two loudspeaker-coils are transformed mechanically into mirror rotations and an electronic position/velocity feedback control system is used to drive the loudspeakers. The bandwidth of the resulting X- and Y-axis deflection systems is of the order of 100-200 Hz. The flexibility of Z-axis control (colour, pattern, intensity, etc.) makes this instrument an attractive component of light stimulation systems for psychophysical or electrophysiological studies of vision.

Models, Neurological↗

Implantable stimulating electrode for baroreceptor afferent nerves in rabbits.

An implantable stimulating electrode was developed for baroreceptor afferent nerves in the freely moving rabbit (nerve diam 0.1-0.2 mm). It consists of highly flexible electrode leads (coiled Pt-Ir wire) and silicone rubber (Silastic) as insulation. The electrodes were shown to be effective for up to 245 days after implantation in the neck. Electrode failure was due to dislodgment of the electrode (early failures) or (ultimately) cable breakage. Heart rate and blood pressure responses of separate and combined stimulation of depressor and carotid sinus nerves are shown. In vitro studies demonstrated some current leakage from the electrode to surrounding tissues, but the in vivo measurements show the validity of the method.

Afferent Pathways↗