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Biomedical subjects

A Geyer

Publications and source records attributed to A Geyer.

At least 55 records · Page 3Linked to original sources

[Measurement of pressure and force as a basis of the postoperative evaluation of abdominal wall function].

By quantifying profiles of pressure and effects of forces in the operating area of inguinal hernia operations we found coughing to be the extreme burden for the abdominal wall and Bassini suture. The described technique of measuring the forces exercised in the suture spot by using an expanding wire can be used in principle such as the measurement of pressure in the rectum, for similar cases of general care in surgery.

Abdominal Muscles↗

[Malfunction of equipment by the addition of a bacterial filter in the expiratory branch of the respiratory circuit].

The addition of a continuous Flow System to the circuit of a volume cycled respirator results in an additional IMV option and shows excellent performance for this purpose. The insertion of a bacterial filter into this modified circuit resulted in a dangerous increase of airway pressures after 54 "running hours" for that filter. Test series revealed an insufficient air transmission through the filter, caused by the water vapour-saturated inspiratory gas mixture, which is necessary in long term ventilation. Furthermore it was demonstrated that wet bacterial filters cause malfunction of SIMV systems due to interference with the demand valve responsible for proper air supply. The routine use of a bacterial filter placed in the expiratory branch results in higher risks in an already risky artificial ventilation system and use-nonuse relationships seem to be questionable.

Adult↗

[High frequency pulsation (HFP) enabling tracheo-broncheal suctioning without interrupting mechanical ventilation].

A new technique of tracheo-broncheal suctioning is presented which enables constant artificial ventilation with high frequency pulsation (HFP), a modification of high frequency ventilation. Beyond that the high frequency pulsation method permits ventilation of the patient with adjusted end-expiratory pressure. This technique prevents the decrease of arterial oxygen pressure which is usually seen in patients who are disconnected for some time from the respirator as well as during the suction procedure and during periods of decreased end-expiratory pressures.

Blood Gas Analysis↗

Rheospirography for determination of respiratory volume.

The method of rheospirography was investigated in 26 voluntary test persons. By means of a spirometric measuring method and after calibration, quantitative statements about size and changes of respiratory minute volume and inspiratory volume could also be evaluated. Computerizing the computation method, rheospirography is suitable for long-term monitoring in intensive care patients.

Computers↗

[Forced diffusion ventilation (FDV). Bases and clinical application (author's transl)].

A new concept for an alternative gastransport mechanism in the lungs is introduced. It is based on an enhancement of diffusive processes in the bronchial tree and allows gas exchange under quasi apnoic conditions. This enhancement is achieved by a modified high frequency jet ventilation technique utilizing frequencies up to 3000/min. The technical equipment used for this so called forced diffusion ventilation consists of a solenoid valve that interrupts the flow from a high pressure source with adjustable frequencies and impulse pause ratios. A special tracheal tube with an additional jet line implement in its wall carring a nozzle at its tip had to be developed. Animal experiments demonstrate that a sufficient gas exchange even with frequencies of 3000/min can be achieved with this FDV. Under this conditions the lung can be kept in its expiratory inflation level. This technique using frequencies of 350/min has been successfully applied to a patient suffering from multiple bronchopleural fistulas over 16 days. Also the mechanism of FDV is jet not quite clear, penetration of fresh gas into further generation of the bronchial tree, axial diffusion and convective transport due gas oscillations and the volume displacement of the beating heart seem to be responsible for the gas exchange.

Adult↗

[Assessment of the cardiac output by impedance cardiography (differential rheography) to give optimum continuous positive pressure ventilation (author's transl)].

It is very important to know the cardiac output in artificial positive pressure ventilation for the determination of the exact dosage of dopamine and the endexpiratory pressure. Invasive monitoring of the cardiac output is not suitable for routine bedside use. In our study we looked into the question of whether the dosage of dopamine in continuous positive pressure ventilation could be controlled by impedance determination. Differential rheography, as described by Kaindl, Polzer, and Schuhfried, was used in the study. Relative changes in cardiac output after dopamine administration are shown with sufficient accuracy using the above-mentioned method.

Cardiac Output↗

[The alveolar-arterial oxygen quotient. standard norms, clinical findings (author's transl)].

From the practical standpoint of view the A-aDO2 proved to be a good parameter for evaluation of global gas exchange. The endexspiratory oxygen pressure, recorded by mass spectrometry, is set equal to the alveolar oxygen pressure. Therefore it is possible for clinical use to have an on line monitoring of PETO2--PaO2. It is necessary to specify the pressure difference in dependence of the inspiratory oxygen pressure since the alveolo-arterial oxygen pressure difference increases with increasing inspiratory oxygen pressure concentration. For practical clinical purposes we come out with the relative ratio of the difference adjusted to the alveolar oxygen pressure. The alveolar-arterial oxygen quotient also called "quotient": formula: (see text) has proved to be a clinical suitable figure. For this quotient are no standard norms reported in the literature. This study was set up to evaluate the quotient in 9 healthy volunteers. The standard norms, found in our study, can basically used for practical clinical purposes. This quotient is demonstrated to be practicable in intensive care medicine (obstructive pulmonary disease, acute pulmonary failure, positive pressure ventilation).

Adult↗

[Loss of resistance in axillary plexus blockade].

The results of the "loss of resistance" method for identification of the perivascular space are demonstrated. The axillary plexus with its accompanying structures is embeded in the perivascular space. 20 pressure readings were performed with a special transducer. A statistically significant pressure loss was demonstrated after passing the vascular and nerve sheath. The distinct pressure differences during the tissue penetration are recognized with the finger guiding the syringe, similar to the technique used for peridural anaesthesia. We thus believe that we can offer an exact method for blocking the axillary plexus with maximum safety which does not rely on the cooperation of the patient.

Axilla↗

An automatic counter for autoradiographed cells in Petri dishes.

A simple automatic counting device for cells on Petri dishes is described. The device is tested up to 1 x 10(4) cells (0.01 m)-2 and counts linearly without coincidence error. The counting time for each dish is c. 3-4 min including the time required to place the dish in the apparatus.

Autoradiography↗

[Control of respiratory therapy by means of rheography (author's transl)].

Rheography measures changes in electrical conductivity. In measurements taken at the thorax it was appeared that the changes in conductivity caused by breathing are superimposed by the changes caused by circulatory factors and exceed them in amplitude quite far. This makes the expansion of rheography for electrical respiration control possible. The changes in electrical conductivity are explained by inspiration into the alveoles, by the increase in the distance of the electrodes on thoracic expansion, and by the change in the intrathoracic blood volume. When using respiratory therapy the physiotherapist must pay great attention how the patient reacts to respiratory therapy and whether he is adapted correctly to the mechanical respiratory support devices. The method of "rheospirography" was tested as to whether it allows an objective, direct evaluation of the interplay between respiratory therapy and patient. The method appears to be able to control respiratory therapeutic measures as it allows an evaluation of the respiratory type, the regional ventilation, and the adaption of the patient to the device.

Adult↗

The kinetics of contact inhibition in mammalian cells.

To elucidate the process of contact inhibition in mammalian cells, we investigated the kinetics of growth arrest in [3H]thymidine labelled embryonic chinese hamster (Cricetulus griseus L.) cells after the addition of various concentrations of unlabelled cells. It was observed that after the contact inhibition concentration had been reached, the cells grew undisturbed for one more generation. In the following 24 hr the concentration fell back to the level at the beginning of the experiment and stayed there.

Animals↗

[Classical conditioning of agonistic behavior in the Syrian golden hamster (Mesocricetus auratus Waterhouse)].

Nine different reactions of unconditioned agonistic behavior of golden hamsters (Mesocricetus auratus Waterhouse) which could be elicited by an air blow (UCS) were classically conditioned at a sound of a xylophone (tone g), a previously neutral stimulus. Tone g (CS) was paired with UCS for a different number of trials/day. In all animals exposed to over 20 pairings/day components of the agonistic behavior were brought under the control of CS, but it was not possible to predict which one of the agonistic reactions would appear. Most of the animals generalized and also showed conditioned reactions (CR) when presenting tone c' instead of tone g. When utilizing a differential conditioning procedure the animals learned to discriminate between the different tones. Extinction of CR at tone g was reached after an individually different number of trials.

Acoustic Stimulation↗

[Rheographic monitoring of lung ventilation (author's transl)].

Electrical conductivity changes are measured with rheography. Changes of conductivity on the thorax caused by respiration, superimpose and exceed those caused by different circulatory conditions. Therefore rheography was adapted for monitoring of respiration. Changes in electric conductivity can be explained by the inflow of air to the alveoli, by increase of the distance between electrode, and by changes of the intrathoracic blood volume. Rheography developed by Polzer and Schuhfried was tested in the intensive care unit and the respiration therapy department. It was shown that this method is suitable for control of respiration, for demonstrating regional differences of pulmonary ventilation, for checking of respiration therapy and for monitoring the ventilated patient.

Asthma↗

An automatic apparatus for continuous suspension culture with a concentrating device.

A chemostat in which mammalian cells can be raised in continuous suspension culture is described. It is constructed from commercially available parts. This apparatus has the advantage over earlier models in that the medium can be pumped off free of cells, thus suddenly increasing the cell concentration in the culture. The apparatus has been successfully used in studies on contact inhibition.

Automation↗

[Measurement of bronchopulmonary elastance and airway resistance: comparison between common methods and automatic continuous measurement by the system AUPREM (author's transl)].

The system AUPREM is a new measurement device, which allows continuous measurement of the mechanical properties of the lung and bronchial system. Pulmonary elastance and airway resistance can be measured continuously even in extremly debilitated or unconscious patients. Transpulmonary pressure change, airflow and tidal volume are used as input. From these values airway resistance and pulmonary elastance are calculated. Comparative measurements in a group of healthy subjects and in a group of patients with pathological resistance and elastance values revealed that there was no significant correlation between the system AUPREM and the commonly used methods bodyplethysmography and elastance measurement by oesophageal balloon. However, the differences are in a low order of magnitude.

Airway Resistance↗