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Biomedical subjects

K J Ingels

Publications and source records attributed to K J Ingels.

5 recordsLinked to original sources

A study of the photoelectrical signal from human nasal cilia under several conditions.

The movement of normal human nasal cilia was analyzed. Ciliary beat was recorded by means of a phase-contrast microscope equipped with a photodetector. The electrical signal was analyzed as follows: i) a power spectrum was calculated in order to measure ciliary beat frequency (CBF), ii) the beat cycles were averaged and the standard deviation of the waveform was computed to determine signal consistency (SC), and iii) the ratio of the duration of the smooth to that of the steep part of the cycles was measured. This was done under three different conditions: 1) normal or "initial", 2) after induction of "function loss", and 3) after "salbutamol stimulation". At "function loss," the cilia beat slower and with less harmony. CBF decreased from an average of 9.0 Hz in the "initial" condition to 5.8 Hz. SC decreased from an average of 5.7 to 1.9. After "salbutamol stimulation", average CBF was partially restored to 7.7 Hz, while average SC increased to 4.4. These findings indicate that in ciliary function studies, SC, as a measure for ciliary beat harmony, may be introduced alongside CBF as a second valuable parameter. In this study we were not able to identify different phases in the signal that might be used as a third parameter to indicate the effective and the recovery stroke.

Albuterol

Influence of sympathetic and parasympathetic substances in clinical concentrations on human nasal ciliary beat.

The effect of autonomic substances on ciliary beat in mucosal biopsies from the normal human nose was studied. The influence on ciliary beat frequency (CBF) as well as on ciliary beat harmony was measured photoelectrically. The sympathetic beta-agonist isoprenaline was found to have a stimulatory effect on CBF, whereas the alpha-agonist xylometazoline reduced CBF and ciliary beat harmony. The parasympathetic agonist carbachol had a positive effect on CBF. The sympathetic antagonists timolol (beta) and phentolamine (alpha) as well as the parasympathetic antagonist atropine had no effect. The effect of the agonists on ciliary beat was absent when they were administered in combination with their specific antagonists. These experiments indicate that, in clinical concentrations, the autonomic substances modify ciliary beat by a direct effect on the ciliated cells.

Adrenergic alpha-Agonists

Factors influencing ciliary beat measurements.

Investigation of the effect of environmental and pharmacological factors on human respiratory epithelium requires standardization of measuring conditions. Ciliary beat frequency (CBF) and its shift were determined photo-electrically in 43 biopsies of human nasal mucosa. Curette biopsies were compared to forceps biopsies. CBF variation between three different cells of one biopsy sample did not differ for the two biopsy techniques. The ciliated cells of forceps biopsy specimens showed a more constant beating pattern which resulted in a small CBF shift. It appeared that in studying ciliary activity a continuous layer of ciliated cells which is in contact with the basal membrane is required. Therefore forceps biopsies are preferable to curette biopsies. The environmental temperature has to remain constant since CBF is temperature dependent. The pH and osmolarity of the medium do not influence CBF when kept within a certain range. No effect of medium superfusion flow rate was seen.

Basement Membrane

Ciliary beat frequency and the nasal cycle.

The purpose of this study was to investigate whether the ciliary beat frequency (CBF) is influenced by the nasal cycle. Nasal patency was assessed by active anterior rhinomanometry and immediately followed by measuring CBF in biopsies taken from the posterior aspect of the inferior turbinates in 22 healthy volunteers. CBF was determined in three different cells of each biopsy by means of a phase-contrast microscope and a photo-electrical cell. The signal was analyzed by a computed power spectrum. The frequency and its shift were calculated for a period of 20 s. The results were as follows: (1) no correlation was found between CBF and nasal patency; (2) CBF in one cell is constant to a high degree; (3) CBF of different cells in the same biopsy specimen varies considerably.

Adolescent