The short- and long-term postural effects on the forced expiratory tracheal noise time were studied in a sample of 12 subjects. In contrast to the spirometric parameters, the tracheal forced expiratory noise time does not respond to a short-term change in the body posture from sitting and standing positions to the lying position, as well as to 14-day-long orthostatic hypokinesia in a lying position with a body angle of +9.6°. However, significant multidirectional individual dynamics of the tracheal forced expiratory noise time was observed in all subjects during long-term orthostatic hypokinesia, whereas the spirometric parameters had a dominant growth response. It is assumed that the estimation of the forced expiratory tracheal noise time during long-term orthostatic hypokinesia in lunar gravity simulation may provide useful data in addition to spirometry when assessing the individual lung function dynamics. The dynamics of acoustic parameters, as well as spirometric parameters, during long-term postural effects can be considered as adaptive changes.
Objective: The time signature of tracheal noise in the 200–2000 Hz frequency band recorded during a forced expiratory manoeuvre (FETa) is a promising tool for diagnosis of bronchial obstructions. FETa is typically registered using a microphone with a stethoscope head placed on the neck over the trachea (stethoscope sensor). We studied basic time and spectral parameters of forced expiratory tracheal noises with a microphone placed near the mouth (lapel microphone, outside the flow of exhaled air) and compared these with measurements via stethoscope sensor, with the aim of providing patient home monitoring via standard personal computer facilities. Approach: FETa, 200 Hz band pass times, and frequency responses of signals recorded simultaneously with both sensors were analysed in a sample of 24 healthy volunteers. Main results: Averaged real transfer function of signals from a stethoscope sensor and a lapel microphone in the frequency range 200–1800 Hz was characterized by a slope of −7.2 dB/octave. This is near the slope of −6 dB/octave predicted via theoretical models of both sensors. The lapel microphone and stethoscope sensor were not interchangeable regarding spectral characteristics of forced expiratory tracheal noises. However, FETa measurements in healthy volunteers via stethoscope sensor and lapel microphone showed no significant differences according to U-Mann–Whitney test for independent samples. Significance: The ability to measure FETa successfully with a lapel microphone placed near the mouth was experimentally demonstrated in healthy volunteers. Additional studies are needed to verify whether FETa measured near the mouth is acceptable for monitoring pulmonary status in patients with asthma or chronic obstructive pulmonary disease.
The correlations between acoustic characteristics and lung function parameters measured by body plethysmography were revealed when analyzing the sample of 230 subjects consisting of subgroups of healthy subjects, subjects with risk factors, and patients with obstructive lung diseases. Multidirectional character of the correlations between acoustic characteristics of forced expiratory tracheal sounds and parameters measured by body plethysmography/spirometry was established in subgroups of healthy subjects, asthma patients with spirometrically confirmed and unconfirmed obstructive changes, and patients with chronic pulmonary disease.
The dynamics of the duration of tracheal forced expiratory noises in a group of volunteers were studied before, during, and after a 520-day confinement. The duration did not change in most volunteers. Two volunteers exhibited significant changes in the duration of tracheal sounds and some spirometric parameters. The increase in the duration of tracheal forced expiratory noises and the decrease in spirometric parameters reveal ventilation impairment of the obstructive type. Analysis of the duration of tracheal forced expiratory noise dynamics during prolonged confinement has proven to be a sensitive technique to test ventilation function changes.
In previous study it was shown that duration of tracheal forced expiratory noises is promising to reveal negative changes of lung function after dive. The objective is a study of parameters of tracheal forced expiratory noises in changed gas media. The first experiment involved 25 volunteers (22-60 years), performed forced exhalation under normal pressure with air, oxygen-helium and oxygen-krypton mixtures. The second experiment in the chamber involved 6 volunteers (25-46 years), which performed forced exhalation with air under normal pressure (0.1 MPa), and under elevated pressure 0.263 MPa with air and oxygen-helium mixture. In the first experiment the direct linear dependence on gas density was found for forced expiratory noises common duration in the band of 200-2000 Hz and for its durations in narrow 200-Hz bands, excluding high frequency range 1400-2000 Hz. In the second experiment a significant reversed dependence of high frequency durations and spectral energies in 200-Hz bands (1600-2000 Hz) on adiabatic gas compressibility. Individual dynamics of common duration of tracheal forced expiratory noises under model dive of 16.3 m (0.263 MPa) is more then the diagnostic threshold of this parameter for lung function decrease, previously obtained for divers under normal pressure.
It was earlier demonstrated that the duration of tracheal noises of forced exhalation (FE) looks to be promising to determine adverse changes in the lung function after a dive. This study dealt with the parameters of tracheal expiratory noises (FE) as dependent of the composition of breathing gas mixtures. In the first type of experiments, 25 volunteers aged from 22 to 60 years carried out forced exhalation under a normal pressure of air or of an oxygen-helium or oxygen-krypton mixture. In the second type of experiments, six volunteers from 25 to 46 years of age performed forced exhalation with air in an altitude chamber under a normal pressure (0.1 MPa); the same subjects performed FE under an elevated pressure (0.263 MPa) while breathing air or an oxygen-helium mixture. In the first type of experiments, the total duration of tracheal FE noises in the frequency range 200–2000 Hz and 200-Hz bands FE noises depended directly and linearly on the density of the gas mixture; this was not the case in the high-frequency band from 1400 to 2000 Hz. In the second type of experiments, the high-frequency durations and spectral energies of tracheal FE noises (1600–2000 Hz) depended inversely and significantly on the adiabatic gas compressibility. In a simulated dive to a depth of 16.3 m (0.263 MPa), individual changes in the total duration of tracheal FE noises exceeded the diagnostic threshold of deterioration of the lung function in divers that was determined earlier under normal pressure.
Electronic homeopathic copies (EHC) are remedies prepared without traditional dilution/potentiation but by means of so-called "imprinting" of initial substance to water (or other carriers) with the help of M. Ray's devices. EHC are interpreted by modern homeopathic medicine as functional analogs of biologically active substances (BAS) in supersmall doses (SSD). The authors have undertaken 3 blind randomised experiments concerning BAS aqueous solution of fertilizer biohumus, its EHC and placebo influence on tomatoes' sprouts development. Filtered and intermixed water have been encapsulated in 1.5-liter polyethylene containers. The solution of fertilizer has been prepared in accordance with the instruction. EHC has been "transferred" from the concentrated fertilizer with the help of Simulator (Metabolics, GB) apparatus. "Deleting" of information have been made for placebo. Seed of tomatoes (kind "Yasniye") have been pre-soaked in preparations and landed in accordingly numbered plastic boxes (97 x 15 x 14 sm) by 40-44 plants in each one. The seedbed was from one well intermixed portion. The plants were top-dressed by preparations (200-300 ml) one time per week. The boxes were exposed in one room (rotation was made twice per week). The plants have been cut up on the 38th day from pre-soaking. The height of a green part and its mass have been measured for each plant. The differences between independent samples (preparations studied) have been estimated. The differences between EHC and placebo have appeared to be reliable, in the first experiment (p < 2 x 10(-4)--mass, p < 10(-9)--height), in the second one (p = 0.014--mass), in the third one (p < 3 x 10(-6)--mass, p = 0.028--height) The results obtained verify a reality of EHC phenomenon. Thus it is quite within reason to suggest an existence of uniform physical (instead of chemical) mechanism of BAS's EHC/SSD structuring and acting on biological objects.