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Effects Of Passive Smoking On The Respiratory System Mechanics Of Healthy Non-Smokers In Different Body Positions

Effects Of Passive Smoking On The Respiratory System Mechanics Of Healthy Non-Smokers In Different Body Positions

Status
Completed
Phases
Phase 1
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02171871
Enrollment
20
Registered
2014-06-24
Start date
2010-01-31
Completion date
2014-05-31
Last updated
2014-06-24

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

PASSIVE SMOKING ,, RESPIRATORY SYSTEM MECHANICS,

Keywords

EFFECTS,, PASSIVE SMOKING ,, RESPIRATORY SYSTEM MECHANICS,, DIFFERENT BODY POSITIONS.

Brief summary

The study will examine changes in the respiratory system mechanics and in respiratory physiology after exposure of subjects to passive smoking. It is about healthy non-smoking volunteers and it will be carried out through the techniques of forced oscillation with Impulse Oscillometry (IOS) technique methodology and nitrogen washout. The present study will contribute to the understanding of passive smoking consequences on the respiratory system of healthy non-smokers. Thanks to the nitrogen washout technique, changes to closing volume and closing capacity will be examined during measurement in different positions (sitting, decubitus) together with exposure to passive smoking. With IOS methodology, changes in respiratory system resistance in four positions (standing, sitting, right and left lateral decubitus) will be evaluated before and after exposure to a passive smoking environment. Results of the present study are expected to provide interesting information on the changes in measured parameters not only in different positions but also after exposure to smoking.

Detailed description

Methodology For the current study the following techniques will be used. Impulse Oscillometry (IOS) methodology constitutes a method of studying the respiratory system mechanics, during which the investigators manage to determine the flow resistance, the capacity resistance and the resonant frequency through the application of multifrequent signals. It also offers the possibility of studying the mechanics of central and peripheral respiratory system. The nitrogen washout technique is a method of indirect measurement of the functional residual capacity, during which exhaled nitrogen is measured after the subject has breathed oxygen of a 100% density. A single breath nitrogen washout contributes to the measurement of closing volume and closing capacity. Emitted particles, detected in a smoking environment, will be measured with the SIDEPAK AM510, which is a measurement device of particles based on their diameter. The research will be conducted according to the following procedure. Healthy non-smoking volunteers (18-40 years old) will be subject, after giving their brief medical history, to IOS and to the nitrogen washout test. The IOS will be conducted in four positions (standing, sitting, right and left lateral decubitus), whereas the nitrogen washout test in two (sitting and decubitus). Then the subject will be exposed to a smoking environment for 20 minutes, under a continuous measurement of emitted particles using the SIDEPAK AM510 in Pm level 2,5=250, in a closed space of 20 m3. The passive smoking environment will be achieved via a smoking machine. Afterwards, the subject will again undergo IOS in four positions (standing, sitting, right and left lateral decubitus) and nitrogen washout test in two positions (sitting and decubitus). Thanks to the above mentioned techniques, changes in measured parameters will be evaluated.

Interventions

OTHERexposed to a smoking environment

Then the subjects will be exposed to a smoking environment for 20 minutes, under a continuous measurement of emitted particles using the SIDEPAK AM510 in Pm level 2,5=250, in a closed space of 20 m3. The passive smoking environment will be achieved via a smoking machine. Afterwards, the subject will again undergo IOS in four positions (standing, sitting, right and left lateral decubitus) and nitrogen washout test in two positions (sitting and decubitus). Thanks to the above mentioned techniques, changes in measured parameters will be evaluated.

Sponsors

National and Kapodistrian University of Athens
CollaboratorOTHER
Hellenic Anticancer Society
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
PREVENTION
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 40 Years
Healthy volunteers
Yes

Inclusion criteria

* healthy volunteer, adults, non-smokers

Exclusion criteria

* \< 18 years old , Current pregnancy, Breastfeeding women.

Design outcomes

Primary

MeasureTime frameDescription
change of IOS in four positions (standing, sitting, right and left lateral decubitus)before exposure (Baseline) and after exposure to passive smoking with a 5 minutes interval at one time pointIOS methodology constitutes a method of studying the respiratory system mechanics, during which we manage to determine the flow resistance, the capacity resistance and the resonant frequency through the application of multifrequent signals. It also offers the possibility of studying the mechanics of central and peripheral respiratory system.

Countries

Greece

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026