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Improving Nasal Airflow with a Novel Nasal Breathing Stent
by
Komiyama, Osamu
, Yagi, Tatsuo
, Chow, Chin-Moi
, Sawa, Arisa
, Nakayama, Toshiyuki
, Iwata, Yoshihiro
, Suzuki, Hiroshi
in
Air flow
/ airflow
/ Apnea
/ Boilers
/ Continuous positive airway pressure
/ Implants
/ nasal dilator
/ Nose
/ nose obstruction
/ obstructive sleep apnea
/ peak nasal inspiratory flow rate
/ Respiration
/ Risk analysis
/ Risk factors
/ Sleep apnea
/ Sleep disorders
/ Stents
/ Velocity
/ Visualization
2022
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Improving Nasal Airflow with a Novel Nasal Breathing Stent
by
Komiyama, Osamu
, Yagi, Tatsuo
, Chow, Chin-Moi
, Sawa, Arisa
, Nakayama, Toshiyuki
, Iwata, Yoshihiro
, Suzuki, Hiroshi
in
Air flow
/ airflow
/ Apnea
/ Boilers
/ Continuous positive airway pressure
/ Implants
/ nasal dilator
/ Nose
/ nose obstruction
/ obstructive sleep apnea
/ peak nasal inspiratory flow rate
/ Respiration
/ Risk analysis
/ Risk factors
/ Sleep apnea
/ Sleep disorders
/ Stents
/ Velocity
/ Visualization
2022
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Do you wish to request the book?
Improving Nasal Airflow with a Novel Nasal Breathing Stent
by
Komiyama, Osamu
, Yagi, Tatsuo
, Chow, Chin-Moi
, Sawa, Arisa
, Nakayama, Toshiyuki
, Iwata, Yoshihiro
, Suzuki, Hiroshi
in
Air flow
/ airflow
/ Apnea
/ Boilers
/ Continuous positive airway pressure
/ Implants
/ nasal dilator
/ Nose
/ nose obstruction
/ obstructive sleep apnea
/ peak nasal inspiratory flow rate
/ Respiration
/ Risk analysis
/ Risk factors
/ Sleep apnea
/ Sleep disorders
/ Stents
/ Velocity
/ Visualization
2022
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Improving Nasal Airflow with a Novel Nasal Breathing Stent
Journal Article
Improving Nasal Airflow with a Novel Nasal Breathing Stent
2022
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Overview
Nasal obstruction requires close attention, as it is a risk factor for obstructive sleep apnea (OSA). This study evaluated airflow rates of our newly designed nasal breathing stent (NBS) compared with those of existing nasal dilators in 10 adult men. We hypothesized that the NBS would expand the nasal passage more than the other nasal dilators by means of airflow measurements. We compared airflow measurements between the NBS and three existing appliances and no appliance. Velocity measurements were recorded by analyzing 499 videographic images when each appliance was placed next to a steam generator at 0, 5, and 10 mm from the outlet port for airflow visualization. The peak nasal inspiratory flow (PNIF) rate was measured using an inspiratory flow meter. The NBS resulted in significantly higher airflow velocity measurements at all distances from the outlet port and a higher PNIF rate than the other appliances. Thus, the NBS offers a significantly decreased resistance to air movement compared with other appliances. Future in-depth investigations are required to demonstrate the use of NBS as a nasal dilator in conjunction with continuous positive airway pressure/oral appliance treatments in patients with OSA.
Publisher
MDPI AG,MDPI
Subject
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