We report outcomes from an EPAG-led cross-industry study, characterizing flow rate/elapsed-time profiles of equipment used for testing dry powder inhalers (DPIs). A thermal mass flow sensor was used by nine organizations in a round-robin approach to record inlet flow rate-time profiles of individual participant compendial test systems (TS) including either sample collection tubes (SCT) or a cascade impactor (either the Andersen 8-stage non-viable impactor, ACI, or the Next Generation Impactor, NGI) equipped with USP/PhEur induction port and pre-separator. An inlet orifice generated a 4-kPa pressure drop at each of the target flow rates (30, 60 and 90 L/min), simulating a pressure drop typical for high-, medium- and low-resistance DPIs respe...
The aerodynamic characteristics of the dose emitted from a dry powder inhaler (DPI) are inhalation f...
Inhaler device modifications directly influence aerosol generation mechanisms, so the development of...
Background: Although understanding of the scientific basis of aerosol therapy with dry powder inhale...
We report a cross-industry study characterizing flow rate-time profiles of equipment used for testin...
A simple two-compartment, first-order flow resistance model of a cascade impactor reveals the reason...
We report the outcome of a European Pharmaceutical Aerosol Group study evaluating flow rate-rise tim...
We report the outcome of a European Pharmaceutical Aerosol Group study evaluating flow rate-rise tim...
We report the outcome of a European Pharmaceutical Aerosol Group study evaluating flow rate-rise tim...
We describe a computational model that captures the physics of the unsteady airflow start-up that ac...
The AIM Concept as an augmentation of full resolution cascade impactor (CI) measurements of the aero...
The AIM Concept as an augmentation of full resolution cascade impactor (CI) measurements of the aero...
The AIM Concept as an augmentation of full resolution cascade impactor (CI) measurements of the aero...
Emitted dose and aerodynamic particle size distribution testing of dry powder inhalers are often per...
Effective drug delivery to the lungs by a DPI device requires the air-stream through the device to h...
The aerodynamic characteristics of the dose emitted from dry powder inhalers (DPIs) varies from pati...
The aerodynamic characteristics of the dose emitted from a dry powder inhaler (DPI) are inhalation f...
Inhaler device modifications directly influence aerosol generation mechanisms, so the development of...
Background: Although understanding of the scientific basis of aerosol therapy with dry powder inhale...
We report a cross-industry study characterizing flow rate-time profiles of equipment used for testin...
A simple two-compartment, first-order flow resistance model of a cascade impactor reveals the reason...
We report the outcome of a European Pharmaceutical Aerosol Group study evaluating flow rate-rise tim...
We report the outcome of a European Pharmaceutical Aerosol Group study evaluating flow rate-rise tim...
We report the outcome of a European Pharmaceutical Aerosol Group study evaluating flow rate-rise tim...
We describe a computational model that captures the physics of the unsteady airflow start-up that ac...
The AIM Concept as an augmentation of full resolution cascade impactor (CI) measurements of the aero...
The AIM Concept as an augmentation of full resolution cascade impactor (CI) measurements of the aero...
The AIM Concept as an augmentation of full resolution cascade impactor (CI) measurements of the aero...
Emitted dose and aerodynamic particle size distribution testing of dry powder inhalers are often per...
Effective drug delivery to the lungs by a DPI device requires the air-stream through the device to h...
The aerodynamic characteristics of the dose emitted from dry powder inhalers (DPIs) varies from pati...
The aerodynamic characteristics of the dose emitted from a dry powder inhaler (DPI) are inhalation f...
Inhaler device modifications directly influence aerosol generation mechanisms, so the development of...
Background: Although understanding of the scientific basis of aerosol therapy with dry powder inhale...