Matches in SemOpenAlex for { <https://semopenalex.org/work/W2607207071> ?p ?o ?g. }
- W2607207071 endingPage "208" @default.
- W2607207071 startingPage "199" @default.
- W2607207071 abstract "In-line monitoring of continuous powder flow is an integral part of the continuous manufacturing process of solid oral dosage forms in the pharmaceutical industry. Specifically, monitoring downstream from loss-in-weight (LIW) feeders and/or continuous mixers provides important data about the state of the process. Such measurements support control of the process and thereby enhance product quality. Near Infrared Spectroscopy (NIRS) is a potential PAT tool to monitor the homogeneity of a continuous powder flow stream in pharmaceutical manufacturing. However, the association of analytical results from NIR sampling of the powder stream and the homogeneity (content uniformity) of the resulting tablets provides several challenges; appropriate sampling strategies, adequately robust modeling techniques and poor sensitivities (for low dose APIs) are amongst them. Information from reflectance-based NIRS sampling is limited. The region of the powder bed that is interrogated is confined to the surface where the measurement is made. This potential bias in sampling may, in turn, limit the ability to predict the homogeneity of the finished dosage form. Further, changes to the processing parameters (e.g., rate of powder flow) often have a significant effect on the resulting data. Sample representation, interdependence between process parameters and their effects on powder flow behavior are critical factors for NIRS monitoring of continuous powder flow system. A transmission NIR method was developed as an alternative technique to monitor continuous powder flow and quantify API in the powder stream. Transmission NIRS was used to determine the thickness of the powder stream flowing from a loss-in-weight feeder. The thickness measurement of the powder stream provided an in-depth understanding about the effects of process parameters such as tube angles and powder flow rates on powder flow behaviors. This knowledge based approach helped to define an analytical design space that was specific to flow properties and to determine the optimum process parameters for successful quantitation of powder stream. A PAT method based on transmission NIRS was developed to monitor the homogeneity of API in a continuously flowing powder stream." @default.
- W2607207071 created "2017-04-28" @default.
- W2607207071 creator A5040060121 @default.
- W2607207071 creator A5058129103 @default.
- W2607207071 creator A5064331366 @default.
- W2607207071 creator A5085128783 @default.
- W2607207071 date "2017-06-01" @default.
- W2607207071 modified "2023-10-17" @default.
- W2607207071 title "In-line monitoring and optimization of powder flow in a simulated continuous process using transmission near infrared spectroscopy" @default.
- W2607207071 cites W105695126 @default.
- W2607207071 cites W110534203 @default.
- W2607207071 cites W1953225582 @default.
- W2607207071 cites W1967104960 @default.
- W2607207071 cites W1977625615 @default.
- W2607207071 cites W1987293746 @default.
- W2607207071 cites W2007251052 @default.
- W2607207071 cites W2008244333 @default.
- W2607207071 cites W2010242857 @default.
- W2607207071 cites W2010742141 @default.
- W2607207071 cites W2016652690 @default.
- W2607207071 cites W2022542086 @default.
- W2607207071 cites W2043123443 @default.
- W2607207071 cites W2043322796 @default.
- W2607207071 cites W2047435612 @default.
- W2607207071 cites W2047796313 @default.
- W2607207071 cites W2052388787 @default.
- W2607207071 cites W2057515372 @default.
- W2607207071 cites W2065321075 @default.
- W2607207071 cites W2067251637 @default.
- W2607207071 cites W2068700439 @default.
- W2607207071 cites W2075173555 @default.
- W2607207071 cites W2075455679 @default.
- W2607207071 cites W2076988032 @default.
- W2607207071 cites W2080864133 @default.
- W2607207071 cites W2083114637 @default.
- W2607207071 cites W2083188361 @default.
- W2607207071 cites W2084739447 @default.
- W2607207071 cites W2087071239 @default.
- W2607207071 cites W2095342036 @default.
- W2607207071 cites W2109219887 @default.
- W2607207071 cites W2110350379 @default.
- W2607207071 cites W2169752218 @default.
- W2607207071 cites W2315703870 @default.
- W2607207071 cites W2511500953 @default.
- W2607207071 cites W2554252322 @default.
- W2607207071 cites W2190102789 @default.
- W2607207071 doi "https://doi.org/10.1016/j.ijpharm.2017.04.054" @default.
- W2607207071 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28445765" @default.
- W2607207071 hasPublicationYear "2017" @default.
- W2607207071 type Work @default.
- W2607207071 sameAs 2607207071 @default.
- W2607207071 citedByCount "33" @default.
- W2607207071 countsByYear W26072070712018 @default.
- W2607207071 countsByYear W26072070712019 @default.
- W2607207071 countsByYear W26072070712020 @default.
- W2607207071 countsByYear W26072070712021 @default.
- W2607207071 countsByYear W26072070712022 @default.
- W2607207071 countsByYear W26072070712023 @default.
- W2607207071 crossrefType "journal-article" @default.
- W2607207071 hasAuthorship W2607207071A5040060121 @default.
- W2607207071 hasAuthorship W2607207071A5058129103 @default.
- W2607207071 hasAuthorship W2607207071A5064331366 @default.
- W2607207071 hasAuthorship W2607207071A5085128783 @default.
- W2607207071 hasConcept C106131492 @default.
- W2607207071 hasConcept C113196181 @default.
- W2607207071 hasConcept C119857082 @default.
- W2607207071 hasConcept C120665830 @default.
- W2607207071 hasConcept C121332964 @default.
- W2607207071 hasConcept C127413603 @default.
- W2607207071 hasConcept C140779682 @default.
- W2607207071 hasConcept C142259097 @default.
- W2607207071 hasConcept C144133560 @default.
- W2607207071 hasConcept C162324750 @default.
- W2607207071 hasConcept C162853370 @default.
- W2607207071 hasConcept C172120300 @default.
- W2607207071 hasConcept C174998907 @default.
- W2607207071 hasConcept C178144697 @default.
- W2607207071 hasConcept C183906286 @default.
- W2607207071 hasConcept C185592680 @default.
- W2607207071 hasConcept C186060115 @default.
- W2607207071 hasConcept C18903297 @default.
- W2607207071 hasConcept C192562407 @default.
- W2607207071 hasConcept C21547014 @default.
- W2607207071 hasConcept C21880701 @default.
- W2607207071 hasConcept C2776902269 @default.
- W2607207071 hasConcept C2985264121 @default.
- W2607207071 hasConcept C31972630 @default.
- W2607207071 hasConcept C41008148 @default.
- W2607207071 hasConcept C43571822 @default.
- W2607207071 hasConcept C43617362 @default.
- W2607207071 hasConcept C57879066 @default.
- W2607207071 hasConcept C86803240 @default.
- W2607207071 hasConceptScore W2607207071C106131492 @default.
- W2607207071 hasConceptScore W2607207071C113196181 @default.
- W2607207071 hasConceptScore W2607207071C119857082 @default.
- W2607207071 hasConceptScore W2607207071C120665830 @default.
- W2607207071 hasConceptScore W2607207071C121332964 @default.
- W2607207071 hasConceptScore W2607207071C127413603 @default.