Material deformation behaviour has a critical impact on tablet formation. Fragmentation is one of the key mechanisms affecting the strength of a final compact, however, quantitative methods for estimating fragmentation are often complex, destructive and time-consuming. The purpose of this study was to investigate the applicability of terahertz time-domain spectroscopy (THz-TDS) to quantify fragmentation upon tableting. Up to five size fractions of microcrystalline cellulose (MCC), dibasic calcium phosphate (DCP), and lactose monohydrate (lactose) in the range of <125 µm up to the range of 355-500 µm were compressed into tablets and analysed with THz-TDS. The effective refractive index and absorbance spectra of whole tablets were measured in...
The pharmaceutical industry requires a rapid nondestructive technique for monitoring porosity of tab...
Pharmaceutical tablets are typically manufactured by the uni-axial compaction of powder that is conf...
Scattering of terahertz radiation in compacts is of great interest due to its potential to non-destr...
Purpose The aim of this study was to establish the suitability of terahertz (THz) transmission meas...
To develop a model to non-destructively estimate particle size changes in powder compacts using tera...
Pharmaceutical tablets are typically manufactured by the uni-axial compaction of powder that is conf...
Drug release performance of tablets is often highly dependent on disintegration, and water ingress i...
The objective of this study is to propose a novel optical compressibility parameter for porous pharm...
Disintegration performance was measured by analysing both water ingress and tablet swelling of pure ...
ABSTRACTDisintegration performance was measured by analysing both water ingress and tablet swelling ...
Tablet dissolution is strongly affected by swelling and solvent penetration into its matrix. A terah...
We present terahertz pulsed imaging (TPI) as a novel tool to quantify the hardness and surface densi...
Pharmaceutical tablet disintegration is a critical process for dissolving and enabling the absorptio...
Tablet dissolution is strongly affected by swelling and solvent penetration into its matrix. A terah...
ABSTRACTTablet dissolution is strongly affected by swelling and solvent penetration into its matrix....
The pharmaceutical industry requires a rapid nondestructive technique for monitoring porosity of tab...
Pharmaceutical tablets are typically manufactured by the uni-axial compaction of powder that is conf...
Scattering of terahertz radiation in compacts is of great interest due to its potential to non-destr...
Purpose The aim of this study was to establish the suitability of terahertz (THz) transmission meas...
To develop a model to non-destructively estimate particle size changes in powder compacts using tera...
Pharmaceutical tablets are typically manufactured by the uni-axial compaction of powder that is conf...
Drug release performance of tablets is often highly dependent on disintegration, and water ingress i...
The objective of this study is to propose a novel optical compressibility parameter for porous pharm...
Disintegration performance was measured by analysing both water ingress and tablet swelling of pure ...
ABSTRACTDisintegration performance was measured by analysing both water ingress and tablet swelling ...
Tablet dissolution is strongly affected by swelling and solvent penetration into its matrix. A terah...
We present terahertz pulsed imaging (TPI) as a novel tool to quantify the hardness and surface densi...
Pharmaceutical tablet disintegration is a critical process for dissolving and enabling the absorptio...
Tablet dissolution is strongly affected by swelling and solvent penetration into its matrix. A terah...
ABSTRACTTablet dissolution is strongly affected by swelling and solvent penetration into its matrix....
The pharmaceutical industry requires a rapid nondestructive technique for monitoring porosity of tab...
Pharmaceutical tablets are typically manufactured by the uni-axial compaction of powder that is conf...
Scattering of terahertz radiation in compacts is of great interest due to its potential to non-destr...