High-volume on-line spectroscopic composition testing of...

Optics: measuring and testing – By dispersed light spectroscopy – Utilizing a spectrometer

Reexamination Certificate

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C356S416000, C250S339020

Reexamination Certificate

active

06690464

ABSTRACT:

FIELD OF THE INVENTION
This invention pertains to quality control systems and methods that detect process defects in large-scale manufacturing processes, such as the manufacture of pharmaceutical dosage units, using continuous spectral imaging techniques.
BACKGROUND OF THE INVENTION
Defects in pharmaceutical products can be highly dangerous, or even fatal. And even if such defects are relatively minor, such as non-uniformly sized capsules, they can result in a significant loss of goodwill by the manufacturer. It is therefore of the utmost importance to avoid such defects.
Several approaches now exist to screen pharmaceutical agents packaged in predetermined dosage units, such as capsules or tablets. These include off-line and on-line methods. Off-line methods include the testing of samples of reagents and end-products using various analytical methods. On-line methods attempt to monitor the process of manufacturing the product to detect defects as they occur.
A number of on-line screening approaches currently exist. One approach includes adding coloring agents to bulk ingredients and optically checking the shape, integrity, and color of the final product. Systems employing this approach can take a series of video images of dosage units and use image processing methods to assess the shape and color of the dosage units. Other systems employ groups of discrete optical detectors to detect different colors and infrared detectors to detect the scattering caused by structural defects. These systems can be complicated to install and maintain, and cannot guarantee a defect-free product.
SUMMARY OF THE INVENTION
Several aspects of the invention are presented in this application. These relate to improvements to process control apparatus and methods, including apparatus and methods that detect process defects in large-scale manufacturing processes, such as the manufacture of pharmaceutical dosage units, using continuous spectral imaging techniques.
Systems according to the invention are advantageous in that they can continuously test the actual composition of each dosage unit within its packaging. Such systems can therefore screen for errors in coloring of ingredients, for contamination or breakdown that occurs independent of coloring, and for other types of errors that might not otherwise be detected. And because systems according to the invention can perform their composition measurements through the end-user package walls, they can detect contamination or damage that occurs during packaging.
Performing composition analysis by comparing spectral information with libraries of known spectral signatures, allows small concentrations of potentially dangerous contaminants, such as potent toxins, to be detected. Without being correlated to a specific spectral signature, such small concentrations might have little effect on prior art process monitoring methods, and might therefore be dismissed as within an error margin.
Performing composition analysis by comparing spectral information with libraries of known spectral signatures may also allow for the detection of unexpected components. Comparing acquired spectral information with libraries of components may uncover contaminants not normally associated with the process. This may allow a manufacturer to avert hazards that arise out of unforseen circumstances, such as supplier errors or deliberate tampering.
Performing composition analysis by comparing spectral information with libraries of known spectral signatures may further allow for the detection of subtle shifts in the process. Because relative quantities of ingredients can be directly measured, a change in the ratio of these ingredients can be detected. While such changes may not warrant rejection of the products, they may allow the process to be optimized and prevent the process from drifting out of its intending operating range.
Systems according to the invention may also be advantageous in that they can allow a process engineer to select optimal process variables to monitor. By mapping selected spectral information into an image, which is then processed by an image processor, systems according to the invention can apply the image processing resources to the spectral data that correlates best to known and predicted failure modes. And because the system acquires information about a large number of wavelengths simultaneously, a system operator can try a number of different approaches to achieve the best results.


REFERENCES:
patent: 3737239 (1973-06-01), Adams et al.
patent: 3929398 (1975-12-01), Bates
patent: 4004150 (1977-01-01), Natelson
patent: 4054389 (1977-10-01), Owen
patent: 4278538 (1981-07-01), Lawrence et al.
patent: 4599001 (1986-07-01), Richard
patent: 4788428 (1988-11-01), Metcalf et al.
patent: 4922092 (1990-05-01), Rushbrooke et al.
patent: 5007737 (1991-04-01), Hirleman, Jr.
patent: 5029245 (1991-07-01), Keranen et al.
patent: 5166755 (1992-11-01), Gat
patent: 5244630 (1993-09-01), Khalil et al.
patent: 5257086 (1993-10-01), Fateley et al.
patent: 5272518 (1993-12-01), Vincent
patent: 5377003 (1994-12-01), Lewis et al.
patent: 5379065 (1995-01-01), Cutts
patent: 5386112 (1995-01-01), Dixon
patent: 5440388 (1995-08-01), Erickson
patent: 5448069 (1995-09-01), Tobler et al.
patent: 5488474 (1996-01-01), Fateley et al.
patent: 5504332 (1996-04-01), Richmond et al.
patent: 5508200 (1996-04-01), Tiffany et al.
patent: 5528368 (1996-06-01), Lewis et al.
patent: 5532128 (1996-07-01), Eggers et al.
patent: 5545897 (1996-08-01), Jack
patent: 5558231 (1996-09-01), Weier
patent: 5568266 (1996-10-01), Ciza et al.
patent: 5579105 (1996-11-01), Belton et al.
patent: 5589351 (1996-12-01), Harootunian
patent: 5606413 (1997-02-01), Bellus et al.
patent: 5615009 (1997-03-01), Sakura et al.
patent: 5668373 (1997-09-01), Robbat, Jr. et al.
patent: 5675155 (1997-10-01), Pentoney, Jr. et al.
patent: 5790188 (1998-08-01), Sun
patent: 5828066 (1998-10-01), Messerschmidt
patent: 5880830 (1999-03-01), Schechter
patent: 5949480 (1999-09-01), Gerhart et al.
patent: 6078390 (2000-06-01), Bengtsson
patent: 6118530 (2000-09-01), Bouevitch et al.
patent: 6120518 (2000-09-01), Mark et al.
patent: 6166373 (2000-12-01), Mao
patent: 6172743 (2001-01-01), Kley et al.
patent: 6211906 (2001-04-01), Sun
patent: 6229913 (2001-05-01), Nayar et al.
patent: 6236047 (2001-05-01), Malin et al.
patent: 6253162 (2001-06-01), Jarman et al.
patent: 6313423 (2001-11-01), Sommer et al.
patent: 6323944 (2001-11-01), Xiao
patent: 6373568 (2002-04-01), Miller et al.
patent: 6380539 (2002-04-01), Edgar
patent: 6483112 (2002-11-01), Lewis
patent: 6495818 (2002-12-01), Mao
patent: 28 23 514 (1978-05-01), None
patent: 0 887 638 (1998-12-01), None
patent: 2 014 300 (1979-08-01), None
patent: 2 315 131 (1998-01-01), None
patent: WO 89 05465 (1989-06-01), None
patent: WO 97 13839 (1996-09-01), None
patent: WO 98 15813 (1998-04-01), None
patent: WO 99 02950 (1999-01-01), None
patent: WO 00 60529 (2000-10-01), None
Akong, M. et al. “High-Throughput Measurement of Intracellular Ca2+by Fluorescence Imaging of a 96-Well Microtiter Plate,”25th Annual Meeting of the Society for Neuroscience, Society for Neuroscience Abstracts, 21 (1-3). 1995, 577.
Frgala, T; Proffitt, RT; Reynolds, CP. “A novel 96-well plate cytotoxicity assay based on fluorescence digital imaging microscopy,”Proceedings of the Eighty-sixth Annual Meeting of the American Association for Cancer Research, 36 (Mar. 1995).
Geladi, Paul and Grahn, Hans.Multivariate Image Analysis. John Wiley and Sons, 1997, pp. vii-xiii, 23-44.
Grant, RL; Acosta, D. “Ratiometric measurement of intracellular pH of cultured cells with BCECF in a fluorescence multi-well plate reader,”In Vitro Cell Dev Biol Anim, 33(4) (Apr. 1997), 256-260.
Hyvarinen, Tymo: Herrala, Esko; and Dall' Ava, Alberto. “Direct sight imaging spectrograph: a unique add-on component brings spectral imaging to industrial applications,” Presented at 1998 IS&T/SPIE's Symposium on Electronic Imaging: Science and Technology (EI98), in Conference 3302: Digital Solid State Cameras: Design and Applications, Paper 3302-2

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