Academic literature on the topic 'Colorimetric'

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Journal articles on the topic "Colorimetric"

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Lixiu, He, Hu Yuefei, and Lv Zhiqiao. "Research Progress in Detection of Explosives by Chemical Colorimetric Method." Expert Review of Chinese Chemical 2, no. 1 (2024): 1–4. http://dx.doi.org/10.62022/ercc.issn3006-0095.2024.01.001.

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This article reviews the current application status and research progress of colorimetric detection methods based on chemical colorimetry in the detection of explosives.It mainly introduced colorimetric sensors, colorimetric sensor arrays, and chemical colorimetric sensors based on novel material substrates. The application prospect of chemical colorimetric method in the field of explosives detection was prospected.
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Xu, Ning, Shuang Jin, and Li Wang. "Metal nanoparticles-based nanoplatforms for colorimetric sensing: A review." Reviews in Analytical Chemistry 40, no. 1 (2020): 1–11. http://dx.doi.org/10.1515/revac-2021-0122.

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Abstract With the progress of analysis technology and nanotechnology, colorimetric detection has become one of the research hotspots in the field of analytical chemistry. Compared with traditional detection methods, the colorimetric method has many advantages, such as high sensitivity, good selectivity, convenience and fast, as well as low cost. In recent years, metal nanoparticles have been introduced into colorimetry, making the research and application of colorimetry develop rapidly. In this work, we summarize the usual colorimetric detection methods based on metal nanoparticles-based nanozymes and their applications in the last five years. We hope that this work will help readers understand the mechanism and practical application value of nanozyme-based colorimetric biosensors. Meanwhile, this work may give some hints and references for future colorimetric detection research to promote the application and development of nanozyme-based colorimetry in biomedical and environmental analysis.
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Yefymenko, Serhii, Ihor Hryhorenko, Iurii Khoroshailo, and Svitlana Hryhorenko. "Applying covariance analysis to determine the factor influence on the control parameter in colorimetric study." Ukrainian Metrological Journal, no. 3 (September 30, 2022): 49–55. http://dx.doi.org/10.24027/2306-7039.3.2022.269783.

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The paper considers solutions to a scientific and practical problem of applying covariance analysis to determine the factor influence on the functional transformation of the control parameter in colorimetric study. The study implies determining the factor influence on the additive and multiplicative components of the measurement error of the colorimetric control parameter to assess the validity of conclusions about the factor influence on the transformation of the control parameter. The limitations on the number of basic levels (control parameters) and the factors influencing the result of colorimetric control are determined. During the study, the equations to assess the validity of statistical conclusions about the informational significance of the colorimetric control indicators for a simplified model of cross-classification were obtained.
 The need for the study is due to the fact that in colorimetric control of cereal grains, the measurement uncertainty of the results of measuring the values of the controlled indicators at given levels of the control parameter is quite high.
 In modern industry, colorimetry has a number of advantages over other methods, such as weight analysis. Colorimetric determinations are performed much faster. In the case of weight analysis, the chemical reaction is at the beginning of the determination followed by a series of long operations, while in the case of colorimetry, the colors are compared immediately after the chemical reaction. Therefore, the colorimetric method belongs to the methods of express control.
 The main task of colorimetric express control (in our case) is to determine the quality of cereal grains. The task is important and relevant because grain, namely flour, is the main ingredient of many foods, e.g. bread, pasta, pastries, and cookies. Quality products can be obtained only from quality raw materials. Thus, at present time, it is relevant to determine the quality of cereal grains, and flour as the derived product, in Ukraine.
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Pierre, Lissage, Julio Elías Bruna Bugueño, Patricio Alejandro Leyton Bongiorno, Alejandra Torres Mediano, and Francisco Javier Rodríguez-Mercado. "Colorimetric Indicator Based on Gold Nanoparticles and Sodium Alginate for Monitoring Fish Spoilage." Polymers 16, no. 6 (2024): 829. http://dx.doi.org/10.3390/polym16060829.

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In this work, a colorimetric indicator based on gold nanoparticles (AuNP) and a biodegradable and eco-friendly polymer (sodium alginate, Alg.), was developed for the real-time detection of fish spoilage products. The AuNPs and the colorimetric indicator were characterized using UV-VIS, FTIR spectroscopies, TGA, DSC, XRD, TEM, and colorimetry. The UV-VIS spectrum and TEM showed the successful synthesis, the spherical shape, and the size of AuNPs. The results indicated color changes of the indicator in packaged fish on day 9 of storage at a refrigerated temperature (5 °C. These results showed the successful application of the colorimetric indicator in the detection of TVB-N in packaged fish.
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Li, Xianming, Lu Gao, Feng Li, Xiandeng Hou, and Peng Wu. "Universal and label-free photosensitization colorimetric assays enabled by target-induced termini transformation of dsDNA resistant to Exo III digestion." Chemical Communications 55, no. 50 (2019): 7211–14. http://dx.doi.org/10.1039/c9cc03551f.

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Matula, J. "Determination of dissolved reactive and dissolved total phosphorus in water extract of soils." Plant, Soil and Environment 57, No. 1 (2011): 1–6. http://dx.doi.org/10.17221/185/2010-pse.

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The simplified acid peroxydisulphate digestion of soil water extract was evaluated for determination of total dissolved phosphorus by molybdenum-blue colorimetry in comparison with direct P-detection in water extract by the ICP-AES technique. The research was conducted on 79 agricultural soils with different agrochemical characteristics. The results of the colorimetric P detection in water extract without digestion and ICP phosphorus detection were different. The median of values determined by ICP-AES was 1.7 times higher than that of colorimetry, but the correlations between the two measurements were quite close (r = 0.993). Differences between the colorimetric phosphorus and ICP-AES phosphorus were irregular, increasing as the phosphorus level in soils decreased. The simplified procedure of acid peroxydisulphate digestion is useful for routine determination of total water-extracted phosphorus in soils when the soil testing laboratory is not equipped with the ICP-AES technique. The two-tailed paired t-test did not prove any difference in the values between the direct ICP-AES P-detection in water extract of soils and colorimetric P-detection in the acid peroxydisulphate digest.  
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Majdinasab, Marjan, Sondes Ben Aissa, and Jean Louis Marty. "Advances in Colorimetric Strategies for Mycotoxins Detection: Toward Rapid Industrial Monitoring." Toxins 13, no. 1 (2020): 13. http://dx.doi.org/10.3390/toxins13010013.

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Mycotoxins contamination is a global public health concern. Therefore, highly sensitive and selective techniques are needed for their on-site monitoring. Several approaches are conceivable for mycotoxins analysis, among which colorimetric methods are the most attractive for commercialization purposes thanks to their visual read-out, easy operation, cost-effectiveness, and rapid response. This review covers the latest achievements in the last five years for the development of colorimetric methods specific to mycotoxins analysis, with a particular emphasis on their potential for large-scale applications in food industries. Gathering all types of (bio)receptors, main colorimetric methods are critically discussed, including enzyme-linked assays, lateral flow-assays, microfluidic devices, and homogenous in-solution strategies. This special focus on colorimetry as a versatile transduction method for mycotoxins analysis is comprehensively reviewed for the first time.
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AMELIN, VASILY G., SHOGAH ZEN ALABDEN CHALAWI, and DMITRY S. BOLSHAKOV. "IDENTIFICATION AND AUTHENTICATION OF COW’S MILK POWDER USING A SMARTPHONE AND CHEMOMETRIC ANALYSIS." Lomonosov chemistry journal 64, no. 1, 2023 (2023): 49–59. http://dx.doi.org/10.55959/msu0579-9384-2-2023-64-1-49-59.

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The possibility of identi cation and authentication of cow’s milk powder by the method of chemical colorimetry of the samples’ own uorescence using a smartphone camera and chemometric analysis is shown. A fundamental test device for direct colorimetric analysis of powdered milk is proposed, excluding the stage of sample preparation. Fluorescence excitation was carried out with a portable source of monochromatic UV radiation (λ = 365 nm). Colorimetric parameters of powdered milk uorescence in RGB space were recorded using a smartphone camera. We used chemometric processing of the calculated analytical signal, which made it possible to reduce the analysis time and visualize the study data. The evaluation of the data array of uorescence colorimetric parameters (RGB) was carried out by principal component analysis (PCA) and hierarchical clustering analysis (HCA) using the XLSTAT software.
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Jiang, Lei, Shi Sheng Zhou, and Ying Cui. "Model of Ink Quantity Control Based on Colorimetry System." Applied Mechanics and Materials 262 (December 2012): 258–62. http://dx.doi.org/10.4028/www.scientific.net/amm.262.258.

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Abstract. In the offset printing process,the ink quantity control in the ink zone, color and ink quantity transformation algorithm and the establishment of database,are all based on principle of density measurement. With the establishment and wide spread use of the standard ISO12647-2 for offset, colorimetric measurement is becoming a tendency. By experimental research,this article analyses the relationship between ink thickness and colorimetric value(L*a*b*) by regression method, determines the best ink quantity parameter, establishes the model of ink quantity controlling based on colorimetry system.
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Yoon, Jiyoung, Cheolhwan Kim, and Shihyun Ahn. "Colorimetric Matching for Medical Cameras." International Journal of Computer and Electrical Engineering 8, no. 3 (2016): 227–33. http://dx.doi.org/10.17706/ijcee.2016.8.3.227-233.

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Dissertations / Theses on the topic "Colorimetric"

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Shen, Shizhe. "Color difference formula and uniform color space modeling and evaluation /." Online version of thesis, 2009. http://hdl.handle.net/1850/11356.

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Xue, Yang. "Uniform color spaces based on CIECAM02 and IPT color difference equations /." Online version of thesis, 2008. http://hdl.handle.net/1850/8424.

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Nyström, Daniel. "Colorimetric and Multispectral Image Acquisition." Licentiate thesis, Linköping University, Linköping University, Department of Science and Technology, 2006. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-8866.

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<p>The trichromatic principle of representing color has for a long time been dominating in color imaging. The reason is the trichromatic nature of human color vision, but as the characteristics of typical color imaging devices are different from those of human eyes, there is a need to go beyond the trichromatic approach. The interest for multi-channel imaging, i.e. increasing the number of color channels, has made it an active research topic with a substantial potential of application.</p><p>To achieve consistent color imaging, one needs to map the imaging-device data to the device-independent colorimetric representations CIEXYZ or CIELAB, the key concept of color management. As the color coordinates depend not only on the reflective spectrum of the object but also on the spectral properties of the illuminant, the colorimetric representation suffers from metamerism, i.e. objects of the same color under a specific illumination may appear different when they are illuminated by other light sources. Furthermore, when the sensitivities of the imaging device differ from the CIE color matching functions, two spectra that appear different for human observers may result in identical device response. On contrary, in multispectral imaging, color is represented by the object’s physical characteristics namely the spectrum which is illuminant independent. With multispectral imaging, different spectra are readily distinguishable, no matter they are metameric or not. The spectrum can then be transformed to any color space and be rendered under any illumination.</p><p>The focus of the thesis is high quality image-acquisition in colorimetric and multispectral formats. The image acquisition system used is an experimental system with great flexibility in illumination and image acquisition setup. Besides the conventional trichromatic RGB filters, the system also provides the possibility of acquiring multi-channel images, using 7 narrowband filters. A thorough calibration and characterization of all the components involved in the image acquisition system is carried out. The spectral sensitivity of the CCD camera, which can not be derived by direct measurements, is estimated using least squares regression, optimizing the camera response to measured spectral reflectance of carefully selected color samples.</p><p>To derive mappings to colorimetric and multispectral representations, two conceptually different approaches are used. In the model-based approach, the physical model describing the image acquisition process is inverted, to reconstruct spectral reflectance from the recorded device response. In the empirical approach, the characteristics of the individual components are ignored, and the functions are derived by relating the device response for a set of test colors to the corresponding colorimetric and spectral measurements, using linear and polynomial least squares regression.</p><p>The results indicate that for trichromatic imaging, accurate colorimetric mappings can be derived by the empirical approach, using polynomial regression to CIEXYZ and CIELAB. Because of the media-dependency, the characterization functions should be derived for each combination of media and colorants. However, accurate spectral data reconstruction requires for multi-channel imaging, using the model-based approach. Moreover, the model-based approach is general, since it is based on the spectral characteristics of the image acquisition system, rather than the characteristics of a set of color samples.</p><br>Report code: LiU-TEK-LIC- 2006:70
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Stokes, Mike. "Colorimetric tolerances of digital images /." Online version of thesis, 1991. http://hdl.handle.net/1850/10896.

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Wandtke, Sebastian. "Anthracene Based Colorimetric Molecular Sensors." Doctoral thesis, Niedersächsische Staats- und Universitätsbibliothek Göttingen, 2014. http://hdl.handle.net/11858/00-1735-0000-0022-5DBE-D.

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Noriega, Leonardo Antonio. "The colorimetric segmentation of textured digital images." Thesis, Southampton Solent University, 1998. http://ssudl.solent.ac.uk/2444/.

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This study approaches the problem of colour image segmentation as a pattern recognition task. This leads to the problem being broken down into two component parts: feature extraction and classification algorithms. Measures to enable the objective assessment of segmentation algorithms are considered. In keeping with this pattern-recognition based philosophy, the issue of texture is approached by a consideration of features, follwed by experimentation based on classification. Techniques based on Gabor filters and fractal dimension are compared. Also colour is considered in terms of its features, and a systematic exploration of colour features in undertaken. The technique for assessing colour features is also used as the basis for a segmentation algorithm that can be used for combining colour and texture. In this study, several novel techniques are presented and discussed. Firstly a methodology for the judgement of image segmentation algorithms. Secondly a technique for segmenting images using fractal dimension is presented, including a novel application of information dimension. thirdly an objective assessment of colour spaces using the techniques discussed as the first point of this study. Finally strategies for combining colour and texture in the segmentation process are discussed and techniques presented.
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Bring, Torun. "Red Glass Coloration : a Colorimetric and Structural Study." Doctoral thesis, Stockholm : Oorganisk kemi, KTH Kemi, 2006. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-4176.

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Schaefer, Samuel. "Colorimetric water quality sensing with mobile smart phones." Thesis, University of British Columbia, 2014. http://hdl.handle.net/2429/46570.

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The goal of this thesis is to develop water quality sensors that are portable, low cost, easy to use, and accurate. Such technology may potentially be beneficial for a significant portion of the world's population who use ground water that is neither tested nor treated. We have developed two versions of a colorimetric water quality sensor using an approach based on integration with mobile smart phones. Mobile smart phones are advanced communication devices with features including a touch-based interface, internet connectivity, and operating systems capable of running application software (apps). Integration of these features with sensor hardware can yield a new class of sensors with augmented usability, data mobility, and general appeal. The first sensor prototype created in this work is based on a sensor attachment that physically connects to an iPhone smart phone, utilizing the flash and camera onboard the iPhone to perform colorimetric measurement of water samples. The second sensor prototype created is based on a colorimetric sensor node that wirelessly communicates with an Android smart phone through Bluetooth connection. Both sensors are capable of measuring pH and the concentrations of chlorine and alkalinity, with accuracy and precision comparable to industry-standard colorimeters. The distinguishing features of our prototypes include high portability, operation without instruction manuals by interaction with a user through a graphical interface, high data mobility by exploiting the internet connectivity of smart phones, and rapid water quality measurements.
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Hazafy, David. "Development of colorimetric indicators based on Methylene Blue." Thesis, University of Strathclyde, 2012. http://oleg.lib.strath.ac.uk:80/R/?func=dbin-jump-full&object_id=18932.

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Thomas, Jean-Baptiste. "Colorimetric characterization of displays and multi-display systems." Dijon, 2009. http://www.theses.fr/2009DIJOS043.

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Dans le contexte de l'imagerie couleur, cette thèse se focalise sur la caractérisation colorimétrique des moniteurs, vidéo-projecteurs et systèmes multi-projecteurs. A partir de l'approche traditionnelle ponctuelle, nous continuons avec une analyse spatiale. Nous portons attention à la dualité entre une caractérisation à objectif professionnel visant à garantir la précision colorimétrique et une caractérisation "commerciale" visant à préserver le sens et l'esthétisme du contenu. Dans une première partie, nous considérons l'approche ponctuelle. Nous étudions le modèle piecewise linear assuming variation in chromaticity et démontrons son efficacité sur les dispositifs à cristaux liquides. Nous évaluons et améliorons une méthode "commerciale" ne nécessitant pas l'usage d'un appareil de mesure autre qu'un appareil de photo numérique. Nous travaillons également sur la distribution des données dans les espaces colorimétriques pour la construction de look up table. Nous proposons un nouveau modèle considérant une interpolation/approximation basée sur les splines polyharmoniques. Nous proposons une méthode de distribution de données qui permet d'inverser n'importe quel modèle de caractérisation colorimétrique. Dans une seconde partie, nous établissons les bases d'une caractérisation colorimétrique spatiale à travers l'analyse quantitative de la variation spatiale des couleurs au sein d'un video-projecteur. Nous montrons que la variation en terme de chromaticité n'est pas nécessairement négligeable comparée à la luminance, et que certaines caractéristiques sont spatialement invariantes pour un appareil donné et une technologie donnée<br>In the context of color imaging, this thesis focuses on colorimetric characterization of displays and multi-display systems. Starting from the conventional pointwise approach, we continue to some spatial analysis. We give some special attention to the duality between a professional and a consumer-oriented characterization. In the first part of this thesis we consider pointwise display color characterization. We investigate the piecewise linear assuming variation in chromaticity and demonstrate its efficiency on liquid crystal technology. We evaluate and improve a end-user method that does not need any measurement device other than a simple digital color camera. We confirm that this method gives significantly better results than using default gamma settings for both liquid crystal and digital light processing projection displays. We focus on the distribution of color patches in color spaces for the establishment of 3d look up table models. We propose a new accurate display color characterization model based on polyharmonic spline interpolation/approximation. We propose methods to build an optimized structure that permits to invert any display color characterization forward model. In a second part, we establish a basis for spatial color characterization via the quantitative analysis of the color shift and its spatial variation thoughout the display area. We show that the spatial chromaticity shift is not negligible in some cases and that some features are spatially invariant within one display of a given technology
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Books on the topic "Colorimetric"

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m, Daniel Nystro. Colorimetric and multispectral image acquisition. Digital Media Division, Dept. of Science and Technology, Campus Norrko ping, Linko ping University, 2006.

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Roberts, A. SPECOL: A colorimetric measurement system. BBC, 1987.

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United States. National Aeronautics and Space Administration., ed. Colorimetric qualification of shear sensitive liquid crystal coatings. MCAT Institute, 1993.

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United States. National Aeronautics and Space Administration., ed. Colorimetric qualification of shear sensitive liquid crystal coatings. MCAT Institute, 1993.

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Antweiler, Ronald C. Automated, colorimetric methods for determination of nitrate plus nitrite, nitrite, ammonium and orthophosphate ions in natural water samples. U.S. Geological Survey, 1996.

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Paul, Gabbott, ed. Applications of thermal analysis. Blackwell Pub., 2007.

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Gabbott, Paul. Principles and applications of thermal analysis. Blackwell Pub., 2008.

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Pappalardo, Rachel. A colorimetric database of natural stone samples for architectural heritage and conservation. LCP, 2004.

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Taylor, E. W. The assessment of the colorimetric properties of light sources for use in television scene lighting. BBC, 1988.

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Acker, James G. The heritage of SeaWiFS: A retrospective on the CZCS NIMBUS Experiment Team (NET) Program. National Aeronautics and Space Administration, Goddard Space Flight Center, 1994.

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Book chapters on the topic "Colorimetric"

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Gooch, Jan W. "Colorimetric." In Encyclopedic Dictionary of Polymers. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_2642.

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Chen, Lingxin, Yunqing Wang, Xiuli Fu, and Ling Chen. "Colorimetric Nanoprobes." In SpringerBriefs in Molecular Science. Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-662-43624-0_2.

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Gooch, Jan W. "Colorimetric Purity." In Encyclopedic Dictionary of Polymers. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_2643.

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Guder, H. J., Werner Kunz, and Sabine West. "Colorimetric Systems." In Nonradioactive Labeling and Detection of Biomolecules. Springer Berlin Heidelberg, 1992. http://dx.doi.org/10.1007/978-3-662-00144-8_12.

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Gooch, Jan W. "Purity, Colorimetric." In Encyclopedic Dictionary of Polymers. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_9620.

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Westland, Stephen. "Colorimetric Characterization." In Color Image and Video Enhancement. Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-09363-5_1.

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Sampietro, D. A., M. A. Sgariglia, J. R. Soberón, E. N. Quiroga, and M. A. Vattuone. "Colorimetric Reactions." In Isolation, Identification and Characterization of Allelochemicals/ Natural Products. CRC Press, 2009. http://dx.doi.org/10.1201/9780367803636-4.

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Patnaik, Pradyot. "Colorimetric Analysis." In Handbook of Environmental Analysis. CRC Press, 2017. http://dx.doi.org/10.1201/9781315151946-7.

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Srivastava, Yashi. "Colorimetric Biosensors." In Biosensors in Food Safety and Quality. CRC Press, 2022. http://dx.doi.org/10.1201/9780429259890-6.

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Lavillegrand, Jean-Rémi, Georges Offenstadt, Eric Maury, Bertrand Guidet, and Arnaud Galbois. "Colorimetric and Placement." In Diet and Nutrition in Critical Care. Springer New York, 2014. http://dx.doi.org/10.1007/978-1-4614-8503-2_8-1.

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Conference papers on the topic "Colorimetric"

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Loo, Jacky, Roman Calpe, Xuan-Hung Pham, et al. "Colorimetric Sensing with Reconfigurable Chiral Plasmonic Metamolecules." In Optical Sensors. Optica Publishing Group, 2024. https://doi.org/10.1364/sensors.2024.sm1h.5.

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Chiral Plasmonic Metamolecules with pronounced optical activities enable colorimetric readout of chiroptical responses. We developed the reconfigurable metamolecules that has a high dis-symmetry factor as nanoswitches for molecular biosensing, where addition of target analytes brought a drastic color change readily detected with the naked eye.
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Poulikakos, Lisa V., Moises Ibarra Miranda, Lars Osterberg, Paula Kirya, and Loren Phillips. "Rationally designed colorimetric metasurfaces for healthcare applications." In Active Photonic Platforms (APP) 2024, edited by Ganapathi S. Subramania and Stavroula Foteinopoulou. SPIE, 2024. http://dx.doi.org/10.1117/12.3027892.

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Meng, Yuanyuan, Yanxia Chen, Chennong Li, Yandi Liu, and Lei Qin. "Sweat colorimetric detection system based on OpenMV." In 2024 5th International Conference on Machine Learning and Computer Application (ICMLCA). IEEE, 2024. http://dx.doi.org/10.1109/icmlca63499.2024.10754440.

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Presti, Damián, Lucas Marchesano, Jeffry H. Martínez Valdiviezo, Lucas Ripoll, Gustavo A. Torchia, and Marcos F. Bilen. "Optical sensor applications in advancing colorimetric molecular diagnostics." In Molecular and Nanophotonic Machines, Devices, and Applications VII, edited by Zouheir Sekkat and Takashige Omatsu. SPIE, 2024. http://dx.doi.org/10.1117/12.3036147.

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Guo, Zongliang, Rongxin Fu, Hanzhi Zhang, et al. "Visually Intelligent Digital Microfluidics for Generalized Colorimetric Assays." In 2025 IEEE 38th International Conference on Micro Electro Mechanical Systems (MEMS). IEEE, 2025. https://doi.org/10.1109/mems61431.2025.10917728.

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Soudi, Mahdi, Pablo Cencillo-Abad, and Debashis Chanda. "Scalable plasmonic colorimetric sensor for on-site detection." In Nanoscale Imaging, Sensing, and Actuation for Biomedical Applications XXII, edited by Dror Fixler and Sebastian Wachsmann-Hogiu. SPIE, 2025. https://doi.org/10.1117/12.3046402.

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Poyer, Maëlan, and Christophe Hurter. "Colorimetric Compensation in Video Mapping for Luggage Inspection." In 16th International Conference on Information Visualization Theory and Applications. SCITEPRESS - Science and Technology Publications, 2025. https://doi.org/10.5220/0013312200003912.

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de Cea, Marc, Jaehwan Kim, and Rajeev J. Ram. "Using colorimetric compounds in integrated optical refractive index sensors." In CLEO: Science and Innovations. Optica Publishing Group, 2024. http://dx.doi.org/10.1364/cleo_si.2024.sf1a.4.

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DeMarsh, LeRoy. "Color Appearance Problems in Motion Pictures and Television." In Color Appearance. Optica Publishing Group, 1987. http://dx.doi.org/10.1364/ca.1987.tuc2.

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In the context of motion picture and television applications, the term color appearance refers to how the picture looks, as opposed to it's measured or predicted physical characteristics. Most published studies of color reproduction problems concentrate on these physical factors. Indeed, many engineers seem to feel that color reproduction is a trivial problem-- just read a standard text on colorimetry and one has it all. Television is often cited as an example of one of the more successful applications of colorimetry. The author feels, that while application of colorimetric methods certainly played an important role in the development of television, the system works despite rather than because of "colorimetric theory".
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Poulikakos, Lisa, Zaid Haddadin, Dev Shah, Loren Phillips, and Anna My Nguyen. "Nature-inspired 3D-architected colorimetric metasurfaces for polarization-tunable colorimetry." In Active Photonic Platforms (APP) 2023, edited by Ganapathi S. Subramania and Stavroula Foteinopoulou. SPIE, 2023. http://dx.doi.org/10.1117/12.2677913.

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Reports on the topic "Colorimetric"

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Valdes, James J., and James P. Chambers. A Colorimetric Esterase Assay. Defense Technical Information Center, 1990. http://dx.doi.org/10.21236/ada223403.

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Riddle, Catherine L., and Rick Demmer. Colorimetric Detection Method for Actinides (CoDeAc). Office of Scientific and Technical Information (OSTI), 2020. http://dx.doi.org/10.2172/1616584.

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Stringfellow, William, and Ji Lee. Method: Carbohydrate in Produced Water (Colorimetric). Office of Scientific and Technical Information (OSTI), 2019. http://dx.doi.org/10.2172/1676371.

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ภู่ทอง, ทรงจันทร์. ทดสอบฤทธิ์ของโมโนโคลนอลแอนติบอดีในการทำลายเซลล์มะเร็งตับ โดยการตรวจด้วยวิธี MTT Colorimetric Assay : รายงานผลการวิจัย. จุฬาลงกรณ์มหาวิทยาลัย, 2004. https://doi.org/10.58837/chula.res.2004.104.

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Abstract:
ทำการศึกษาฤทธิ์ของโมโนโคลนอลแอนติบอดีต่อเซลล์มะเร็งตับ S102 ในการทำลายและยับยั้งการเจริญของเซลล์มะเร็งตับและเซลล์มะเร็งชนิดอื่นๆ ทดสอบโดยวิธี MTT Colorimetric Assay ซึ่งเป็นวิธีที่ใช้อย่างแพร่หลายในการตรวจเซลล์ที่มีชีวิต โดยดูผลการทำปฏิกิริยาของเอนไซม์ succinate dehydrogenase จากไมโตคอนเดรีย จากการทดลองพบว่า โมโนโคลนอลแอนติบอดี 5 โคลน ได้แก่ หมายเลข 20, 27, 44, 88 และ 94 มีฤทธิ์ฆ่าและยับยั้งการเจริญของเซลล์ Hep-G2, R12 และ S102 แอนติบอดีที่มีฤทธิ์ทำลายและยับยั้งการเจริญของเซลล์มะเร็งตับได้ดีที่สุดคือ แอนติบอดีหมายเลข 88 โดยที่ความเข้มข้น 100 microgram/ml สามารถฆ่าเซลล์ Hep-G2 ได้ประมาณ 26% และยับยั้งการเจริญของเซลล์ R12 และ S102 ได้ 97 และ 72% ตามลำดับ ซึ่งไม่มีผลยับยั้งการเจริญของเซลล์ CH-Liver ซึ่งเป็นเซลล์ที่เลี้ยงจากเซลล์ตับตามปกติ ดังนั้น จะเห็นได้ว่าแอนติบอดีต่อมะเร็งตับมีฤทธิ์ที่จะฆ่าหรือยับยั้งเซลล์มะเร็งตับได้ แต่ความเข้มข้นที่ใช้ค่อนข้างสูง (100-500 microgram/ml) นอกจากนี้ยังมีความสามารถยับยั้งเซลล์มะเร็งชนิดอื่นๆ ได้ด้วย
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MCWHORTER, CHRISTOPHER. Colorimetric Method for Beryllium Surface Contamination Detection. Office of Scientific and Technical Information (OSTI), 2004. http://dx.doi.org/10.2172/822083.

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Hartmann, Kevin, William Buttner, Robert Burgess, and Carl Rivkin. Passive Leak Detection Using Commercial Hydrogen Colorimetric Indicator. Office of Scientific and Technical Information (OSTI), 2016. http://dx.doi.org/10.2172/1326889.

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Sandra L. Fox, Keith A. Daum, Carla J. Miller, and Marnie M. Cortez. Emergency First Responders' Experience with Colorimetric Detection Methods. Office of Scientific and Technical Information (OSTI), 2007. http://dx.doi.org/10.2172/920707.

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Baumann, E. Colorimetric determination of ferrous-ferric ratio in glass. Office of Scientific and Technical Information (OSTI), 1987. http://dx.doi.org/10.2172/7080410.

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White, Brandy J., Martin H. Moore, Kaleb Franco, and Anthony P. Malanoski. Colorimetric Environmental Sensor: Aqueous Indicator Screening (Part I). Defense Technical Information Center, 2018. http://dx.doi.org/10.21236/ad1060523.

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Faulkner, Stephen P., Paul E. Hintze, and Steven L. Ashby. Evaluation of Colorimetric Methods for Measuring Reduced (Ferrous) Iron. Defense Technical Information Center, 1999. http://dx.doi.org/10.21236/ada361192.

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