Standardization of complex biologically derived spectrochemical datasets
暂无分享,去创建一个
Francis L Martin | Camilo L M Morais | Dayi Zhang | Pierre L Martin-Hirsch | Nigel J Fullwood | Kássio M G Lima | Martin Isabelle | Hari Sreedhar | Li Cui | Yong-Guan Zhu | Maria Paraskevaidi | Júlio Trevisan | Michael J Walsh | Camilo L. M. Morais | N. Fullwood | Yong-guan Zhu | F. Martin | M. Paraskevaidi | P. Martin-Hirsch | Dayi Zhang | J. Trevisan | M. Isabelle | M. Walsh | Li Cui | Dayin Zhang | H. Sreedhar | K. M. Lima | Júlio Trevisan
[1] Ranjit Kumar Sahu,et al. Characterization of Malignant Melanoma Using Vibrational Spectroscopy , 2005, TheScientificWorldJournal.
[2] Xiaohong Bi,et al. Fourier transform infrared imaging and MR microscopy studies detect compositional and structural changes in cartilage in a rabbit model of osteoarthritis , 2007, Analytical and bioanalytical chemistry.
[3] S. Sundaresan,et al. Fourier-transform infrared spectroscopic study of characteristic molecular structure in cancer cells of esophagus: an exploratory study. , 2007, Cancer detection and prevention.
[4] Jürgen Popp,et al. Towards an improvement of model transferability for Raman spectroscopy in biological applications , 2017 .
[5] A. Shahzad,et al. Diagnostic Application of Fluorescence Spectroscopy in Oncology Field: Hopes and Challenges , 2010 .
[6] R. García-Ruiz,et al. Infrared spectroscopy as a tool for the assessment of soil biological quality in agricultural soils under contrasting management practices , 2018 .
[7] Satoshi Kawata,et al. Raman and SERS microscopy for molecular imaging of live cells , 2013, Nature Protocols.
[8] C. DeCarli,et al. What does fluorodeoxyglucose PET imaging add to a clinical diagnosis of dementia? , 2007, Neurology.
[9] Kássio M. G. Lima,et al. Principal Component Analysis with Linear and Quadratic Discriminant Analysis for Identification of Cancer Samples Based on Mass Spectrometry , 2017 .
[10] F. Martin,et al. ATR-FTIR spectroscopy coupled with chemometric analysis discriminates normal, borderline and malignant ovarian tissue: classifying subtypes of human cancer. , 2016, The Analyst.
[12] M. MatJafri,et al. Visible spectroscopy calibration transfer model in determining pH of Sala mangoes , 2015 .
[13] Frank Wien,et al. Biomedical applications of synchrotron radiation circular dichroism spectroscopy: identification of mutant proteins associated with disease and development of a reference database for fold motifs. , 2004, Faraday discussions.
[15] L. Ni,et al. Screening wavelengths with consistent and stable signals to realize calibration model transfer of near infrared spectra. , 2019, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[16] Jang-Ming Lee,et al. Visible-absorption spectroscopy as a biomarker to predict treatment response and prognosis of surgically resected esophageal cancer , 2016, Scientific Reports.
[17] Ajith Abraham,et al. Artificial neural networks , 2005 .
[18] Vishal K. Varma,et al. A label-free approach by infrared spectroscopic imaging for interrogating the biochemistry of diabetic nephropathy progression. , 2016, Kidney international.
[19] J. W. Allwood,et al. Liquid chromatography-mass spectrometry calibration transfer and metabolomics data fusion. , 2012, Analytical chemistry.
[20] Mia Hubert,et al. Robust statistics for outlier detection , 2011, WIREs Data Mining Knowl. Discov..
[21] J. Kauffman,et al. Standardization of Raman spectra for transfer of spectral libraries across different instruments. , 2011, The Analyst.
[22] Max Diem,et al. Classification of malignant and benign tumors of the lung by infrared spectral histopathology (SHP) , 2015, Laboratory Investigation.
[23] G. Déléris,et al. Pharmacologic application of fourier transform IR spectroscopy: in vivo toxicity of carbon tetrachloride on rat liver. , 2000, Biopolymers.
[25] S. Carley,et al. An introduction to power and sample size estimation , 2003, Emergency medicine journal : EMJ.
[26] Hugh J. Byrne,et al. Studies of chemical fixation effects in human cell lines using Raman microspectroscopy , 2010, Analytical and bioanalytical chemistry.
[27] R. Barnes,et al. Standard Normal Variate Transformation and De-Trending of Near-Infrared Diffuse Reflectance Spectra , 1989 .
[28] S. Kazarian,et al. Attenuated total reflection Fourier-transform infrared (ATR-FTIR) imaging of tissues and live cells. , 2016, Chemical Society reviews.
[29] F. Martin,et al. Vibrational spectroscopy of biofluids for disease screening or diagnosis: translation from the laboratory to a clinical setting , 2014, Journal of biophotonics.
[30] António S. Barros,et al. Mid-infrared (MIR) metabolic fingerprinting of amniotic fluid: a possible avenue for early diagnosis of prenatal disorders? , 2013, Analytica chimica acta.
[31] D. B. Hibbert,et al. Vocabulary of concepts and terms in chemometrics (IUPAC Recommendations 2016) , 2016 .
[32] D. L. Pavia,et al. Introduction to Spectroscopy , 1978 .
[33] P. Serruys,et al. Near-infrared spectroscopy predicts cardiovascular outcome in patients with coronary artery disease. , 2014, Journal of the American College of Cardiology.
[34] Ehsan Gazi,et al. A correlation of FTIR spectra derived from prostate cancer biopsies with gleason grade and tumour stage. , 2006, European urology.
[35] Ye Sun,et al. Comparison of Benchtop Fourier-Transform (FT) and Portable Grating Scanning Spectrometers for Determination of Total Soluble Solid Contents in Single Grape Berry (Vitis vinifera L.) and Calibration Transfer , 2017, Sensors.
[36] V. Vrabie,et al. Digital Dewaxing of Raman Signals: Discrimination between Nevi and Melanoma Spectra Obtained from Paraffin-Embedded Skin Biopsies , 2009, Applied spectroscopy.
[37] H. Byrne,et al. Spectral pre and post processing for infrared and Raman spectroscopy of biological tissues and cells. , 2016, Chemical Society reviews.
[38] Steven D. Brown,et al. Transfer of multivariate calibration models: a review , 2002 .
[39] John S. Shenk,et al. Populations Structuring of Near Infrared Spectra and Modified Partial Least Squares Regression , 1991 .
[40] J. McCall,et al. Genetic algorithms for modelling and optimisation , 2005 .
[41] Francis L Martin,et al. Fourier-transform infrared spectroscopy coupled with a classification machine for the analysis of blood plasma or serum: a novel diagnostic approach for ovarian cancer. , 2013, The Analyst.
[42] Rebecca Richards-Kortum,et al. Advances in fluorescence imaging techniques to detect oral cancer and its precursors. , 2010, Future oncology.
[43] S. Kazarian,et al. Recent applications of ATR FTIR spectroscopy and imaging to proteins. , 2013, Biochimica et biophysica acta.
[44] Mohamed Medhat Gaber,et al. Random forests: from early developments to recent advancements , 2014 .
[45] H. Lanfermann,et al. Clinical application of proton magnetic resonance spectroscopy in the diagnosis of intracranial mass lesions , 2002, Neuroradiology.
[46] Thomas Brüning,et al. Marker-free automated histopathological annotation of lung tumour subtypes by FTIR imaging. , 2015, The Analyst.
[47] P. Martínez-Martín,et al. Discrimination analysis of blood plasma associated with Alzheimer's disease using vibrational spectroscopy. , 2013, Journal of Alzheimer's disease : JAD.
[48] Hassan Ghassemian,et al. Maximum relevance, minimum redundancy feature extraction for hyperspectral images , 2010, 2010 18th Iranian Conference on Electrical Engineering.
[49] F. Martin,et al. Phenotyping Metastatic Brain Tumors Applying Spectrochemical Analyses: Segregation of Different Cancer Types , 2018, Analytical Letters.
[50] S. Argov,et al. Possible common biomarkers from FTIR microspectroscopy of cervical cancer and melanoma , 2004, Journal of microscopy.
[51] B. Ren,et al. Functional Single-Cell Approach to Probing Nitrogen-Fixing Bacteria in Soil Communities by Resonance Raman Spectroscopy with 15N2 Labeling. , 2018, Analytical chemistry.
[52] Philip K. Hopke,et al. Calibration transfer as a data reconstruction problem , 1999 .
[53] R. Brereton,et al. Partial least squares discriminant analysis: taking the magic away , 2014 .
[54] Rosario LoBrutto,et al. Content uniformity determination of pharmaceutical tablets using five near-infrared reflectance spectrometers: a process analytical technology (PAT) approach using robust multivariate calibration transfer algorithms. , 2008, Analytica chimica acta.
[55] Peter Bugert,et al. Diagnosis of breast cancer with infrared spectroscopy from serum samples , 2010 .
[56] Anita Mahadevan-Jansen,et al. Clinical instrumentation and applications of Raman spectroscopy. , 2016, Chemical Society reviews.
[57] Dolores Pérez-Marín,et al. Handheld NIRS analysis for routine meat quality control: Database transfer from at-line instruments , 2012 .
[58] A. Sieroń,et al. The role of fluorescence diagnosis in clinical practice , 2013, OncoTargets and therapy.
[59] Francis L Martin,et al. IR microspectroscopy: potential applications in cervical cancer screening. , 2007, Cancer letters.
[60] E. Souied,et al. Infrared features of classic choroidal neovascularisation in exudative age-related macular degeneration , 2008, British Journal of Ophthalmology.
[61] N. Greenfield. Using circular dichroism spectra to estimate protein secondary structure , 2007, Nature Protocols.
[62] Naomi J. Halas,et al. Surface enhanced infrared absorption (SEIRA) spectroscopy on nanoshell aggregate substrates , 2008 .
[63] Katherine A. Bakeev. Process analytical technology : spectroscopic tools and implementation strategies for the chemical and pharmaceutical industries , 2010 .
[64] Yizeng Liang,et al. Calibration model transfer for near-infrared spectra based on canonical correlation analysis. , 2008, Analytica chimica acta.
[65] M. Baker,et al. Developing and understanding biofluid vibrational spectroscopy: a critical review. , 2016, Chemical Society reviews.
[66] J. Kong,et al. Obtaining information about protein secondary structures in aqueous solution using Fourier transform IR spectroscopy , 2015, Nature Protocols.
[67] D. Naumann,et al. Identification of medically relevant microorganisms by vibrational spectroscopy. , 2002, Journal of microbiological methods.
[68] M. Forina,et al. Transfer of calibration function in near-infrared spectroscopy , 1995 .
[69] Ernst Wit,et al. Identifying Variables Responsible for Clustering in Discriminant Analysis of Data from Infrared Microspectroscopy of a Biological Sample , 2007, J. Comput. Biol..
[70] R. Aebersold,et al. Mass spectrometry-based proteomics , 2003, Nature.
[71] Randy Lane,et al. Attenuated total reflectance Fourier transform infrared spectroscopy method to differentiate between normal and cancerous breast cells. , 2012, Journal of nanoscience and nanotechnology.
[72] P. Carmona,et al. Vibrational spectroscopic analysis of peripheral blood plasma of patients with Alzheimer’s disease , 2015, Analytical and Bioanalytical Chemistry.
[73] H. Edwards,et al. The detection of drugs of abuse in fingerprints using Raman spectroscopy I: latent fingerprints. , 2004, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[74] Camilo L. M. Morais,et al. Aluminium foil as an alternative substrate for the spectroscopic interrogation of endometrial cancer , 2018, Journal of biophotonics.
[75] Yuan-fu Zhang,et al. The Use of FTIR-ATR Spectrometry for Evaluation of Surgical Resection Margin in Colorectal Cancer: A Pilot Study of 56 Samples , 2014 .
[76] C. Eliasson,et al. Noninvasive detection of concealed liquid explosives using Raman spectroscopy. , 2007, Analytical chemistry.
[77] Frank Wien,et al. Accurate secondary structure prediction and fold recognition for circular dichroism spectroscopy , 2015, Proceedings of the National Academy of Sciences.
[78] Olof Svensson,et al. An evaluation of orthogonal signal correction applied to calibration transfer of near infrared spectra , 1998 .
[79] N. Macleod,et al. Emerging Non-invasive Raman Methods in Process Control and Forensic Applications , 2008, Pharmaceutical Research.
[80] E. Monleón,et al. In vivo detection of scrapie cases from blood by infrared spectroscopy. , 2005, The Journal of general virology.
[81] Xin Li,et al. Calibration transfer of near-infrared spectroscopy by canonical correlation analysis coupled with wavelet transform. , 2017, The Analyst.
[82] Maria Luz Rodriguez-Mendez,et al. Multivariate calibration transfer between two different types of multisensor systems , 2017 .
[83] Jing Wang,et al. FT-IR spectroscopic analysis of normal and cancerous tissues of esophagus. , 2003, World journal of gastroenterology.
[84] Michael D. Hargreaves,et al. Threat detection of liquid explosive precursor mixtures by Spatially Offset Raman Spectroscopy (SORS) , 2009, Security + Defence.
[85] Karthik Vishwanath,et al. Advances in quantitative UV-visible spectroscopy for clinical and pre-clinical application in cancer. , 2009, Current opinion in biotechnology.
[86] K. Resing,et al. Mapping protein post-translational modifications with mass spectrometry , 2007, Nature Methods.
[87] A. Legin,et al. Calibration transfer between different analytical methods. , 2017, Talanta.
[88] P. Meunier,et al. Clinical utility of breast-specific gamma imaging for evaluating disease extent in the newly diagnosed breast cancer patient. , 2009, American journal of surgery.
[89] Camilo L. M. Morais,et al. Blood-based near-infrared spectroscopy for the rapid low-cost detection of Alzheimer's disease. , 2018, The Analyst.
[90] Peter Abel,et al. Attenuated Total Reflection Fourier Transform Infrared (ATR‐FTIR) spectral discrimination of brain tumour severity from serum samples , 2014, Journal of biophotonics.
[91] P. Setlow,et al. Characterization of bacterial spore germination using phase-contrast and fluorescence microscopy, Raman spectroscopy and optical tweezers , 2011, Nature Protocols.
[92] T. Ebbels,et al. Metabolic profiling, metabolomic and metabonomic procedures for NMR spectroscopy of urine, plasma, serum and tissue extracts , 2007, Nature Protocols.
[93] Francis L Martin,et al. Polybrominated diphenyl ether-associated alterations in cell biochemistry as determined by attenuated total reflection Fourier-transform infrared spectroscopy: a comparison with DNA-reactive and/or endocrine-disrupting agents. , 2009, Environmental science & technology.
[94] Pavel Matousek,et al. Noninvasive Authentication of Pharmaceutical Products through Packaging Using Spatially Offset Raman Spectroscopy , 2022 .
[95] Bonnie A. Wallace,et al. Circular Dichroism Spectroscopy of Membrane Proteins , 2016 .
[96] S. Peng,et al. Calibration transfer based on maximum margin criterion for qualitative analysis using Fourier transform infrared spectroscopy. , 2012, The Analyst.
[97] Julian Moger,et al. Clinical applications of infrared and Raman spectroscopy: state of play and future challenges. , 2018, The Analyst.
[98] Rohit Bhargava,et al. Using Fourier transform IR spectroscopy to analyze biological materials , 2014, Nature Protocols.
[99] Ehsan Gazi,et al. Investigating FTIR based histopathology for the diagnosis of prostate cancer , 2009, Journal of biophotonics.
[100] Desire L. Massart,et al. Calibration transfer across near-infrared spectrometric instruments using Shenk's algorithm: effects of different standardisation samples , 1994 .
[101] H Guterman,et al. Distinction of cervical cancer biopsies by use of infrared microspectroscopy and probabilistic neural networks. , 2005, Applied optics.
[102] Romà Tauler,et al. Vibrational spectroscopic image analysis of biological material using multivariate curve resolution–alternating least squares (MCR-ALS) , 2015, Nature Protocols.
[103] P. Mercier,et al. 1H-NMR urinary metabolomic profiling for diagnosis of gastric cancer , 2015, British Journal of Cancer.
[104] H. Martens,et al. Modified Jack-knife estimation of parameter uncertainty in bilinear modelling by partial least squares regression (PLSR) , 2000 .
[105] Alan G. Ryder,et al. Classification of narcotics in solid mixtures using principal component analysis and Raman spectroscopy. , 2002, Journal of forensic sciences.
[106] Ryan Stables,et al. Brain tumour differentiation: rapid stratified serum diagnostics via attenuated total reflection Fourier-transform infrared spectroscopy , 2016, Journal of Neuro-Oncology.
[107] T. De Beer,et al. Calibration transfer of a Raman spectroscopic quantification method for the assessment of liquid detergent compositions from at-line laboratory to in-line industrial scale. , 2018, Talanta.
[108] B. Wood,et al. The effect of common anticoagulants in detection and quantification of malaria parasitemia in human red blood cells by ATR-FTIR spectroscopy. , 2017, The Analyst.
[109] E. Goormaghtigh,et al. Phosphorylation-induced Conformational Changes of Cystic Fibrosis Transmembrane Conductance Regulator Monitored by Attenuated Total Reflection-Fourier Transform IR Spectroscopy and Fluorescence Spectroscopy* , 2004, Journal of Biological Chemistry.
[110] Ian R. Lewis,et al. Raman spectroscopic studies of explosive materials: towards a fieldable explosives detector , 1995 .
[111] B. Kowalski,et al. Multivariate instrument standardization , 1991 .
[112] G. W. Small,et al. Multivariate calibration standardization across instruments for the determination of glucose by Fourier transform near-infrared spectrometry. , 2003, Analytical chemistry.
[113] B. Rigas,et al. Human colorectal cancers display abnormal Fourier-transform infrared spectra. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[114] D. Naumann. Infrared Spectroscopy in Microbiology , 2006 .
[115] Kássio M. G. Lima,et al. A biospectroscopic analysis of human prostate tissue obtained from different time periods points to a trans-generational alteration in spectral phenotype , 2015, Scientific Reports.
[116] Peter D. Wentzell,et al. Applications of maximum likelihood principal component analysis: incomplete data sets and calibration transfer , 1997 .
[117] T. Okai,et al. Evaluation of placental function using near infrared spectroscopy during fetal growth restriction , 2010, Journal of perinatal medicine.
[118] Robert Tibshirani,et al. The Elements of Statistical Learning: Data Mining, Inference, and Prediction, 2nd Edition , 2001, Springer Series in Statistics.
[119] F. Martin,et al. ATR-FTIR Spectroscopy Tools for Medical Diagnosis and Disease Investigation , 2018 .
[120] M. Natan,et al. Surface-enhanced Raman spectroscopy and homeland security: a perfect match? , 2009, ACS nano.
[121] Jun-Hu Cheng,et al. Applications of Near-infrared Spectroscopy in Food Safety Evaluation and Control: A Review of Recent Research Advances , 2015, Critical reviews in food science and nutrition.
[122] M. Picco. Crohn Disease of the Small Bowel: Comparison of CT Enterography, MR Enterography, and Small-Bowel Follow-Through as Diagnostic Techniques , 2009 .
[123] Jean Paul Remon,et al. Near-infrared FT-Raman spectroscopy as a rapid analytical tool for the determination of diltiazem hydrochloride in tablets. , 2002, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[124] J. Mansfield,et al. Infrared spectroscopy: shedding light on synovitis in patients with rheumatoid arthritis. , 2003, Rheumatology.
[125] Nicholas Stone,et al. Assessment of robustness and transferability of classification models built for cancer diagnostics using Raman spectroscopy , 2011 .
[126] Alois Bonifacio,et al. Surface-enhanced Raman spectroscopy of blood plasma and serum using Ag and Au nanoparticles: a systematic study , 2014, Analytical and Bioanalytical Chemistry.
[127] A. Lloyd,et al. Evaluation of FTIR Spectroscopy as a diagnostic tool for lung cancer using sputum , 2010, BMC Cancer.
[128] Feng Jiang,et al. Initialization of K-modes clustering using outlier detection techniques , 2016, Inf. Sci..
[129] Debra Meyer,et al. Mid-ATR-FTIR spectroscopic profiling of HIV/AIDS sera for novel systems diagnostics in global health. , 2014, Omics : a journal of integrative biology.
[130] Camilo L. M. Morais,et al. Differential diagnosis of Alzheimer’s disease using spectrochemical analysis of blood , 2017, Proceedings of the National Academy of Sciences.
[131] R. Brereton,et al. Comparison of performance of five common classifiers represented as boundary methods: Euclidean Distance to Centroids, Linear Discriminant Analysis, Quadratic Discriminant Analysis, Learning Vector Quantization and Support Vector Machines, as dependent on data structure , 2009 .
[132] I. Konieczna,et al. Use of Fourier-transform infrared spectroscopy in the diagnosis of rheumatoid arthritis: a pilot study , 2016, Molecular Biology Reports.
[133] Yi-Zeng Liang,et al. Calibration transfer via an extreme learning machine auto-encoder. , 2016, The Analyst.
[134] G. Lloyd,et al. Multi-centre Raman spectral mapping of oesophageal cancer tissues: a study to assess system transferability. , 2016, Faraday discussions.
[135] F. Severcan,et al. Bone marrow mesenchymal stem cells in patients with beta thalassemia major: molecular analysis with attenuated total reflection-Fourier transform infrared spectroscopy study as a novel method. , 2012, Stem cells and development.
[136] Peter Gardner,et al. Fundamental developments in infrared spectroscopic imaging for biomedical applications. , 2016, Chemical Society reviews.
[137] Steven D Brown,et al. Transfer of multivariate calibrations between four near-infrared spectrometers using orthogonal signal correction. , 2004, Analytical chemistry.
[138] B. J. Klevering,et al. Near-infrared reflectance imaging of neovascular age-related macular degeneration , 2009, Graefe's Archive for Clinical and Experimental Ophthalmology.
[139] Leann Tilley,et al. Detection and Quantification of Early-Stage Malaria Parasites in Laboratory Infected Erythrocytes by Attenuated Total Reflectance Infrared Spectroscopy and Multivariate Analysis , 2014, Analytical chemistry.
[140] A. Savitzky,et al. Smoothing and Differentiation of Data by Simplified Least Squares Procedures. , 1964 .
[141] S E Taylor,et al. Infrared spectroscopy with multivariate analysis to interrogate endometrial tissue: a novel and objective diagnostic approach , 2011, British Journal of Cancer.
[142] Francis L Martin,et al. Extracting biological information with computational analysis of Fourier-transform infrared (FTIR) biospectroscopy datasets: current practices to future perspectives. , 2012, The Analyst.
[143] Camilo L. M. Morais,et al. Potential of mid-infrared spectroscopy as a non-invasive diagnostic test in urine for endometrial or ovarian cancer. , 2018, The Analyst.
[144] Jing Wang,et al. Near-infrared spectroscopic characterization of human advanced atherosclerotic plaques. , 2002, Journal of the American College of Cardiology.
[145] Francis L Martin,et al. Diagnostic segregation of human brain tumours using Fourier-transform infrared and/or Raman spectroscopy coupled with discriminant analysis. , 2013, Analytical methods : advancing methods and applications.
[146] F. Martin,et al. Vibrational biospectroscopy coupled with multivariate analysis extracts potentially diagnostic features in blood plasma/serum of ovarian cancer patients , 2014, Journal of biophotonics.
[147] Combs,et al. Calibration transfer algorithm for automated qualitative analysis by passive Fourier transform infrared spectrometry , 2000, Analytical chemistry.
[148] P. Paatero,et al. Positive matrix factorization: A non-negative factor model with optimal utilization of error estimates of data values† , 1994 .
[149] Landulfo Silveira,et al. Raman spectroscopy in forensic analysis: identification of cocaine and other illegal drugs of abuse , 2016 .
[150] R. Mehrotra,et al. Analysis of ovarian tumor pathology by Fourier Transform Infrared Spectroscopy , 2010, Journal of ovarian research.
[151] D. Naumann,et al. Classification and identification of bacteria by Fourier-transform infrared spectroscopy. , 1991, Journal of general microbiology.
[152] Guigang Zhang,et al. Deep Learning , 2016, Int. J. Semantic Comput..
[153] Bruce R. Kowalski,et al. Additive Background Correction in Multivariate Instrument Standardization , 1995 .
[154] Johan Vansteenkiste,et al. The role of PET scan in diagnosis, staging, and management of non-small cell lung cancer. , 2004, The oncologist.
[155] David E. Booth,et al. Chemometrics: Data Analysis for the Laboratory and Chemical Plant , 2004, Technometrics.
[156] Petros Karakitsos,et al. Histology Verification Demonstrates That Biospectroscopy Analysis of Cervical Cytology Identifies Underlying Disease More Accurately than Conventional Screening: Removing the Confounder of Discordance , 2014, PloS one.
[157] S Majumdar,et al. Fourier Transform Infrared Imaging of focal lesions in human osteoarthritic cartilage. , 2005, European cells & materials.
[158] Y. Monakhova,et al. Transfer of multivariate regression models between high‐resolution NMR instruments: application to authenticity control of sunflower lecithin , 2016, Magnetic resonance in chemistry : MRC.
[159] T. Fearn,et al. Near infrared spectroscopy in food analysis , 1986 .
[160] H. Vogel,et al. The Future of NMR Metabolomics in Cancer Therapy: Towards Personalizing Treatment and Developing Targeted Drugs? , 2013, Metabolites.
[161] Venkata Radhakrishna Kondepati,et al. Application of near-infrared spectroscopy for the diagnosis of colorectal cancer in resected human tissue specimens , 2007 .
[162] R Summers,et al. Towards non-invasive screening of skin lesions by near-infrared spectroscopy. , 2001, The Journal of investigative dermatology.
[163] L. A. Stone,et al. Computer Aided Design of Experiments , 1969 .
[164] D. Naumann,et al. Investigating Microbial (Micro)colony Heterogeneity by Vibrational Spectroscopy , 2001, Applied and Environmental Microbiology.
[165] Roberto Kawakami Harrop Galvão,et al. The successive projections algorithm , 2013 .
[166] B. Kowalski,et al. The parsimony principle applied to multivariate calibration , 1993 .
[167] F. Martin,et al. Levels of Organochlorine Pesticides Are Associated with Amyloid Aggregation in Apex Avian Brains. , 2017, Environmental science & technology.
[168] Rohit Bhargava,et al. Attenuated total reflectance Fourier-transform infrared spectroscopic imaging for breast histopathology. , 2012, Vibrational Spectroscopy.
[169] Adekunle Oloyede,et al. Monitoring osteoarthritis progression using near infrared (NIR) spectroscopy , 2017, Scientific Reports.
[170] Maurizio Filippone,et al. A comparative evaluation of outlier detection algorithms: Experiments and analyses , 2018, Pattern Recognit..
[171] Thomas Rath,et al. Non-destructive determination of carbohydrate reserves in leaves of ornamental cuttings by near-infrared spectroscopy (NIRS) as a key indicator for quality assessments , 2017 .
[172] Matthew A Wall,et al. Cancer imaging using surface-enhanced resonance Raman scattering nanoparticles , 2017, Nature Protocols.
[173] Hao Li,et al. Detection of herbicides in drinking water by surface-enhanced Raman spectroscopy coupled with gold nanostructures , 2013, Journal of Food Measurement and Characterization.
[174] Frank R. Burden,et al. An Investigation into FTIR Spectroscopy as a Biodiagnostic Tool for Cervical Cancer , 1998 .
[175] Matthew Burnell,et al. Sensitivity and specificity of multimodal and ultrasound screening for ovarian cancer, and stage distribution of detected cancers: results of the prevalence screen of the UK Collaborative Trial of Ovarian Cancer Screening (UKCTOCS) , 2009, Journal of Family Planning and Reproductive Health Care.
[176] A. Fitzpatrick,et al. Impact of Freeze-thaw Cycles and Storage Time on Plasma Samples Used in Mass Spectrometry Based Biomarker Discovery Projects , 2005, Cancer informatics.
[177] C. Spiegelman,et al. Calibration Transfer between PDA-Based NIR Spectrometers in the NIR Assessment of Melon Soluble Solids Content , 2001 .
[178] O. Déguine,et al. Reliability of High-Resolution CT Scan in Diagnosis of Otosclerosis , 2009, Otology & neurotology : official publication of the American Otological Society, American Neurotology Society [and] European Academy of Otology and Neurotology.
[179] Vishal K. Varma,et al. High-definition Fourier Transform Infrared (FT-IR) Spectroscopic Imaging of Human Tissue Sections towards Improving Pathology , 2015, Journal of visualized experiments : JoVE.
[180] Peter E. Hart,et al. Nearest neighbor pattern classification , 1967, IEEE Trans. Inf. Theory.
[181] Holly J. Butler,et al. Using Raman spectroscopy to characterize biological materials , 2016, Nature Protocols.
[182] B. Dasgupta,et al. Role of diagnostic ultrasound in the assessment of musculoskeletal diseases , 2012, Therapeutic advances in musculoskeletal disease.
[183] Pilar Barreiro,et al. CALIBRATION TRANSFER BETWEEN PORTABLE AND LABORATORY NIR SPECTROPHOTOMETERS , 2008 .
[184] D. Böckler,et al. Serum-infrared spectroscopy is suitable for diagnosis of atherosclerosis and its clinical manifestations , 2017 .
[185] Royston Goodacre,et al. Application of high-throughput Fourier-transform infrared spectroscopy in toxicology studies: contribution to a study on the development of an animal model for idiosyncratic toxicity. , 2004, Toxicology letters.
[186] B. Wood,et al. Simultaneous ATR-FTIR Based Determination of Malaria Parasitemia, Glucose and Urea in Whole Blood Dried onto a Glass Slide. , 2017, Analytical chemistry.
[187] A. Shahzad,et al. Journal of Translational Medicine BioMed Central Review Surgical inflammation: a pathophysiological rainbow , 2009 .
[188] M. Parmar,et al. Lung cancer diagnosis and staging with endobronchial ultrasound-guided transbronchial needle aspiration compared with conventional approaches: an open-label, pragmatic, randomised controlled trial , 2015, The Lancet Respiratory Medicine.
[189] M. Baker,et al. Biofluid infrared spectro-diagnostics: pre-analytical considerations for clinical applications. , 2016, Faraday discussions.
[190] Rasmus Bro,et al. Pre‐whitening of data by covariance‐weighted pre‐processing , 2003 .
[191] Erik Goormaghtigh,et al. The FTIR spectrum of prostate cancer cells allows the classification of anticancer drugs according to their mode of action. , 2011, The Analyst.
[192] Alois Bonifacio,et al. Label-free surface-enhanced Raman spectroscopy of biofluids: fundamental aspects and diagnostic applications , 2015, Analytical and Bioanalytical Chemistry.
[193] Richard G. Brereton,et al. Chemometrics: Data Analysis for the Laboratory and Chemical Plant , 2003 .
[194] B. Lendl,et al. A rapid method for the differentiation of yeast cells grown under carbon and nitrogen-limited conditions by means of partial least squares discriminant analysis employing infrared micro-spectroscopic data of entire yeast cells , 2012, Talanta.
[195] Hugh J. Byrne,et al. Improved protocols for pre-processing Raman spectra of formalin fixed paraffin preserved tissue sections , 2017 .
[196] H. Edwards,et al. Raman spectroscopic investigation of cocaine hydrochloride on human nail in a forensic context , 2008, Analytical and bioanalytical chemistry.
[197] T. Monteyne,et al. Glycation in human fingernail clippings using ATR-FTIR spectrometry, a new marker for the diagnosis and monitoring of diabetes mellitus. , 2017, Clinical biochemistry.
[198] Nick C Fox,et al. The clinical use of structural MRI in Alzheimer disease , 2010, Nature Reviews Neurology.
[199] D. Raftery,et al. Metabolomics-based methods for early disease diagnostics , 2008, Expert review of molecular diagnostics.
[200] R. Yu,et al. A novel calibration strategy based on background correction for quantitative circular dichroism spectroscopy. , 2017, Talanta.
[201] Francis L Martin,et al. Distinguishing cell types or populations based on the computational analysis of their infrared spectra , 2010, Nature Protocols.
[202] Luciano Bachmann,et al. Fourier Transform Infrared Spectroscopy of Skin Cancer Cells and Tissues , 2009 .
[203] H. Mantsch,et al. Infrared spectra of basal cell carcinomas are distinct from non-tumor-bearing skin components. , 1999, The Journal of investigative dermatology.
[204] Age K. Smilde,et al. Principal Component Analysis , 2003, Encyclopedia of Machine Learning.
[205] Hua Zhong,et al. Terahertz Spectroscopy and Imaging for Defense and Security Applications , 2007, Proceedings of the IEEE.
[206] P. Geladi,et al. Linearization and Scatter-Correction for Near-Infrared Reflectance Spectra of Meat , 1985 .
[207] Camilo L. M. Morais,et al. Comparing unfolded and two-dimensional discriminant analysis and support vector machines for classification of EEM data , 2017 .
[208] Kan-Zhi Liu,et al. Diabetes-related molecular signatures in infrared spectra of human saliva , 2010, Diabetology & metabolic syndrome.
[209] Haibo Ji,et al. Standardization of near infrared spectra based on multi-task learning , 2016 .
[210] Corinna Cortes,et al. Support-Vector Networks , 1995, Machine Learning.
[211] A. Ikehata,et al. Calibration transfer across near infrared spectrometers for measuring hematocrit in the blood of grazing cattle , 2017 .
[212] J Scheidler,et al. Endovaginal ultrasound to exclude endometrial cancer and other endometrial abnormalities. , 1998, JAMA.
[213] J. T. Magee,et al. On mass spectrometer instrument standardization and interlaboratory calibration transfer using neural networks , 1997 .
[214] Paulo R. Filgueiras,et al. Evaluation of calibration transfer methods using the ATR-FTIR technique to predict density of crude oil , 2017 .
[215] J. Kalita,et al. Comparison of CT scan and MRI findings in the diagnosis of Japanese encephalitis , 2000, Journal of the Neurological Sciences.