HYPERSPECTRAL IMAGING-BASED SPATIALLY-RESOLVED TECHNIQUE FOR ACCURATE MEASUREMENT OF THE OPTICAL PROPERTIES OF HORTICULTRAL PRODUCTS
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[1] M S Patterson,et al. Monte carlo diffusion hybrid model for photon migration in a two-layer turbid medium in the frequency domain. , 2000, Applied optics.
[2] Huafeng Ding,et al. A primary method for determination of optical parameters of turbid samples and application to intralipid between 550 and 1630 nm. , 2006, Optics express.
[3] Dinh Tuan Vo. Biomedical photonics handbook , 2003 .
[4] Adam Liebert,et al. Correction of anisotropy coefficient in original Henyey Greenstein phase function for Monte Carlo simulations of light transport in tissue , 2008 .
[5] M. Patterson,et al. Improved solutions of the steady-state and the time-resolved diffusion equations for reflectance from a semi-infinite turbid medium. , 1997, Journal of the Optical Society of America. A, Optics, image science, and vision.
[6] E. Tollner,et al. Using X-ray-computed Tomography to Nondestructively Determine Maturity of Green Tomatoes , 1991 .
[7] R. Lu,et al. Prediction of Apple Internal Quality Using Spectral Absorption and Scattering Properties , 2009 .
[8] Renfu Lu,et al. Anisotropic Mechanical Properties of Apples , 1996 .
[9] Yukio Yamada,et al. Determination of the Asymmetry Parameter and Scattering Coefficient of Turbid Media from Spatially Resolved Reflectance Measurements , 1998, Advances in Optical Imaging and Photon Migration.
[10] Renfu Lu,et al. Integrated spectral and image analysis of hyperspectral scattering data for prediction of apple fruit firmness and soluble solids content , 2011 .
[11] Martin Aigner,et al. Distance regression by Gauss–Newton-type methods and iteratively re-weighted least-squares , 2009, Computing.
[12] Michael S Patterson,et al. Determination of the optical properties of tissue-simulating phantoms from interstitial frequency domain measurements of relative fluence and phase difference. , 2006, Optics express.
[13] Renfu Lu,et al. Optical Properties of Bruised Apple Tissue , 2009 .
[14] Jianwei Qin,et al. Measurement of the Absorption and Scattering Properties of Turbid Liquid Foods Using Hyperspectral Imaging , 2007, Applied spectroscopy.
[15] Renfu Lu,et al. Detection of bruises on apples using near-infrared hyperspectral imaging , 2003 .
[16] Tomas Svensson,et al. Parallel computing with graphics processing units for high-speed Monte Carlo simulation of photon migration. , 2008, Journal of biomedical optics.
[17] R A Groenhuis,et al. Scattering and absorption of turbid materials determined from reflection measurements. 2: measuring method and calibration. , 1983, Applied optics.
[18] J. L'Huillier,et al. Finite element approach to photon propagation modeling in semi-infinite homogeneous and multilayered tissue structures , 2006 .
[19] J M Schmitt,et al. Multilayer model of photon diffusion in skin. , 1990, Journal of the Optical Society of America. A, Optics and image science.
[20] Anthony J. Durkin,et al. Detection of bruises on golden delicious apples using spatial- frequency-domain imaging , 2007, SPIE BiOS.
[21] R. Steiner,et al. Spatially resolved absolute diffuse reflectance measurements for noninvasive determination of the optical scattering and absorption coefficients of biological tissue. , 1996, Applied optics.
[22] Optical properties of high-density dispersions of particles: application to intralipid solutions. , 2003, Applied optics.
[23] B. Hooper. Optical-thermal response of laser-irradiated tissue , 1996 .
[24] Markus Riederer,et al. Noninvasive evaluation of the degree of ripeness in grape berries (vitis vinifera L. Cv. Bacchus and silvaner) by chlorophyll fluorescence. , 2006, Journal of agricultural and food chemistry.
[25] Carlos H. Crisosto,et al. Stone fruit maturity indices: a descriptive review , 1994 .
[26] Kurt C. Lawrence,et al. MULTISPECTRAL IMAGING SYSTEM FOR FECAL AND INGESTA DETECTION ON POULTRY CARCASSES , 2004 .
[27] Bosoon Park,et al. Color image classification systems for poultry viscera inspection , 1999, Other Conferences.
[28] J. L. Ladaga,et al. THE VARIOGRAM METHOD FOR CHARACTERIZATION OF SCANNING ELECTRON MICROSCOPY IMAGES , 1998 .
[29] Lihong V. Wang,et al. Multiple-source optical diffusion approximation for a multilayer scattering medium. , 2007, Applied optics.
[30] Adam Wax,et al. Application of Mie theory to determine the structure of spheroidal scatterers in biological materials. , 2007, Optics letters.
[31] Jun Wang,et al. ACOUSTIC IMPULSE RESPONSE FOR MEASURING THE FIRMNESS OF MANDARIN DURING STORAGE , 2006 .
[32] A. Mizrach. Ultrasonic technology for quality evaluation of fresh fruit and vegetables in pre- and postharvest processes , 2008 .
[33] Grzegorz W. KoŁodko,et al. © Gordon and Breach, Science Publishers, Inc. , 1990 .
[34] Alessandro Torricelli,et al. Characterization of normal breast tissue heterogeneity using time-resolved near-infrared spectroscopy , 2005, Physics in medicine and biology.
[35] Sergio Fantini,et al. Characterization of spatial and temporal variations in the optical properties of tissuelike media with diffuse reflectance imaging. , 2003, Applied optics.
[36] B. Nicolai,et al. Analysis of apples varieties – comparison of electronic tongue with different analytical techniques , 2006 .
[37] P. Williams,et al. Near-Infrared Technology in the Agricultural and Food Industries , 1987 .
[38] Vasan Venugopalan,et al. Perturbation and differential Monte Carlo methods for measurement of optical properties in a layered epithelial tissue model. , 2007, Journal of biomedical optics.
[39] Reindert Graaff,et al. Similarity relations for anisotropic scattering in absorbing media , 1993 .
[40] J Langerholc. Beam broadening in dense scattering media. , 1982, Applied optics.
[41] B. Nicolai,et al. NON-DESTRUCTIVE MEASUREMENT OF ACIDITY, SOLUBLE SOLIDS, AND FIRMNESS OF JONAGOLD APPLES USING NIR-SPECTROSCOPY , 1998 .
[42] S L Jacques,et al. CONV--convolution for responses to a finite diameter photon beam incident on multi-layered tissues. , 1997, Computer methods and programs in biomedicine.
[43] S R Arridge,et al. The finite-element method for the propagation of light in scattering media: frequency domain case. , 1997, Medical physics.
[44] Margarita Ruiz-Altisent,et al. Monitoring of firmness evolution of peaches during storage by combining acoustic and impact methods , 2006 .
[45] R. Maniewski,et al. Time-resolved optical imager for assessment of cerebral oxygenation. , 2007, Journal of biomedical optics.
[46] Surajit Ghosh Dastidar. Gompertz: A Scilab Program for Estimating Gompertz Curve Using Gauss-Newton Method of Least Squares , 2006 .
[47] W. R. Windham,et al. Hyperspectral Imaging for Detecting Fecal and Ingesta Contaminants on Poultry Carcasses , 2002 .
[48] Won Suk Lee,et al. Machine Vision System for Determining Citrus Count and Size on a Canopy Shake and Catch Harvester , 2009 .
[49] C. Tran. Visualising Chemical Composition and Reaction Kinetics by the near Infrared Multispectral Imaging Technique , 2000 .
[50] S R Arridge,et al. The theoretical basis for the determination of optical pathlengths in tissue: temporal and frequency analysis. , 1992, Physics in medicine and biology.
[51] A. Christopoulos,et al. Fitting Models to Biological Data Using Linear and Nonlinear Regression: A Practical Guide to Curve Fitting , 2004 .
[52] Renfu Lu,et al. Hyperspectral laser-induced fluorescence imaging for assessing apple fruit quality , 2007 .
[53] B. Wilson,et al. The physics, biophysics and technology of photodynamic therapy , 2008, Physics in medicine and biology.
[54] H. A. Ferwerda,et al. Scattering and absorption of turbid materials determined from reflection measurements. 1: theory. , 1983, Applied optics.
[55] M. Ngadi,et al. Hyperspectral imaging for nondestructive determination of some quality attributes for strawberry , 2007 .
[56] Akira Ishimaru,et al. Wave propagation and scattering in random media , 1997 .
[57] M Ruiz-Altisent,et al. Mealiness assessment in apples and peaches using MRI techniques. , 2000, Magnetic resonance imaging.
[58] M. Patterson,et al. Noninvasive determination of the optical properties of two-layered turbid media , 1998 .
[59] Martin Wolf,et al. Multifrequency frequency-domain spectrometer for tissue analysis. , 2009, The Review of scientific instruments.
[60] Antonio Pifferi,et al. Accelerated Monte Carlo models to simulate fluorescence spectra from layered tissues. , 2003, Journal of the Optical Society of America. A, Optics, image science, and vision.
[61] Alessandro Torricelli,et al. Time-Resolved Reflectance Spectroscopy Applied to the Nondestructive Monitoring of the Internal Optical Properties in Apples , 2001 .
[62] Y. Hung,et al. Microscopic measurement of apple bruise , 1990 .
[63] J. DeBaerdemaeker,et al. Effect of Apple Shape on Acoustic Measurements of Firmness , 1993 .
[64] R Marchesini,et al. A phantom with tissue‐like optical properties in the visible and near infrared for use in photomedicine , 2001, Lasers in surgery and medicine.
[65] R. Lu,et al. Development of a multispectral imaging prototype for real-time detection of apple fruit firmness , 2007 .
[66] Jianwei Qin,et al. Hyperspectral diffuse reflectance imaging for rapid, noncontact measurement of the optical properties of turbid materials. , 2006, Applied optics.
[67] Per Edström. Comparison of the DORT2002 radiative transfer solution method and the Kubelka-Munk model , 2004 .
[68] Takayuki Kojima,et al. Evaluation of pectin constituents of Japanese pear by near infrared spectroscopy , 2007 .
[69] S Andersson-Engels,et al. Multispectral tissue characterization with time-resolved detection of diffusely scattered white light. , 1993, Optics letters.
[70] M. S. Howarth,et al. Postharvest firmness changes as measured by acoustic and low-mass impact devices: a comparison of techniques , 2006 .
[71] José Blasco,et al. Recognition and classification of external skin damage in citrus fruits using multispectral data and morphological features , 2009 .
[72] R. Haskell,et al. Determination of the optical properties of the human uterus using frequency-domain photon migration and steady-state techniques. , 1994, Physics in medicine and biology.
[73] Wouter Saeys,et al. Optical properties of apple skin and flesh in the wavelength range from 350 to 2200 nm. , 2008, Applied optics.
[74] Joseph R. Lakowicz,et al. Frequency‐domain fluorescence spectroscopy; principles, biochemical applications and future developments , 1989 .
[75] Anthony J. Durkin,et al. In vivo determination of skin near-infrared optical properties using diffuse optical spectroscopy. , 2008, Journal of biomedical optics.
[76] A G Yodh,et al. Does the photon-diffusion coefficient depend on absorption? , 1997, Journal of the Optical Society of America. A, Optics, image science, and vision.
[77] Valery V. Tuchin,et al. Tissue optics, light distribution, and spectroscopy , 1994 .
[78] Kenneth Levenberg. A METHOD FOR THE SOLUTION OF CERTAIN NON – LINEAR PROBLEMS IN LEAST SQUARES , 1944 .
[79] Stefan Andersson-Engels,et al. Comparison of spatially and temporally resolved diffuse-reflectance measurement systems for determination of biomedical optical properties. , 2003, Applied optics.
[80] S Gunasekaran,et al. Delayed light emission as a means of quality evaluation of fruits and vegetables. , 1990, Critical reviews in food science and nutrition.
[81] Alessandro Torricelli,et al. Fully automated time domain spectrometer for the absorption and scattering characterization of diffusive media. , 2007, The Review of scientific instruments.
[82] R. Infante,et al. Monitoring the sensorial quality and aroma through an electronic nose in peaches during cold storage , 2008 .
[83] T. Haishi,et al. Examination of the tissue water in cucumber fruit by small dedicated magnetic resonance imaging with a 1-T permanent magnet. , 2009 .
[84] Heidrun Wabnitz,et al. Quantification of optical properties of a breast tumor using random walk theory. , 2002, Journal of biomedical optics.
[85] W. R. Windham,et al. A Hyperspectral Imaging System for Identification of Faecal and Ingesta Contamination on Poultry Carcasses , 2003 .
[86] Da-Wen Sun,et al. Improving quality inspection of food products by computer vision: a review , 2004 .
[87] A. Welch,et al. A review of the optical properties of biological tissues , 1990 .
[88] G. N. Wilkinson. Statistical estimations in enzyme kinetics. , 1961, The Biochemical journal.
[89] William J. Orts,et al. Fresh fruit: microstructure, texture, and quality , 2009, Scanning Microscopies.
[90] Bart Nicolai,et al. Non-destructive measurement of bitter pit in apple fruit using NIR hyperspectral imaging , 2006 .
[91] Hyun Mo Jung,et al. Evaluation of Fruit Firmness by Ultrasonic Measurement , 2004 .
[92] J. Mourant,et al. Predictions and measurements of scattering and absorption over broad wavelength ranges in tissue phantoms. , 1997, Applied optics.
[93] Thomas F. Schatzki,et al. Defect detection in apples by means of x-ray imaging , 1996, Other Conferences.
[94] B. Nicolai,et al. Time-resolved and continuous wave NIR reflectance spectroscopy to predict soluble solids content and firmness of pear , 2008 .
[95] Fabrizio Martelli,et al. Measurements of optical properties of high-density media. , 2003, Applied optics.
[96] Rasmus Bro,et al. Exploring Fluorescence Spectra of Apple Juice and Their Connection to Quality Parameters by Chemometrics , 1996 .
[97] J. Kinsella,et al. Quality Control for the Food Industry , 1973 .
[98] L. O. Svaasand,et al. Boundary conditions for the diffusion equation in radiative transfer. , 1994, Journal of the Optical Society of America. A, Optics, image science, and vision.
[99] J. A. Abbott,et al. Delayed light emission for early detection of chilling in cucumber and bell pepper fruit , 1985 .
[100] A. Rizzolo,et al. Electronic nose to detect strawberry aroma changes during osmotic dehydration , 2006 .
[101] B. Tromberg,et al. Non-invasive measurements of breast tissue optical properties using frequency-domain photon migration. , 1997, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[102] Christian Depeursinge,et al. Determination of reduced scattering and absorption coefficients by a single charge-coupled-device array measurement, part II: measurements on biological tissues , 1995 .
[103] B. Wilson,et al. Frequency-domain reflectance for the determination of the scattering and absorption properties of tissue. , 1991, Applied optics.
[104] M. Nichols,et al. Design and testing of a white-light, steady-state diffuse reflectance spectrometer for determination of optical properties of highly scattering systems. , 1997, Applied optics.
[105] James V. Beck,et al. Parameter Estimation in Engineering and Science , 1977 .
[106] J. Baerdemaeker,et al. Influence of Global Shape and Internal Structure of Tomatoes on the Resonant Frequency , 1997 .
[107] N. Mohsenin. Electromagnetic radiation properties of foods and agricultural products , 1984 .
[108] James V. Beck,et al. Optimal experimental design for estimating thermal properties of composite materials , 1993 .
[109] Susan Tiefenbrun,et al. SAN JOSE (California) , 2012 .
[110] L. O. Svaasand,et al. Optical property measurements of turbid media in a small-volume cuvette with frequency-domain photon migration. , 2001, Applied optics.
[111] V. Altuzar,et al. Atmospheric pollution profiles in Mexico City in two different seasons , 2003 .
[112] N. Ramanujam,et al. Monte Carlo-based inverse model for calculating tissue optical properties. Part I: Theory and validation on synthetic phantoms. , 2006, Applied optics.
[113] Ron B. H. Wills,et al. Postharvest: An Introduction to the Physiology and Handling of Fruit, Vegetables and Ornamentals , 1998 .
[114] A. Kienle,et al. Optical properties of fat emulsions. , 2008, Optics express.
[115] Yankun Peng,et al. Hyperspectral Scattering for Assessing Peach Fruit Firmness , 2004 .
[116] Thomas F. Coleman,et al. On the convergence of interior-reflective Newton methods for nonlinear minimization subject to bounds , 1994, Math. Program..
[117] R. Lu,et al. Technologies for Nondestructive Quality Evaluation of Fruits and Vegetables , 2010 .
[118] R. G. Mcguire,et al. Reporting of Objective Color Measurements , 1992 .
[119] A Ishimaru,et al. Diffuse reflectance from a finite blood medium: applications to the modeling of fiber optic catheters. , 1976, Applied optics.
[120] A. Kienle,et al. Investigation of two-layered turbid media with time-resolved reflectance. , 1998, Applied optics.
[121] H. J. van Staveren,et al. Light scattering in Intralipid-10% in the wavelength range of 400-1100 nm. , 1991, Applied optics.
[122] J. Abbott. Quality measurement of fruits and vegetables , 1999 .
[123] Giovanni Attolico,et al. Non-destructive grading of peaches by near-infrared spectrometry , 2004 .
[124] L. Shampine. Vectorized adaptive quadrature in MATLAB , 2008 .
[125] Christian Depeursinge,et al. Determination of reduced scattering and absorption coefficients by a single charge-coupled-device array measurement, part I: comparison between experiments and simulations , 1995 .
[126] Alessandro Torricelli,et al. Assessing harvest maturity in nectarines , 2007 .
[127] D. O'connor,et al. Time-Correlated Single Photon Counting , 1984 .
[128] Albert Tarantola,et al. Inverse problem theory - and methods for model parameter estimation , 2004 .
[129] A. Kienle,et al. Multiscale Description of Light Propagation in Biological Tissue , 2007 .
[130] Alwin Kienle,et al. Determination of the optical properties of turbid media by measurements of the spatially resolved reflectance considering the point-spread function of the camera system. , 2008, Journal of biomedical optics.
[131] Alessandro Torricelli,et al. Performance assessment of photon migration instruments: the MEDPHOT protocol , 2005 .
[132] H Saint-Jalmes,et al. Integrating the digitized backscattered image to measure absorption and reduced-scattering coefficients in vivo. , 1999, Applied optics.
[133] Paola Taroni,et al. 8 – Measuring fresh fruit and vegetable quality: advanced optical methods , 2002 .
[134] Pilar Barreiro,et al. Determination of Mealiness in Apples using Ultrasonic Measurements , 2005 .
[135] B. Wilson,et al. A diffusion theory model of spatially resolved, steady-state diffuse reflectance for the noninvasive determination of tissue optical properties in vivo. , 1992, Medical physics.
[136] P. Monnier,et al. Clinical determination of tissue optical properties by endoscopic spatially resolved reflectometry. , 1996, Applied optics.
[137] Margarita Ruiz-Altisent,et al. Detection of Internal Quality in Seedless Watermelon by Acoustic Impulse Response , 2004 .
[138] David C. Slaughter,et al. X-ray assessment of translucency in pineapple , 2006 .
[139] Scott E. Umbaugh,et al. Computer Imaging: Digital Image Analysis and Processing , 2005 .
[140] J. S. Dam,et al. Quantifying the absorption and reduced scattering coefficients of tissuelike turbid media over a broad spectral range with noncontact Fourier-transform hyperspectral imaging. , 2000, Applied optics.
[141] W. Cui,et al. The relationship of surface reflectance measurements to optical properties of layered biological media , 1992, IEEE Transactions on Biomedical Engineering.
[142] R. Cubeddu,et al. Detection of Internal Quality in Kiwi with Time-Domain Diffuse Reflectance Spectroscopy , 2004 .
[143] K. Dolan,et al. Confidence intervals for modeling anthocyanin retention in grape pomace during nonisothermal heating. , 2007, Journal of food science.
[144] FERImage: an interactive program for fractal dimension, d(per) and d(min) calculation. , 2006, Scanning.
[145] Rainer Künnemeyer,et al. Internal Quality Assessment of Mandarin Fruit by vis/NIR Spectroscopy , 2003 .
[146] M. M. Ferreira,et al. Nondestructive determination of solids and carotenoids in tomato products by near-infrared spectroscopy and multivariate calibration. , 2005, Analytical chemistry.
[147] R. Lu,et al. An lctf-based multispectral imaging system for estimation of apple fruit firmness: Part I. Acquisition and characterization of scattering images , 2006 .
[148] M. J. Delwiche,et al. Machine vision methods for defect sorting stonefruit , 1994 .
[149] A. Kim,et al. Light propagation in two-layer tissues with an irregular interface. , 2008, Journal of the Optical Society of America. A, Optics, image science, and vision.
[150] José Miguel Aguilera,et al. Description of food surfaces and microstructural changes using fractal image texture analysis , 2002 .
[151] R. Doornbos,et al. The determination of in vivo human tissue optical properties and absolute chromophore concentrations using spatially resolved steady-state diffuse reflectance spectroscopy. , 1999, Physics in medicine and biology.
[152] Renfu Lu,et al. Quantification of the optical properties of two-layer turbid materials using a hyperspectral imaging-based spatially-resolved technique. , 2009, Applied optics.
[153] Fabrizio Martelli,et al. Calibration of scattering and absorption properties of a liquid diffusive medium at NIR wavelengths. CW method. , 2007, Optics express.
[154] H H Wolff,et al. Changes in function and morphology of normal human skin: evaluation using optical coherence tomography , 2004, The British journal of dermatology.
[155] A. Mizrach,et al. ULTRASONIC CLASSIFICATION OF MEALINESS IN APPLES , 2003 .
[156] M S Patterson,et al. Determination of the optical properties of two-layer turbid media by use of a frequency-domain hybrid monte carlo diffusion model. , 2001, Applied optics.
[157] Paul A. Bernhardt,et al. Direct reconstruction methods for hyperspectral imaging with rotational spectrotomography , 1995 .
[158] A. Welch,et al. Determining the optical properties of turbid mediaby using the adding-doubling method. , 1993, Applied optics.
[159] L. O. Svaasand,et al. A mathematical model for light dosimetry in photodynamic destruction of human endometrium. , 1996, Physics in medicine and biology.
[160] Y.-R. Chen,et al. Intensified Multispectral Imaging System for Poultry Carcass Inspection , 1994 .
[161] V. Tuchin. Tissue Optics: Light Scattering Methods and Instruments for Medical Diagnosis , 2000 .
[162] L Wang,et al. MCML--Monte Carlo modeling of light transport in multi-layered tissues. , 1995, Computer methods and programs in biomedicine.
[163] R. Lu,et al. Measurement of the optical properties of fruits and vegetables using spatially resolved hyperspectral diffuse reflectance imaging technique , 2008 .
[164] Yong He,et al. Theory and application of near infrared reflectance spectroscopy in determination of food quality , 2007 .
[165] Risto Myllylä,et al. SPECIAL ISSUE DEVOTED TO MULTIPLE RADIATION SCATTERING IN RANDOM MEDIA: Simulations of a spatially resolved reflectometry signal from a highly scattering three-layer medium applied to the problem of glucose sensing in human skin , 2006 .
[166] L. Svaasand,et al. Non-invasive in vivo characterization of breast tumors using photon migration spectroscopy. , 2000, Neoplasia.
[167] R. Cubeddu,et al. Nondestructive quantification of chemical and physical properties of fruits by time-resolved reflectance spectroscopy in the wavelength range 650-1000 nm. , 2001, Applied optics.
[168] B. Wilson,et al. Time resolved reflectance and transmittance for the non-invasive measurement of tissue optical properties. , 1989, Applied optics.
[169] Badi H. Baltagi,et al. Testing for random individual and time effects using a Gauss-Newton regression , 1996 .
[170] D. Marquardt. An Algorithm for Least-Squares Estimation of Nonlinear Parameters , 1963 .
[171] Yud-Ren Chen,et al. Hyperspectral imaging for safety inspection of food and agricultural products , 1999, Other Conferences.
[172] Bart Nicolai,et al. Firmness changes of pear fruit before and after harvest with the acoustic impulse response technique , 2000 .
[173] B. Su,et al. Encapsulation of direct blue dye into mesoporous silica-based materials , 2007 .
[174] Boaz Zion,et al. Fruit Internal Quality Evaluation using On-line Nuclear Magnetic Resonance Sensors , 1999 .
[175] Nirmala Ramanujam,et al. Monte Carlo-based inverse model for calculating tissue optical properties. Part II: Application to breast cancer diagnosis. , 2006, Applied optics.
[176] Randolph M. Beaudry,et al. Determination of firmness and sugar content of apples using near-infrared diffuse reflectance , 2000 .
[177] José Blasco,et al. Machine Vision System for Automatic Quality Grading of Fruit , 2003 .