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2012 | 12 | 2 |

Tytuł artykułu

Change in strength of tomato fruit skin during ripening process

Treść / Zawartość

Warianty tytułu

PL
Zmiana wytrzymalosci skorki owocow pomidora w trakcie ich dojrzewania

Języki publikacji

EN

Abstrakty

EN
PL

Wydawca

-

Rocznik

Tom

12

Numer

2

Opis fizyczny

p.13-18,fig.,ref.

Twórcy

autor
  • Department of Physics, University of Life Sciences, Akademicka 13, 20-950 Lublin, Poland
  • Department of Physics, University of Life Sciences, Akademicka 13, 20-950 Lublin, Poland
autor
  • Department of Thermal Technology, University of Life Sciences, Doswiadczalna 44, 20-280 Lublin, Poland

Bibliografia

  • 1. Almeida D. P., Huber D. J. 2001: Transient increase in locular pressure and occlusion of endocarpic apertures in ripening tomato fruit. Journal of Plant Physiology 158, 199-203.
  • 2. Andrews J., Adams S. R., Burton K. S., Edmond-son R. N. 2002: Partial purification of tomato fruit peroxidase and its effect on the mechanical properties of tomato fruit skin. Journal of Experimental Botany 53 (379), 2393-2399.
  • 3. Bargel H., Neinhuis C. 2005: Tomato (Lycopersicon esculentum Mill.) fruit growth and ripening as related to the biomechanical properties of fruit skin and isolated cuticle. Journal of Experimental Botany 56 (413), 1049-1060.
  • 4. Bargel H., Neinhuis C. 2004: Altered tomato (Lycopersicon esculentum Mill.) fruit cuticle biomechanics of pleiotropic non ripening mutant. Journal of Plant Growth Regulation 23, 61-75.
  • 5. Blake A. 1985: Handbook of mechanics, materials and structures. John Wiley & Sons, New York.
  • 6. Bourne M. C. 1980: Texture evaluation of horticultural 25. crops. HortScience 15 (1), 7-13.
  • 7. Chung S. M., Yap A. U., Koh W. K., Tsai K. T., Lim C. T. 2004: Measurement of Poisson’s ratio of dental composite restorative materials. Biomaterials 26. 25, 2455-2460.
  • 8. Ciupak A. 2010: The influence of storage conditions on tomato’s fruit skin mechanical properties. PhD thesis (in 27. Polish). University of Life Sciences in Lublin.
  • 9. Clevenger jr. J. T., Hamann, D. D. 1968: The behavior of apple skin under tensile loading. Transactions of the ASAE 11 (1), 34-37.
  • 10. De los Reyes R., Heredia A., Fito P., De los Reyes I. E., Andres A. 2007: Dielectric spectroscopy of osmotic solutions and osmotically dehydrated tomato products. Journal of Food Engineering 80, 1218-1225.
  • 11. Dorais M., Demers D.-A., Papadopoulos A. P., Van Ieperen W. 2004: Greenhouse tomato fruit cuticle cracking. Horticultural Reviews 30, 163-184.
  • 12. Edwards M. 1999: Vegetables and fruit. W Rosenthal A. J. (red.) Food texture. Measurement and perception. an Aspen Publication.
  • 13. Elliott D. M., Narmoneva D. A., Setton L. A. 2002: Direct Measurement of the Poisson’s Ratio of Human Patella Cartilage in Tension. J. Biomech. Eng. 124 (2), 223-228.
  • 14. Etnier S. A. 2003: Twisting and bending of biological beams: distribution of biological beams in a stiffness. The Biological Bulletin 205, 36-46.
  • 15. Finney jr. E. E., Norris K. H. 1968: Instrumentation 33. for investigating dynamic mechanical properties of fruits and vegetables. Transactions of the ASAE 11 (1), 94-97.
  • 16. Gan-Mor S., Gallili N. 2000: Rheological model of fruit collision with an elastic plate. Journal of Agricultural 34. Engineering Research 75, 139-147.
  • 17. Gao Q., Pitt R. E. 1991: Mechanics of parenchyma tissue based on cell orientation and microstructure. Transactions of the ASAE 34 (1), 232-238.
  • 18. Gładyszewska B., Baranowski P., Mazurek W., Ciupak A., Woźniak J. 2011: Radiation temperature of tomatoes and mechanical properties of their skin. In- 36. ternational Agrophysics,, 25 (2), 131-139.
  • 19. Gładyszewska B. 2007: Method for testing selected 37. mechanical properties of thin-film biomaterials (in Polish). Rozprawy naukowe Z. 325. WAR in Lublin.
  • 20. Gładyszewska B. 2006: Testing machine for assess- 38. ing the mechanical properties of biological materials. Technical Science 9, 21-31.
  • 21. Gladyszewska B., Stropek Z. 2010: The influence of 39. the storage time on selected mechanical properties of apple skin. TEKA Kom. Mot. Energ. Roln. - OL PAN 10, 59-65.
  • 22. Guz T. 2010: The puncture strength of apple peel according to storage conditions. TEKA Kom. Mot. Energ. Roln. - OL PAN 10, 82-89.
  • 23. Hamm E., Reis P., LeBlanc M., Roman B., Cerda E. 2008: Tearing as a test for mechanical characterization 41. of thin adhesive films. + Suplement. Nature Materials 7 (5), 386-390.
  • 24. Hankinson B., Rao V. N. 1979: Histological and physical behavior of tomato skins susceptible to cracking. Journal of the American Society for Horticultural Science 104 (5), 577-581.
  • 25. Hejnowicz Z., Sievers A. 1995: Tissue stresses in organs of herbaceous plants I. Poisson ratios of tissues and their role in determination of the stresses. Journal of Experimental Botany 46 (289), 1035-1043.
  • 26. Holt C. B. 1970: Measurement of tomato firmness with a universal testing machine. Journal of Texture Studies 1, 491-501.
  • 27. Homza O., Bengough A. G., Bransby M. F., Davies M. C. R., Hallett P. D. 2006: Biomechanics of plant roots: estimating localised deformation with particle image velocimetry. Biosystems Engineering 94 (1), 119-132.
  • 28. Kabas O., Ozmerzi A. 2008: Determining the mechanical properties of cherry tomato varieties for handling. Journal of Texture Studies 39, 199-209.
  • 29. Konopacka D., Plocharski W. J. 2004: Effect of storage conditions on the relationship between apple firmnes and texture acceptability. Postharvest Biology and Technology 32, 205-211.
  • 30. Kuna-Broniowska I., Gladyszewska B., Ciupak A. 2012: Effect of storage time and temperature on Poissona ratio of tomato fruit skin. International Agrophysics 26 (1), 39-44.
  • 31. Landau L. D., Lifshitz E. M. 1993: Theory of Elasticity. Pergamon Press, Oxford.
  • 32. Machado R. M., Rodriguez del Rincon A., Portas C. A. 1999: Mechanical harvest of processing tomatoes: influence on percentage of damaged fruit and importance of the relation green fruit/rotten fruits. Acta Horticulturae 487, 237-241.
  • 33. Matas A. J., Lopez-Casado G., Cuartero J., Heredia A. 2005: Relative humidity and temperature modifity the mechanical properties of isolated tomato fruit cuticles. American Journal of Botany 92 (3), 462-468.
  • 34. Matas A. J., Cobb E. D., Bartsch J. A., Paolillo jr. D.J., Niklas K. J. 2004: Biomechanics and anatomy of Lycopersicon esculentum fruit peels and enzyme-treated samples. American Journal of Botany 91 (3), 352-360.
  • 35. Miles J. A., Fridley R. B., Lorenzen C. 1993: Strength characteristics of tomatoes subjected to quasi-static loading. Transactions of the ASAE 12, 627-630, 1969.
  • 36. Polish Standards. PN-R-75416. Tomatoes - Guidelines for storage and refrigerated transport.
  • 37. Saltveit M. E. 2005a: Fruit ripening and fruit quality. W Heuvelink E. (red.) Tomatoes. Wallingford: CAB International.
  • 38. Saltveit M. E. 2005b: Postharvest biology and handling. W Heuvelink E. (red.) Tomatoes. Wallingford: CAB International.
  • 39. Sargent S. A., Brecht J. K., Zoellner J. 1992: Sensitivity of tomatoes at mature-green and breaker ripeness stages to internal bruising. Journal of the American Society for Horticultural Science 117 (1), 119-123.
  • 40. Shi J. X., Le Maguer M., Wang S. L., Liptay A. 1997: Application of osmotic treatment in tomato processing-effect of skin treatments on mass transfer dehydration of tomatoes. Food Research International 30 (9), 669-674.
  • 41. Singh K. K., Reddy B. S. 2006: Post-harvest physico-mechanical properties of orange peel and fruit. Journal of Food Engineering 73, 112-120.
  • 42. Sitkei G.: Mechanics of Agricultural Materials. Budapest: Akademiai Kiado, 1986.
  • 43.Steffe J. F.: Rheological methods in food process engineering . Freeman Press, 1996.
  • 44.Slaska-Grzywna B.: Changes in mechanical properties and microstructure of root of celery after thermal treatment. TEKA Kom. Mot. Energ. Roln. - OL PAN 10, 355-362, 2010.
  • 45.Telis V. R. N., Murari R. C. B. D. L., Yamashita F.: Diffusion coefficients during osmotic dehydration of tomatoes in ternary solutions. Journal of Food Engi-neering 61, 253-259, 2004.
  • 46.Thiagu R., Chand N., Ramana K. V.: Evolution of mechanical characteristics of tomatoes of two varieties during ripening. Journal of the Science of Food and Agriculture 62, 175-183, 1993.
  • 47.Van Linden V., De Ketelaere B., Desmet, M., De Baer-demaeker J.: Determination of bruise susceptibility of tomato fruit by means of an instrumented pendulum. Postharvest Biology and Technology 40, 7-14, 2006.
  • 48.Vanstreels E., Alamar M. C., Verlinden B. E., Enninghorst A., Loodts J. K. A., Tijskens E., Ramon H., Nicolai' B. M.: Micromechanical behaviour of onion epidermal tissue. Postharvest Biology and Technology 37, 163-173, 2005.
  • 49.Van zeebroeck M., Lombaert G., Dintwa E., Ramon H., Degrande G., Tijskens E.: The simulation of the impact damage to fruit during the passage of a truck over a speed bump by means of the discrete element method. Biosystems Engineering 101, 58-68, 2008.
  • 50.Vijay P., Srivastava G. C.: Role of surface morphology in determining the ripening behaviour of tomato (Lyco-persicon esculentum Mill.) fruits. Scientia Horticulturae 110, 84-92, 2006.
  • 51.Vleeming A., Mooney V., Dorman T., Snijders C., Stoeckart R.: Different Approach to the Mechanics of the Human Pelvis: Tensegrity. [in:] Movement, stability and low back pain. (red. A Vleeming et al.) Churchill Livingstone, Edinburgh, 1997.
  • 52.Voisey P. W., Lyall L. H .: Methods of determining the strength of tomato skins in relation to fruit cracking. Proceedings of the American Society for Horticultural Science 86, 597-609, 1965.
  • 53.Wojciechowski K. W.: Correspondence of the e-mail; in sets of authors, 2007.
  • 54.Wojciechowski K. W.: Remarks on “Poisson ratio be-yond the limits of the elasticity theory”. IC 16, 1-6, 2002.
  • 55.Zdunek A.: The instrumental method of assessment of selected texture features of apples based on acoustic emission. Acta Agrophysica 155, 2008.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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