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1.
A tandem array of minimal U1 small nuclear RNA genes is sufficient to generate a new adenovirus type 12-inducible chromosome fragile site // J. Virol., 1998. Vol. 72, N 5.-С.4205-4211

2.
Regnier A. Abnormal skin fragility in a cat with cholangiocarcinoma // J. Small Anim. Pract., 1989. Vol. 30, N 7.-С.419-429

3.
Alterations in the osmotic fragility of camel and donkey erythrocytes caused by temperature, pH and blood storage // Vet. arh., 2011. Vol. 81, N 4.-С.459-470

4.
Lemmel G. Aptitudes et personnalite d'enfants atteints du Syndrome de Williams-Beuren: Nouvelles perspectives // Neuropsychiat. enfance et adolescence, 1998. Vol. 46, N 12.-С.605-617

5.
Oyewale J.O. Changes in osmotic fragility of nucleated erythrocytes resulting from blood storage // J. Vet. Med. A, 1994. Vol. 41, N 6.-С.475-479

6.
Oyewale J.O. Changes in osmotic fragility of nucleated erythrocytes resulting from blood storage // J. Vet. Med. A, 1994. Vol. 41, N 6.-С.475-479

7.
Liao Coexpression of the adenovirus 12 E1B 55 kDa oncoprotein and cellular tumor suppressor p53 is sufficient to induce metaphase fragility of the human RNU2 locus // Virology, 1999. Vol. 254, N 1.-С.11-23

8.
Liao Coexpression of the adenovirus 12 E1B 55 kDa oncoprotein and cellular tumor suppressor p53 is sufficient to induce metaphase fragility of the human RNU2 locus // Virology, 1999. Vol. 254, N 1.-С.11-23

9.
Palmer J.H. Control of brittleness in butyl-methylmethacrylate resin embedding mixtures to facilitate their use in immunofluorescence microscopy // Cytobios, 2001. Vol. 104, N 407.-С.145-156

10.
Palmer J.H. Control of brittleness in butyl-methylmethacrylate resin embedding mixtures to facilitate their use in immunofluorescence microscopy // Cytobios, 2001. Vol. 104, N 407.-С.145-156

11.
Palmer J.H. Control of brittleness in butyl-methylmethacrylate resin embedding mixtures to facilitate their use in immunofluorescence microscopy // Cytobios, 2001. Vol. 104, N 407.-С.145-156

12.
Dynamic fragility of oceanic coral reef ecosystems // Proc. Nat. Acad. Sci. USA, 2006. Vol. 103, N 22.-С.8425-8429

13.
Effect of lactic acid on water content and osmotic fragility of erythrocytes in vivo // J. Sports Med. and Phys. Fitness, 1997. Vol. 37, N 1.-С.61-64

14.
Effect of the extract of Ricinus communis L. on the osmotic fragility, labeling of red blood cells with technetium-99m and morphology of the cells // Braz. Arch. Biol. and Technol., 2008. Vol. 51, N 6.-С.1139-1146

15.
Effect of the extract of Ricinus communis L. on the osmotic fragility, labeling of red blood cells with technetium-99m and morphology of the cells // Braz. Arch. Biol. and Technol., 2008. Vol. 51, N 6.-С.1139-1146

16.
Elasticity and fracture strain of whole blood clots // Clin. Hemorheol. and Microcirc., 1999. Vol. 21, N 1.-С.45-49

17.
Epileptic seizures, paroxysmal EEG activity and hyperactivity in subjects with the fragile X syndrome // Ital. J. Neurol. Sci., 1991. Vol. 12, N 5 Suppl. N12.-С.9

18.
Silva I.M.P. Erythrocyte osmotic fragility and cation concentrations during experimentally induced bovine anaplasmosis // Comp. Biochem. and Physiol., 1989. Vol. 91, N 3.-С.455-459

19.
Rizvi S.I. Erythrocyte osmotic fragility in different vertebrate species // Nat. Acad. Sci. Lett., 1998. Vol. 21, N 7-8.-С.261-264

20.
Rizvi S.I. Erythrocyte osmotic fragility in different vertebrate species // Nat. Acad. Sci. Lett., 1998. Vol. 21, N 7-8.-С.261-264

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