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1.
Plamboeck A.H. A hydrological tracer study of water uptake depth in a Scots pine forest under two different water regimens // Oecologia, 1999. Vol. 119, N 3.-С.452-460

2.
Plamboeck A.H. A hydrological tracer study of water uptake depth in a Scots pine forest under two different water regimens // Oecologia, 1999. Vol. 119, N 3.-С.452-460

3.
Zhao A universal self-adaptive time-varying function for extracellular concentration during osmotic shift for curve-fitting permeability coefficients of cell membrane // CryoLetters, 2010. Vol. 31, N 3.-С.279-290

4.
Zhao A universal self-adaptive time-varying function for extracellular concentration during osmotic shift for curve-fitting permeability coefficients of cell membrane // CryoLetters, 2010. Vol. 31, N 3.-С.279-290

5.
Watson P.D. All types of transport data measured in muscle capillaries of anesthetized cats can be explained by a three pathway model // Int. J. Microcirc. Clin. and Exp., 1992. Vol. 11, Suppl. N1.-С.92

6.
Application of formaldehydereleasing compound in oil in water emulsions a deep coal mine // Biodeteriorat. -London, New York, 1988. Select. Pap. 7th Int. Biodeteriorat. Symp., Cambridge, 6-11 Sept., 1987, 7.-С.263-267

7.
Are we getting accurate measurements of K[sat] for sodic clay soils? // Agr. Water Manag., 2015. Vol. 158.-С.120-125

8.
Arg-Gly-Asp peptide increases endothelial hydraulic conductivity: Comparison with thrombin response // Amer. J. Physiol., 1995. Vol. 269, N 1.-С.110-117

9.
Arg-Gly-Asp peptide increases endothelial hydraulic conductivity: Comparison with thrombin response // Amer. J. Physiol., 1995. Vol. 269, N 1.-С.110-117

10.
Bacterial water quality and network hydraulic characterisics. A field study of a small, looped water distribution system using culture-independent molecular methods // J. Appl. Microbiol., 2012. Vol. 112, N 6.-С.1220-1234

11.
Baroreflex and neurohumoral control of broncho-desophageal blood flow conductance in the awake dog // Proc. Austral. Physiol. and Pharmacol. Soc., 1988. Vol. 19, N aug..-С.165

12.
Biomechanics of the intracranial system: mathematical approach based on a hydraulic model and experimental data // 8th Int. Symp. Intracran. Pressure "ICP and Craniospinal Dyn.", Rotterdam, June 16-20, 1991. -Rotterdam, 1991.-С.250

13.
Williams Donna A. Bradykinin increases hydraulic conductivity of mesenteric capillaries in pithed frogs // Int. J. Microcirc. Clin. and Exp., 1992. Vol. 11, Suppl. N1.-С.92

14.
Meyer (Jr.) D.Joseph Capillary hydraulic conductivity is elevated by cGMP-dependent vasodilators // Circ. Res., 1992. Vol. 70, N 2.-С.382-391

15.
Adamson R.H. Capillary permeability in decerebrate frogs is rapidly increased by a factor in human blood plasma // J. Physiol., 1990. Vol. 426.-С.115Р

16.
Huxley Virginia H. Capillary permeability: an albumin component attenuates active changes in L[p] // Amer. J. Physiol, 1990. Vol. 259, N 5.-С.Н1357-Н1364

17.
Changes in microvascular permeability with acceleration of edema in dog lungs // Amerg. J. Physiol., 1990. Vol. 258, N 2.-С.395-399

18.
Maciejewski M. Choice of optimal configuration for twophase biological reactors on the basis of hidraulic model studies of waste water treatment plant in Gdansk // Wysokoef. metody oczyszczania scieko'w i odnowa wody. -[Krakow], , 1989, 1.-С.117-125

19.
Payne D.Keith Comparative permeability of canine visceral and parietal pleura // J. Appl. Physiol., 1988. Vol. 65, N 6.-С.2558-2564

20.
Higgins Adam Z. Comparison of cell membrane water permeability in monolayers and suspensions // CryoLetters, 2012. Vol. 33, N 2.-С.96-107

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