LazarevaT. G., Film materials based on polyvinyl alcohol and polyacids. Vys. Soed., A36, No. 9, 1994, pp. 1481–1485
2.
ErmolenkoI. N., Light-sensitivite materials based on polymers with acid groups, Minsk, 1988.
3.
SamchenkoYu. M., pH-sensitive hydrogels and interpenetrating networks based on acrylic monomers. Kolloidnyi Zhurnal, 60, No. 6, 1998, pp. 821–825
4.
SkokovaI. F., Film materials with controlled release of biologically active substances. Khimicheskie Volokna, No. 5, 1998, pp. 44–48
5.
KryzhanovskayaT. S. and LavrovN. A., Use of polymers in medicine. Plast. Massy, No. 2, 1995, pp. 44–46
6.
NikolaevA. F. and MosyaginaL. P., Polyvinyl alcohol and copolymers of vinyl alcohol in medicine. Plast. Massy, No. 3, 2000, pp. 34–42
7.
UkhartsevaI. Yu., Polarisation characteristics of ferrite-filled gels based on polyvinyl alcohol. In: Biological and therapeutic action of magnetic fields. Papers of International Scientific and Practical Conference on “Magnetology” (Vitebsk, 27–28 January 1999), pp. 61–63
8.
UkhartsevaI. Yu., Properties of ferrite-filled systems based on high molecular weight compounds. I. Investigation of electrophysical properties of ferrite-filled gels based on polyvinyl alcohol. Plast. Massy, No. 7, 2000, pp. 5–8
9.
MuthR. R., US Patent 5358677. Methods of forming bioadsorbable objects from polyvinyl alcohol. MPK B29B 11/12. United States Surgical Corp. N 852964. Application 17.03.92. Published 25.10.94
10.
PapkovS. P., Gel-like state of polymers, Khimiya, Moscow, 1974, pp. 181–185
11.
UshakovS. N., Polyvinyl alcohol and its derivatives, USSR Acad. Sci., Moscow–Leningrad, 1960, 866 pp.
12.
OstrovidovaG. U., Electroforming of thromboresistant coatings based on polyvinyl alcohol. Zh. Prikladnoi Khimii, 73, No. 5, 2000, pp. 830–833
13.
KosenkoR. Yu., Structure of polyvinyl alcohol membranes containing pepsin immobilised at subzero temperature. Khimiko-farmatsevticheskii Zhurnal, No. 5, 1995, pp. 51–54
14.
RozantsevE. G., Modification of polyvinyl alcohol by enzymes. Plast. Massy, No. 4, 1993, pp. 8–10
15.
GulV. E.’ , Effect of cryolysis on structure of rigid-chain polymers. Vys. Soed., 18, No. 1, 1976, pp. 118–121
16.
BulatnikovaL. I., Cryomodification of rigid-chain polymers. Vys. Soed., 25, No. 8, 1983, pp. 614–617
17.
BelyatskayaO. N., Structural transformations of polyvinyl alcohol under action of chitosan. Plast. Massy, No. 3, 1999, pp. 32–34
18.
LozinskiiV. I., Cryotropic gelation of solutions of polyvinyl alcohol. Uspekhi Khimii, 67, No. 7, 1998, pp. 641–655
19.
YakimtsovaL. B., Polyelectrolyte hydrogels based on hydrolysate of polyacrylamide. In Symposium of Papers of International Scientific and Technical Conference on “Polymer Composites” (Gomel’, 12–13 September 2000), pp. 32–36
20.
BelyatskayaO. N., Influence of temperature and time on modification of polyvinyl alcohol. Plast. Massy, No. 6, 1995, pp. 16–18
21.
LozinskiiV. I., Characteristic features of freezing of concentrated aqueous solutions of polyvinyl alcohol. Relationship with properties of hydrogels produced after thawing out. Kolloidnyi Zhurnal, 51, No. 4, 1989, pp. 685–690