1. Dobrova, N.B., Noskova, T.I., Novikova, S.P., et al., Sbornik metodicheskikh rekomendatsii po otsenke biosovmestimykh svoistv iskusstvennykh materialov, kontaktiruyushchikh s krov’yu (Collection of Guidelines for Assessing the Biocompatible Properties of Artificial Materials in Contact with Blood), Moscow: Komitet po novoi meditsinskoi tekhnike Minzdrava SSSR, 1991, p. 70.
2. Druzhinin, E.A., Proizvodstvo i svoistva fil’truyushchikh materialov Petryanova iz ul’tratonkikh polimernykh volokon (Production and Properties of Petryanov Filtering Materials from Ultrathin Polymer Fibers), Moscow: IzdAT, 2007.
3. Zhorzholiani, Sh.T., Talygin, E.A., Krasheninnikov, S.V., Tsigankov, Y.M., Agafonov, A.V., Gorodkov, A.Yu., et al., Elasticity change along the aorta is a mechanism for supporting the physiological self-organization of tornado-like blood flow, Hum. Physiol., 2018, vol. 44, no. 5, pp. 532–540.
4. Popova I.V. Eksperimental’noe izuchenie sosudistogo proteza, izgotovlennogo metodom elektrospinninga (Experimental Study of a Vascular Prosthesis Made by the Method of Electrospinning), 14.01.26, NNIIPK im. akad. E.N. Meshalkina Minzdrava Rossii, June 29, 2016.
5. European Convention for the Protection of Vertebrate Animals used for Experimental and Other Scientific Purposes EST No. 123, Strasbourg, March 18, 1986.