non-toxic and toxic stimuli. In: Book of Abstracts IAA
19, Innsbruck, p 30
Kholodkevich SV, Ivanov AV, Kornienko EL,
Kurakin AS (2013) Method of biological environment
monitoring (versions) and a system for realization
thereof//05.14.2013. US Patent 8442809
Kholodkevich SV, Kuznetsova TV (2014) In situ measurements of cardiac activity characteristics in indigenous macrobenthic invertebrates for water quality
bioindication. In: Proceedings of the 6th IEEE ocean
conference. Tallinn, pp 1–7
Kinebas AK, Nefedova ED, Gvozdev VA, Kholodkevich SV, Ivanov AV, Kurakin AS, Kornienko EL
(2012) Increased efficiency and reliability of industrial
bioelectronic systems for biological monitoring of
water quality. Water Supply Sanitary Equipment.
1:20–27 (in Russian)
Kramer KJM, Foekema EM (2001) The “Musselmonitor®” as biological early warning system. In: Butterworth
FM,
Gunatilaka
A,
GonsebattME
(eds) Biomonitors and biomarkers as indicators of
environmental change 2: a handbook. Springer, New
York, p 59–87
Kuklina I, Kouba A, Kozák P (2013) Real-time monitoring of water quality using fi sh and crayfish as
bioindicators: a review. Environ Monitor Assessment.
185:5043–5053
Kuklina I, Sladkova S, Kouba A, Kholodkevich S, Kozák
P (2014) Investigation of chloramine-T impact on
crayfish Astacus leptodactylus (Esch., 1823) cardiac
activity. Environ Sci Pollut Res 21:10262–10269
Kurakin A, Kholodkevich S, Ivanov A (2015) Algorithm
development for the self-diagnosis applied to the
bioelectronic systems of the real-time environmental
monitoring. In: 4th Mediterranean Conference on
Embedded Computing (MECO), IEEE conference
publications. Budva, Montenegro, pp 357–360
Kuznetsova TV (2013) Change of salinity of medium as a
functional loading in estimating physiological state of
the crayfish Astacus leptodactylus. J Evol Biochem
Physiol 49(5):498–502
Kuznetsova TV, Sladkova SV, Kholodkevich SV (2010)
Evaluation of functional state of crayfish Pontastacus
leptodactylus in normal and toxic environment by
characteristics of their cardiac activity and hemolymph
biochemical parameters. J Evol BiochemPhysiol 46
(3):241–250
Kuznetsova TV, Kholodkevich SV (2015) Comparative
assessment of water quality through the evaluation of
cardiac responses of native mussels. In: 4rd Mediterranean Conference on Embedded Computing, MECO.
IEEE conference publications. Budva, Montenegro,
pp 339–344
Kuznetsova TV (2015) Evaluation of functional state of
crustaceans for bioindication their habitat quality. In:
Burukovsky RN, Nigmatullin Ch.M (eds) The Commercial Invertebrates. Proceedings of VIII Russian
Scientific Conference. Kaliningrad, pp 32–34
Makhnev PP, Bekrenev AV, Baklanov VS, Kholodkevich SV, Ivanov A, Donchenko VK, Kurakin AS,
Kornienko EL, Fedotov VP (2006) Ensure the safety
of the water supply system in the water supply of St.
Petersburg. Water Supply and Sanitary Technique 9
(1):6–15 (in Russian)
Melnik EA, Rublevskaya ON, Pankov GA, Kholodkevich SV, Ivanov AV, Kornienko EL, Sladkova SV,
Lyubimtsev VA, Kurakin AS (2013) Bioelectronic
toxicological safety monitoring system of biologically
treated wastewater discharges South-West Wastewater
Treatment Plant State Unitary Enterprise “Vodokanal
of St. Petersburg” in the Neva Bay. Water Supply
Sanitary Equipment 1:7–12 (in Russian)
Moore MN, Depledge MH, Readman JW, Paul
Leonard DR (2004) An integrated biomarker-based
strategy for ecotoxicological evaluation of risk in
environmental management. Mutat Res 552(1–
2):247–268
Nakayama S, Ikenaka Y, Muzandu K, Ishizuka M (2010)
Heavy metal accumulation in lake sediments, fish
(Oreochromis Niloticus and Serranochromis Thumbergi), and crayfish (Cherax Quadricarinatus) in Lake
Itezhi-tezhi and Lake Kariba. Zambia. Arch Environ
Contam Toxicol 59(2):291–300
Reynolds J, Souty-Grosset C (2012) Management of
freshwater biodiversity: Crayfish as bioindicators.
Cambridge University Press, Cambridge
Standards
catalog
https://www.iso.org/iso/en/
CatalogueListPage.CatalogueList?COMMID=3729
Selje H (1979) Stress without of distress. Moscow (in
Russian)
Sladkova SV, Fedotov VP, Kholodkevich SV (2006)
Compensatory possibilities of the crayfish cardiovascular system under conditions of progressing hypoxia.
J Evol Biochem Phys 42: 60–69 (in Russian)
Sladkova SV, Kholodkevich SV (2011) Total protein in
hemolymph of crayfish Pontastacus leptodactylus as a
parameter of the functional state of animals and a
biomarker of quality of habitat. J Evol Biochem Phys
47(2):160–167
Sladkova SV, Kholodkevich SV, Lyubimtsev VA (2015)
Evaluation of the functional state of crayfish using the
method of functional load. In: Burukovsky RN, Nigmatullin Ch.M (eds) The commercial invertebrates.
Proceedings of VIII Russian scientific conference.
Kaliningrad, pp 155–158 (in Russian)
Sladkova SV, Safronova DV, Kholodkevich SV (2016)
The study of the effect of light intensity, temperature
and feeding condition change on cardiac activity of
crayfish-bioindicators in bioelectronic systems for
surface water quality monitoring. Vestnic SPbGU 3
(1):137–149 (in Russian)
Styrishave B, Bojsen BH, Witthofft H, Andersen O
(2007) Diurnal variations in physiology and behavior
of the noble crayfish Astacus astacus and the signal
crayfish Pacifastacus leniusculus. Marine Freshwater
Behav Physiol 40(1):63–77
144
S. V. Kholodkevich et al.
Précédent

- 152/257

Suivant