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20 results for “Corbicula fluminea”
Figure 6 in Better biosecurity: spread-prevention of the invasive Asian clam, Corbicula fluminea (Müller, 1774)
Figure 6. Mean mortality (± SE) of adult Corbicula fluminea specimens (SH = 15–26 mm) 24 hrs post-exposure to a direct steam application, at a distance of 2–3 cm from the source, for 10 sec, 30 sec, 1, 2, 5 and 10 minutes (n = 5, with 70 clams per n).
Figure 4 in Better biosecurity: spread-prevention of the invasive Asian clam, Corbicula fluminea (Müller, 1774)
Figure 4. Mean mortality (± SE) for groups of ten adult Corbicula fluminea specimens (SH = 15–26 mm) 24 hrs post-exposure to 35 (35 g L-1) or 70% (70 g L-1) aerated salt solutions (regular table salt) for 1, 6, 24, 48 and 72 hrs (n = 5, with 150 clams per n).
Figure 2 in Better biosecurity: spread-prevention of the invasive Asian clam, Corbicula fluminea (Müller, 1774)
Figure 2. Mean mortality (± SE) of adult Corbicula fluminea specimens (SH = 15–26 mm) 24 hrs post-exposure to warm water (30 °C) solutions of aquatic disinfectants Virasure® Aquatic and Virkon® Aquatic, at both 2% (20 g L-1) and 4% (40 g L-1) concentrations. Experimental groups, each consisting of ten adult clams, were immersed in solutions of either chemical for 10, 20, 40 and 80 minutes (n = 3, with 200 clams per n).
Figure 5 in Better biosecurity: spread-prevention of the invasive Asian clam, Corbicula fluminea (Müller, 1774)
Figure 5. Mean mortality (± SE) for groups of ten medium (A: SH = 15–20.9 mm) and ten large (B: SH = 21–36 mm) adult Corbicula fluminea specimens 24 hrs post-exposure to hot water temperatures of 35, 40 and 45 °C for 5, 10 and 20 minutes (n = 5, with 120 clams per n).
Figure 3 in Better biosecurity: spread-prevention of the invasive Asian clam, Corbicula fluminea (Müller, 1774)
Figure 3. Mean mortality (± SE) of adult Corbicula fluminea specimens (SH = 15–26 mm) 24 hrs post-exposure to 5 (50 ml L-1), 10 (100 ml L-1) or 20% (200 ml L-1) bleach solutions. Experimental groups, each consisting of ten clams, were immersed in solutions of either chemical for 10, 20, 40 and 80 minutes (n = 3, with 160 clams per n).
Figure 1 in Better biosecurity: spread-prevention of the invasive Asian clam, Corbicula fluminea (Müller, 1774)
Figure 1. Mean mortality (± SE) of medium (A: SH = 15–20.9 mm) and large (B: SH = 21–36 mm) adult Corbicula fluminea specimens 24 hrs post-exposure to aquatic disinfectants Virasure® Aquatic and Virkon® Aquatic, at both 2% (20 g L-1) and 4 % (40 g L-1) concentrations. Experimental groups, each consisting of ten clams, were immersed in solutions (dechlorinated tap water) of either chemical for 10, 20, 40 and 80 minutes (n = 5, with 400 clams per n).
РИС. 3. Графики Зависимости: А – Ширины (D) и В – фронтальной кривиЗны (D/L) раковины Corbicula fluminea от длины (L). В качестве Зависимых переменных (y) в формулах укаЗаны Ширина (D) и фронтальнаЯ кривиЗна раковины (D/L). FIG. 3. Graphs of correlations between (A) width (D), (B) frontal curvature (H/L) and the shell length (L) of Corbicula fluminea. The formulas include shell width (D) and frontal curvature (D/L) as dependent variables (y). in Особенности аллометрического роста двустворчатого моллюска-вселенца Corbicula fluminea (Bivalvia: Cyrenidae) иЗ бассейна реки Дон
РИС. 3. Графики Зависимости: А – Ширины (D) и В – фронтальной кривиЗны (D/L) раковины Corbicula fluminea от длины (L). В качестве Зависимых переменных (y) в формулах укаЗаны Ширина (D) и фронтальнаЯ кривиЗна раковины (D/L). FIG. 3. Graphs of correlations between (A) width (D), (B) frontal curvature (H/L) and the shell length (L) of Corbicula fluminea. The formulas include shell width (D) and frontal curvature (D/L) as dependent variables (y).
FIG. 2 in Особенности аллометрического роста двустворчатого моллюска-вселенца Corbicula fluminea (Bivalvia: Cyrenidae) иЗ бассейна реки Дон
FIG. 2. Graphs of correlations between (A) height (H), (B) sagittal curvature (H/L) and the shell length (L) of Corbicula fluminea. The height (H) and sagittal curvature of the shell (H/L) are given as dependent variables (y) in the formulas.
FIG. 1 in Особенности аллометрического роста двустворчатого моллюска-вселенца Corbicula fluminea (Bivalvia: Cyrenidae) иЗ бассейна реки Дон
FIG. 1. Schematic map of the sampling area in the warm channel of Novocherkasskaya hydroelectric power plant, August 2019.
Figure 1 in Invasion of Corbicula fluminea (Müller, 1774) (Bivalvia: Corbiculidae) in water bodies from the East Aegean River Basin in Bulgaria
Figure 1. Map with the location of the sampling sites and an overall view of some of them (№ of pictures and sampling sites as in Tab. 1).
Figure 2 in Invasion of Corbicula fluminea (Müller, 1774) (Bivalvia: Corbiculidae) in water bodies from the East Aegean River Basin in Bulgaria
Figure 2. Number of collected specimens at the sampling sites (the order is as in Tab. 1).
Figure 5 in What is the matter with Corbicula fluminea (Mollusca: Bivalvia: Cyrenidiae)? Occurrence of unusual shell erosion in Northern Italy
Figure 5. Regression analysis of shell thickness (ShT) vs shell dry weight (ShDW) of the Gaviola and Castellana specimens. (a) Gaviola all specimens; (b) Gaviola small specimens; (c) Gaviola large specimens; (d) Castellana all specimens; (e) Castellana small specimens; (f) Castellana large specimens.
Figure 3 in What is the matter with Corbicula fluminea (Mollusca: Bivalvia: Cyrenidiae)? Occurrence of unusual shell erosion in Northern Italy
Figure 3. Mean (± standard deviation) (a) length (mm); (b) thickness (mm); and (c) shell dry weight (g).
Figure 2 in What is the matter with Corbicula fluminea (Mollusca: Bivalvia: Cyrenidiae)? Occurrence of unusual shell erosion in Northern Italy
Figure 2. The two semi-natural streams of the lower River Ticino catchment in south-west Lombardy (Northern Italy).
Figure 1 in What is the matter with Corbicula fluminea (Mollusca: Bivalvia: Cyrenidiae)? Occurrence of unusual shell erosion in Northern Italy
Figure 1. Corbicula fluminea with shell damage collected in (a) Gaviola Stream and (b) Castellana Stream.
Figure 4 in What is the matter with Corbicula fluminea (Mollusca: Bivalvia: Cyrenidiae)? Occurrence of unusual shell erosion in Northern Italy
Figure 4. Regression analysis of length (L) vs shell thickness (ShT). (a) Gaviola all specimens; (b) Gaviola small specimens; (c) Gaviola large specimens; (d) Castellana all specimens; (e) Castellana small specimens; (f) Castellana large specimens.
Figure 7 in What is the matter with Corbicula fluminea (Mollusca: Bivalvia: Cyrenidiae)? Occurrence of unusual shell erosion in Northern Italy
Figure 7. Regression analysis of (a) length (L) vs shell thickness (ShT) and (b) shell thickness (ShT) vs shell dry weight (ShDW) of the Vernavola specimens.
РИС. 4. Графики Зависимости: A – индекса выпуклости ((H+D)/L) и B – условного объёма (H×D×L/1000) раковины Corbicula fluminea от длины (L). В качестве Зависимых переменных (y) в формулах укаЗаны индекс выпуклости ((H+D)/L) и условный объём раковины (H×D×L/1000). in Особенности аллометрического роста двустворчатого моллюска-вселенца Corbicula fluminea (Bivalvia: Cyrenidae) иЗ бассейна реки Дон
РИС. 4. Графики Зависимости: A – индекса выпуклости ((H+D)/L) и B – условного объёма (H×D×L/1000) раковины Corbicula fluminea от длины (L). В качестве Зависимых переменных (y) в формулах укаЗаны индекс выпуклости ((H+D)/L) и условный объём раковины (H×D×L/1000).
Figure 6. K in What is the matter with Corbicula fluminea (Mollusca: Bivalvia: Cyrenidiae)? Occurrence of unusual shell erosion in Northern Italy
Figure 6. K-medoid analysis of the (a) Gaviola and (b) Castellana populations.
Whole-transcriptome response to wastewater treatment plant and stormwater effluents in the Asian clam, Corbicula fluminea
GEO Series GSE104933. Corbicula fluminea. 24 samples. Type: Expression profiling by high throughput sequencing.
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