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The Source Wholesale Colour Changing Clam Light

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Mondal, P. P., Dilipkumar, S. & Mohan, K. Efficient generation of diffraction-limited multi-sheet pattern for biological imaging. Opt. Lett. 40, 609–612 (2015). Jolles J. Broad-scale Applications of the Raspberry Pi: A Review and Guide for Biologists. EcoEvoRxiv; 2021.

The datasets generated for this study are available on request to the corresponding author. Author ContributionsFutia, G., Schlup, P., Winters, D. G. & Bartels, R. A. Spatially-chirped modulation imaging of absorption and fluorescent objects on single-element optical detector. Opt. Express 19, 1626–1640 (2011).

Fill the shadows under the chin with a second studio light. Position the light on a low stand a foot or two off the ground. Point it up about 45 degrees towards the subject. Fig 8. Histogram of the distribution of closure event lengths for Clam 3 in seconds over the interval from June 1-August 15. Guterres B de V, Guerreiro A da SC., Botelho SS da, Sandrini JZ. Perna perna Mussels Network as Pollution Biosensors of Oil Spills and Derivatives. IFAC-PapersOnLine. 2020;53: 16727–16732.Quantum ⁢ Yield = Integrated ⁢ photoluminescence ⁢ intensity Integrated ⁢ excitation ⁢ source ⁢ intensity Braley RD, Militz TA, Southgate PC. Comparison of three hatchery culture methods for the giant clam Tridacna noae. Aquaculture. 2018;495: 881–887.

Klumpp DW, Bayne BL, Hawkins AJS. Nutrition of the giant clam Tridacna gigas (L.) I. Contribution of filter feeding and photosynthates to respiration and growth. Journal of Experimental Marine Biology and Ecology. 1992;155: 105–122.Prior studies demonstrated that Tridacna exposed to sediment show increases in valve closure activity as the clams expel adhered particles from their gills [ 43]. The Biosphere 2 ocean clams have multiple species of macroalgae growing between and around them on the shallow floor which frequently dislodge and form floating debris that can be captured by the clams’ gills. Such detritus has been found to be an important food source for juvenile giant clams [ 44], but fecal or stomach sampling of the Biosphere 2 clams will be needed to determine the degree to which they are actually digesting such particles. Nevertheless, chlorophyll-a also displayed a significant relationship with closure activity on a four-day lag (with closure frequency lagging chlorophyll-a; Fig 6A), suggesting the clams were capturing circulating phytoplankton in the Biosphere 2 Ocean water, possibly in the periods of die-off following the repeated bloom events that occurred over the summer. Two of the clams showed more synchronized responses than the third ( Fig 4A), which did not display the same frequency of valve-clapping, suggesting some amount of inter-individual variability in the behavior.

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