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[HTML][HTML] NanoSIMS for biological applications: current practices and analyses
Secondary ion mass spectrometry (SIMS) has become an increasingly utilized tool in
biologically relevant studies. Of these, high lateral resolution methodologies using the …
biologically relevant studies. Of these, high lateral resolution methodologies using the …
Advances in giant clam (Tridacnidae spp.) sclerochronology and sclerochemistry
Understanding past environmental change through high-resolution palaeoenvironmental
proxy reconstructions provides crucial baselines for understanding global environmental …
proxy reconstructions provides crucial baselines for understanding global environmental …
Growth responses of mixotrophic giant clams on nearshore turbid coral reefs
Increasing evidence suggests that nearshore turbid coral reefs may mitigate bleaching of
reef building calcifiers and play a critical role in the future of marine biodiversity in coastal …
reef building calcifiers and play a critical role in the future of marine biodiversity in coastal …
Quantifying Sub‐Seasonal Growth Rate Changes in Fossil Giant Clams Using Wavelet Transformation of Daily Mg/Ca Cycles
I Arndt, D Coenen, D Evans… - Geochemistry …, 2023 - Wiley Online Library
Shells of the giant clam Tridacna can provide decade‐long records of past environmental
conditions via their geochemical composition and structurally through growth banding …
conditions via their geochemical composition and structurally through growth banding …
Daily growth and tidal rhythms in Miocene and modern giant clams revealed via ultra-high resolution LA-ICPMS analysis—A novel methodological approach towards …
V Warter, W Müller - Palaeogeography, Palaeoclimatology, Palaeoecology, 2017 - Elsevier
We present a novel approach for ultra-high resolution laser-ablation inductively-coupled-
plasma mass spectrometry (LA-ICPMS) analysis, which not only allows us to clearly …
plasma mass spectrometry (LA-ICPMS) analysis, which not only allows us to clearly …
Environmental and physiological controls on daily trace element incorporation in Tridacna crocea from combined laboratory culturing and ultra-high resolution LA-ICP …
Recent advances in spatially-resolved in-situ geochemical analysis enabled recognizing
daily variability in B, Mg, Sr and Ba within bivalve shells of the genus Tridacna (eg Sano et …
daily variability in B, Mg, Sr and Ba within bivalve shells of the genus Tridacna (eg Sano et …
Annual shell growth pattern of the Stimpson's hard clam Mercenaria stimpsoni as revealed by sclerochronological and oxygen stable isotope measurements
Mercenaria stimpsoni (Stimpson's hard clam) is a shallow-water bivalve species distributed
along mid-to high-latitude coasts of the Northwest Pacific influenced by the Oyashio cold …
along mid-to high-latitude coasts of the Northwest Pacific influenced by the Oyashio cold …
A biomineralization study of the Indo-Pacific giant clam Tridacna gigas
The giant clam, Tridacna gigas, is an important faunal component of reef ecosystems of the
Indo-Pacific region. In addition to its ecological role, shells of this bivalve species are useful …
Indo-Pacific region. In addition to its ecological role, shells of this bivalve species are useful …
A time window averaging method to mitigate the impact of shell growth trends on Tridacna δ18O records
T Han, H Wen, N Zhao, C Liu, G Wang, Z Wang… - Palaeogeography …, 2024 - Elsevier
Tridacna shells have become valuable archives for high-resolution paleoclimate
reconstructions due to their daily-to-annual bands. The δ 18 O, influenced by temperature …
reconstructions due to their daily-to-annual bands. The δ 18 O, influenced by temperature …
Geochemical fingerprints of climate variation and the extreme La Niña 2010–11 as recorded in a Tridacna squamosa shell from Sulawesi, Indonesia
We used a Tridacna squamosa (Tridacnidae, Bivalvia) shell that lived between 2006 and
2012 to reconstruct environmental conditions in South East Sulawesi (Indonesia). We …
2012 to reconstruct environmental conditions in South East Sulawesi (Indonesia). We …