scholarly journals The Influence of Qatari Dust on the Element Composition of Marine Plankton

2021 ◽  
Author(s):  
Oguz Yigiterhan ◽  
Jassem Abdulaziz Al-Thani ◽  
Samah Dib ◽  
Hamood Abdulla Alsaadi ◽  
Ebrahim Mohd Al-Ansari

The Exclusive Economic Zone (EEZ) of Qatar is affected by extreme dust and extensive industrialization, making it an ideal location to examine influences of coastal processes on biological activity, which greatly affects marine biogeochemical cycling. In this study, the influence of dust on the trace element composition of plankton and how distance from shore effects elemental concentrations in marine plankton was investigated. Samples were collected using net tows with mesh sizes of 50 (bulkplankton) and 200 (zooplankton) mm size-fractions in 2012 and 2014 to examine temporal and spatial variabilities. The samples were strong acid digested and analyzed using ICP-OES. Trace metal clean techniques were used. The biogenic concentrations of trace metals were determined by correcting the bulk analyses for the lithogenic contribution using aluminum content of Qatari dust as a lithogenic tracer. The relative trace metal composition of plankton from EEZ of Qatar is Fe > Zn ≈ Cu > V ≈ Ni ≈ Cr ≈ As ≈ Mo > Cd ≈ Co. Small and large size planktonic compositions were similar, except for Ba, Mn, Pb, Mo which were higher in zooplankton than bulkplankton. It was not clear if the variability was due to differences in biology, proximity to the coast or interannual effects. The geochemical and statistical analysis suggested that the concentrations of Al, Fe, Cr, Co, Mn, Ni, Pb, Li in net-tow plankton samples were mostly of lithogenic (dust) and Cd, Cu, Mo, Zn, Ca are most likely of biogenic/anthropogenic origin. The excess concentrations relative to average dust from Qatar for most elements (except Cd) decreased with distance from shore. This may be due to contamination or uncertainties with the lithogenic correction or due to our sampling locations in a marginal sea, dominated by dust input. This is an aspect of this study that warrants more research.

Author(s):  
Hannah Peterson ◽  
◽  
Henintsoa Rakotoarisaona ◽  
Henintsoa Rakotoarisaona ◽  
Weihong Wang ◽  
...  

2017 ◽  
Author(s):  
Ryan S. Jackson ◽  
◽  
Horton Newsom ◽  
Agnes Cousin ◽  
Valérie Payre ◽  
...  

2020 ◽  
Vol 58 (12) ◽  
pp. 1321-1330
Author(s):  
K. G. Sukhanova ◽  
S. G. Skublov ◽  
O. L. Galankina ◽  
E. V. Obolonskaya ◽  
E. L. Kotova

Author(s):  
Tereza Koláčková ◽  
Daniela Sumczynski ◽  
Vratislav Bednařík ◽  
Štěpán Vinter ◽  
Jana Orsavová ◽  
...  

2021 ◽  
pp. 104560
Author(s):  
N.R. Kendall ◽  
J. Smith ◽  
L.K. Whistance ◽  
S. Stergiadis ◽  
C Stoate ◽  
...  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Betka Sophie ◽  
Łukowska Marta ◽  
Silva Marta ◽  
King Joshua ◽  
Garfinkel Sarah ◽  
...  

AbstractMany interoceptive tasks (i.e. measuring the sensitivity to bodily signals) are based upon heartbeats perception. However, the temporal perception of heartbeats—when heartbeats are felt—varies among individuals. Moreover, the spatial perception of heartbeats—where on the body heartbeats are felt—has not been characterized in relation to temporal. This study used a multi-interval heartbeat discrimination task in which participants judged the timing of their own heartbeats in relation to external tones. The perception of heartbeats in both time and spatial domains, and relationship between these domains was investigated. Heartbeat perception occurred on average ~ 250 ms after the ECG R-wave, most frequently sampled from the left part of the chest. Participants’ confidence in discriminating the timing of heartbeats from external tones was maximal at 0 ms (tone played at R-wave). Higher confidence was related to reduced dispersion of sampling locations, but Bayesian statistics indicated the absence of relationship between temporal and spatial heartbeats perception. Finally, the spatial precision of heartbeat perception was related to state-anxiety scores, yet largely independent of cardiovascular parameters. This investigation of heartbeat perception provides fresh insights concerning interoceptive signals that contribute to emotion, cognition and behaviour.


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