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S. Chacko 《Marine Biology》1967,1(2):113-117
Previous authors have suggested that there exist close correlations between the topography of the brain and the mode of life in isopods. This paper describes and illustrates the central nervous system of Thenus orientalis (family: Scyllaridae) and evaluates the findings in evolutionary terms. Considering the shortening of the connectives and the fusion of ganglia in the thoracic region of the ventral nerve cord, T. orientalis shows more pronounced marks of specialization than highly evolved isopods; in regard to the topographical displacement of the anatomical units of the brain, it occupies an intermediate position between the primitive Mysidacea and the advanced Isopoda.Present address of the author  相似文献   
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Water quality index (WQI) models are generally used in hydrochemical studies to simplify complex data into single values to reflect the overall quality. In this study, deep groundwater quality in the Chittur and Palakkad Taluks of the Bharathapuzha river basin of Kerala, India, was assessed by employing the WQI method developed by the Canadian Council of Ministers of the Environment (CCME). The assessment of overall water quality is indispensable due to the specific characteristics of the study area, such as geography, climate, over-drafting, and prevalent agricultural practices. Forty representative samples were collected from the study area for monsoon (MON) and pre-monsoon (PRM) seasons. The results showed a general increase of contents from MON to PRM. The major cations were spread in the order Ca2+>Na+>Mg2+>K+ and the anions HCO3>Cl>CO32− based on their relative abundance. Among various parameters analysed, alkalinity and bicarbonate levels during MON were comparatively high, which is indicative of carbonate weathering, and 90% of the samples failed to meet the World Health Organization (WHO, 2017)/Bureau of Indian Standards (BIS, 2012) drinking water guidelines. The CCME WQI analysis revealed that nearly 50% of the samples during each season represented good and excellent categories. The samples in the poor category comprised 10% in MON and 15% in PRM. The overall WQI exhibited 15% of poor category samples as well. The spatial depiction of CCME WQI classes helped to expose zones of degraded quality in the centre to eastward parts. The spatial and temporal variations of CCME WQI classes and different physicochemical attributes indicated the influence of common factors attributing to the deep groundwater quality. The study also revealed inland salinity at Kolluparamba and Peruvamba stations, where agricultural activities were rampant with poor surface water irrigation.  相似文献   
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The spatial variation of chlorophyll a (Chl a) and factors influencing the high Chl a were studied during austral summer based on the physical and biogeochemical parameters collected near the coastal waters of Antarctica in 2010 and a zonal section along 60°S in 2011. In the coastal waters, high Chl a (>3 mg m?3) was observed near the upper layers (~15 m) between 53°30′E and 54°30′E. A comparatively higher mesozooplankton biomass (53.33 ml 100 m?3) was also observed concordant with the elevated Chl a. Low saline water formed by melting of glacial ice and snow, as well as deep mixed-layer depth (60 m) due to strong wind (>11 ms?1) could be the dominant factors for this biological response. In the open ocean, moderately high surface Chl a was observed (>0.6 mg m?3) between 47°E and 50°E along with a Deep Chlorophyll Maximum of ~1 mg m?3 present at 30–40 m depth. Melt water advected from the Antarctic continent could be the prime reason for this high Chl a. The mesozooplankton biomass (22.76 ml 100 m?3) observed in the open ocean was comparatively lower than that in the coastal waters. Physical factors such as melting, advection of melt water from Antarctic continent, water masses and wind-induced vertical mixing may be the possible reasons that led to the increase in phytoplankton biomass (Chl a).  相似文献   
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Environmental Science and Pollution Research - Heavy metals (HMs) have attracted global attention due to their toxicity, persistence, and accumulation in aquatic fish in the polluted water...  相似文献   
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A lactose-binding lectin (TCL) was purified from the seeds of African walnut, Tetracarpidium conophorum, and acute toxicity studies of the lectin were carried out with Swiss albino male mice. Animals were administered doses of TCL from 500 to 2500?mg?kg?1 body weight (b.wt.) orally while intraperitoneally the dose ranged from 10 to 600?mg?kg?1 b.wt. Animals were then assessed for organ and body weight changes, mortality, and histopathology. TCL did not cause any observable toxicity via the oral route; however, when administered intraperitoneally, TCL elicited toxicity with an LD50 of 50?mg?kg?1 b.wt. Death from intoxication was preceded by convulsion, hypoactivity, salivation, ataxia, and weakness. The animals given lethal doses of the lectin showed profound respiratory depression which was judged to be the primary cause of death. Histopathological analysis indicated that the lungs, liver, and spleen were adversely affected while the kidney and other organs were essentially normal. In all the affected organs, the severity of toxicity was dose-dependent as the effect of the lectin became more pronounced with increase of the dose administered.  相似文献   
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