• Title/Summary/Keyword: 24hr-LC50

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Effects of Ammina on Survival and Growth of the Flounder Larva, Paralichthys olivaceus (넙치, Paralichthys olivaceus 자어의 생존과 성장에 미치는 암모니아의 영향)

  • KIM Hyung-Soo;KIM Heung-Yun;CHIN Pyung
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.30 no.3
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    • pp.488-495
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    • 1997
  • The effects of ammonia on survival and growth of the flounder larva, Paralichthys olivaceus, were examined by a static renewal bioassay method. The $96\;hr-LC_{50}$ with the developmental stages during the period from 1day to 23 day-old larvae ranged 0.273 to 1.023 mg $NH_3/\ell$. Tolerance of the larvae to ammonia toxicity was much sensitive at the early larval stage, and increased with the growth of the larvae. Threshold $96hr-LC_{50}$ in 1, 3 and S day-old larvae after hatching were 0.293, 0.248 and 0.379 mg $NH_3/\ell$, respectively. Survival rate and growth in body weight and body weight of the larva were reduced with increase of ammonia concentration in the range of 0.055 and 0.341 mg $NH_3/\ell$. The no-observable-effect concentration (NOEC) and lowest-observable- effect concentration (LOEC) of the flounder larve were 0.102 and 0.174 mg $NH_3/\ell$ for body length, and 0.151 and 0.198 mg $NH_3/\ell$ for body weight, respectively. Chronic value (ChV), which is the geometric mean of the NOEC and $NH_3/\ell$ to body length of the larvae were 0.124 mg $NH_3/\ell$. The coefficient of variation (CV) for body length was higher at high concentration than at low concentration.

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A Study on the Acute Toxicity and Accumulation of Mercuric Chloride to Goldfish (Carassius auratus) (Mercuric Chloride가 붕어(Carassius auratus)에 미치는 급성독성 및 축적에 관한 연구)

  • 이재형
    • Journal of Environmental Health Sciences
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    • v.15 no.2
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    • pp.97-106
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    • 1989
  • This experiment was performed to study the acute toxic effects of mereuric chloride(HgCl$_{2}$) in goldfish (Carassius aurams). In the study, Lc$_{50}$ values were determined for each 24, 48, 72 ,and 96-hr and mercury bioassay during the tests were performed. in five parts gill, kidney, liver, muscle and egg. The results isummarized were as follows 1. In the range of acute lethal toxicity for goldfish was 0.15-1.50 mg/l and the Lc$_{50}$ values decreased with exposure time. 2. The Lc$_{50}$ values of HgCl$_{2}$ for goldfish at 24, 48, 72 and 96 hour were 0.64, 0.53, 0.46, and 0.39 mg/l, respectively. 3. In the 400 $\mu$g/l treatment group, the average levels of mercury residues in the gill, kidey, liver, muscle and egg during 96 hour were 107.02 $\mu$g/g, 8.65 $\mu$g/g, 6.87 $\mu$g/g, 0.61 $\mu$g/g, and 0.82 $\mu$g/g, respectively. 4. The mercuny residues of gill was up to 12-175 times greater than mercury contents found in the other tissues.

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Acute toxicity of wood vinegar on culture fishes (수종의 양식어류에 대한 목초액의 급성독성)

  • Kim, Seok-Ryel;Jung, Sung-Ju;Kitamura, Shin-Ichi;Kang, So-Young;Oh, Myung-Joo
    • Journal of fish pathology
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    • v.19 no.3
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    • pp.277-284
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    • 2006
  • Application of wood vinegar in fish farms has been used for the disinfection of pathogenic microorganisms and the treatment of infectious diseases. This study was performed to know the acute toxicity of wood vinegar to carp Cyprinus carpio, flounder Paralichyhus olivaceus, rock fish Sebastes schlegeli and black sea bream Pagrus major. The 24 hr, 48 hr and 96 hr LC50 respectively were: carp 1243, 1143 and 1016 ppm; flounder 1397, 1253 and 1226 ppm; rock fish 1058, 993 and 967 ppm; and black sea bream 650, 616 and 596 ppm. Death and survival of fish exposed to lethal concentrations of wood vinegar were apparently related to massive necrosis, fusion and epithelial lifting of gill lamellar epithelium, suggesting the osmotic imbalance and lack of oxygen uptake.

Effects of Cu, Cd, Fenbendazole and Sulfathiazole on the Survival of the Korean Fairy Shrimp Branchinella kugenumaensis (구리, 카드뮴, 펜벤다졸, 설파티아졸이 국내산 풍년새우 생존에 미치는 영향)

  • Moon, Seong-Dae;Cho, Chang-Hyun;Kwak, Inn-Sil;Lee, Chang-Hoon
    • Environmental Analysis Health and Toxicology
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    • v.24 no.4
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    • pp.311-320
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    • 2009
  • The short term (24-hr) and long term (21 days) effects of copper, cadmium, fenbendazole and sulfathiazole on the survival of the Korean fairy shrimp Branchinella kugenumaensis were evaluated. The 24-hr median lethal concentrations ($LC_{50}$) of copper, cadmium, fenbendazole, and sulfathiazole were 39, 512, 182, and 31,818 ${\mu}g/L$, respectively. The toxicity of copper is highest among 4 chemicals used in this study, while sulfathazole the lowest. After the long term (21 days) exposure experiment, the $LC_{50}$ copper, cadmium, fenbendazole, and sulfathiazole were 1.12, 2.1, 0.1, 6.6 ${\mu}g/L$, respectively. The long term effects of antibiotics were highly enhanced while the short-term effects were not strong. The sensitivities of B. kugenumaensis to copper and cadmium were higher than or comparable to those of other freshwater branchiopods (Streptocephalus spp., Thamnocephalus sp.), and far higher than the marine species (Artemia sp.). There were significant effects on the survival of B. kugenumaensis after long term exposure to relatively lower concentrations of copper, cadmium, fenbendazole and sulfathiazole. Therefore, B. kugenumaensis seems quite a good candidate species for the ecotoxicological assessments of freshwater environments.

The Pharmacokinetics of Erythromycin in Cultured Paralichthys olivaceus after Oral administration (경구투여에 의한 양식산 넙치내 Erythromycin의 약물동태학적 특성 분석)

  • Seo, Jung-Soo;Jeon, Eun-Ji;Jung, Sung-Hee;Park, Myung-Ae;Kim, Na-Young
    • Journal of Fisheries and Marine Sciences Education
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    • v.26 no.2
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    • pp.316-321
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    • 2014
  • The pharmacokinetics of erythromycin (EM) after oral administration was studied in the cultured olive flounder, Paralichthys olivaceus, using LC/MS/MS. After single- or multiple-dose administration of EM (50, 100, 200 mg/kg body weight and 50 mg/kg for 5 days) by oral route in olive flounder ($350{\pm}40g$, $22{\pm}0.5^{\circ}C$), the concentration in the serum was determined at 1, 3, 6, 9, 24, 72, 120, 168, 264, 360, 504 and 720 h post-dose. The kinetic profile of absorption, distribution and elimination of EM in serum were analyzed fitting to a two-compartment model by WinNonlin program. The area under the concentration-time curve (AUC), maximum concentration ($C_{max}$), time for maximum concentration ($T_{max}$) following oral administration of 50, 100 and 200 mg/kg b.w. and 50 mg for 5 days. EM was $165.3hr^*{\mu}g/m{\ell}$ ($C_{max}$, $34.63{\mu}g/m{\ell}$; $T_{max}$, 1.56 hr), $212.8hr^*{\mu}g/m{\ell}$ ($C_{max}$, $60.38{\mu}g/m{\ell}$; $T_{max}$, 3.99 hr), and $592.37hr^*{\mu}g/m{\ell}$ ($C_{max}$, $63.01{\mu}g/m{\ell}$; $T_{max}$, 4 hr), respectively. The results of this study related to dosage and ${\mu}{\cdot}$withdrawal times could be used for prescription of EM in field for the treatment of bacterial diseases in olive flounder.

Detemination of Short-term Bioconcentration Factor on Dichlorvos, Methidathion and Phosalone in Brachydanio rerio and Xiphophorus hellieri (Brachydanio rerio와 Xiphophorus hellieri를 이용한 Dichlorvos, Methidathion 및 Phosalone의 단기간 생물농축계수의 측정)

  • 민경진;전봉식;차춘근;김근배;조영주
    • Journal of Environmental Health Sciences
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    • v.24 no.3
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    • pp.99-106
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    • 1998
  • This study was performed to investigate the bioconcentration of dichlorvos, methidathion and phosalone in zebrafish (brachydanio rerio), red sword tail(Xiphophorus hellieri). The fishes were exposed to 0.05 ppm, 0.01 ppm, 0.50 ppm, one-hundredth concentration of 96-hrs LC$_{50}$ and one-thousandth concentration of 96-hrs LC$_{50}$ and test periods were 3, 5 and 8 days. The deputation rate of each pesticide from the whole body of fish was determined over the 24-hr period after treatment. Obtained results are summerized as follows: In the case of dichlorvos, dichlorvos concentration in zebrafish extract and BCF$_{s}$ of dichlorvos were increased as increasing test concentration. In the case of same experimental concentrations, dichlorvos concentration in zebrafish extract and BCF$_{s}$ of dichlorvos were decreased as proloning test periods, especially dropped after 5days. Dichlorvos concentration in red sword tail extract were increased as increasing test concentration, lyat BCF$_{s}$ in concentration of 0.05 ppm, 0.01 ppm and one-hundredth of 96-hrs LC$_{50}$ were decreased. Methidathion and phosalone concentration in zebrafish extract in zebrafish extract were increased as increasing test concentration, but there was little difference in BCF$_{s}$. In the case of same experimental concentrations, there were little differences in BCF$_{s}$ and concentration in zebrafish extract. In the case of red sword tail, it was impossible to calculate on BCF$_{s}$ data because test concentration was under the detecting limit on GC or test fish were die. Determined deputation rate conatant were highest on dichlorvos, and followed by methidathion, and phosalone. The results of determining depuration rate of these pesticides showed that the high BCF in fish might be due to the slow depuration rate in fish, it is thought to be responsible for vapor pressure, water solubility and partition coefficient. It is suggested that one-hundredth concentration of 96-hrs LC$_{50}$ will be proper test concentration because one-thousundth of LC$_{50}$ was under the detecting limit on GC. Dichlorvos, methidathion and phosalone, organophosphorous pesticides, were examined to their BCF$_{s}$ and depuration rates by means of fish test.

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Difference in Species of Test Fish on the Determination of Short-term Bioconcentration Factor (단기간 생물농축계수의 측정에 있어서 실험어류의 종에 따른 차이)

  • 민경진;차춘근;전봉식;김근배
    • Journal of Environmental Health Sciences
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    • v.24 no.1
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    • pp.24-31
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    • 1998
  • This study was performed to investigate the difference in species of test fish on the determination of short-term bioconcentration factor in zebrafish(Brachydanio rerio), red sword tail(Xiphophorus hellieri) and goldfish(Carassius auratus). Experimental concentrations of carbamates were 0.05 and 0.10 ppm and chlorothalonil were 0.005 and 0.01 ppm for 3 and 5 days, respectively. This paper reports the measured BCF value on pesticides in various species of test fish, under steady state, and examined correlation between the BCF value and depuration rate constant or LC$_{50}$ or lipid content. Carbamates and chlorothalonil concentration in fish extract and BCF of carbamate and chlorothalonil were increased as incresing test concentration. Carbamates concentration in fish extract and BCF of carbamate were decreased as incresing test period, but chlorothalonil concentration in fish extract and BCF of chlorothalonil were increased as prolonging test period. Determined pesticide concentration in fish extract and BCF were highest in red sword tail, and followed by goldfish, and zebrafish. Determined depuration rate constant were highest in zebrafish, and followed by goldfish, and red sword tail. 96hr-LC$_{50}$ were highest in red sword tail, and followed by zebrafish, and goldfish. Lipid compositions were highest in red sword tail, and followed by goldfish, and zebrafish. Therefore, it is suggested that the difference of BCF between each pesticide due to those of lipid composition of fish and deputation rate constant, while LC$_{50}$ have no effect on BCF.

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Effects Of Herbicide Machete On Carp, Cyprinus carpio Linne (제초제 마세트가 잉어에 미치는 영향에 대하여)

  • Cha, Seong Sig;Kim, Wan Soo
    • 한국해양학회지
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    • v.15 no.1
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    • pp.49-57
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    • 1980
  • Toxicity of Machete on the mortality of the three different life stages, namely, hatching period, prelarval stage, and juvenile stage of carp(Cyprinus carpio Linne) was observed. The effect of the various exposure times on the mortality of the prelarval stage, and the effect of different temperatures on the toxicity during juvenile stage were also analysed. Hatchability and duration time of the carp were shown to be related to the concentration of Machete. In general, hatchability and duration time were shown to be decreased when the concentration of Machete was increased. For prelarval stage, 24hr and 48hr LC 50, and 24hr and 48hr EC 50 were observed to be 0.86mg/l and 0.43mg/l, and 0.35mg/l and 0.20mg/l, respectively. For juvenile stage, 24hr, 48hr, 96hr, and Incipient LC 50 were found to be 0.625mg/l, 0.365mg/l, 0.180mg/l, and 0.135mg/l, respectively. Apparently it was appeared that eggs were most resistant, and prelarvae were most sensitive to Machete among the three life stages. Although fish were removed from the Machete solution(3.2mg/l, and 1.8mg/l) prior to their death, continuous mortality was observed. Below 1.mg/l range, however, when concentration of Machete was lowered, the toxic effect of Machete on carp was reduced considerably even to the longtime exposure(24hours) Toxicity of Machete appeared to be related to water temperature, and it was observed that higher temperature reflected more toxicity.

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Acute and Chronic Toxicity of Phenol to Mysid, Archaeomysis kokuboi (곤쟁이, Archaeomysis kokuboi에 미치는 phenol의 급성 및 만성독성)

  • KIM Jeong-Seon;CHIN Pyung
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.28 no.1
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    • pp.87-97
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    • 1995
  • Acute and chronic toxicity of phenol on the mortality, long-term survival and respiration rates of the mysid, Archaeomysis kokuboi adult and juvenile were examined. This experiment was condurted by static bioassay procedure with the different salinity at $25^{\circ}C$ In lethal test, the test animals were exposed to 6 different phenol concentrations to determine $LC_{50}$ and I$LT_{50}$ (median lethal concentration and time) values. The $LC_{50}$ values with the exposure time for the mysid adult ranged from 31.31ppm to 1.49ppm phenol and for the mysid juvenile ranged from 6.90ppm to 0.26ppm in all experimental groups. Mortality was increased with the decrease of salinity, The $96hr-LC_{50}$ values at 16, 24 and $32\%o$ salinity for the mysid adult were 1.49, 2.71 and 4.53ppm phenol, white the values for the mysid juvenile were 0.26, 0.56 and 0.71ppm, respectively. The ratios of $96hr-LC_{50}$ values for the mysid adult to those for the mysid juvenile at 16, 24 and $32\%p$ salinity were 5.73, 4.84 and 6.38, respectively. The mysid juveniles were more sensitive to phenol than the mysid adults. Compared $LT_{50}$ values for the mysid adult with those for the mysid juvenile, the $LT_{50}$ values for the mysid adult ranged from 384.7 to 29.0 hours at 1.7-127ppm phenol concentrations and for the mysid juvenile ranged from 132.2 to 18.7 hours at 0.5~6.Oppm phenol concentrations. The lowest $LT_{50}$ values for the mysid adult and juvenile were showed at the combination of the highest experimental concentration of phenol and the lowest experimental salinity. The mysid juveniles showed lower $LT_{50}$ values than those of adults. The chronic effects of phenol on the mysid at the sublethal effective concentration of phenol were lower in the $32\%o$ salinitr group than 16 or $24\%o$ salinity groups. Oxygen consumption rates of the mysid adult were decreased with the increase of phenol concentration and exposure time, and decreased significantly in lower salinity at the same concentration or phenol.

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Acute Toxicity of Ozone on Survival and Physiological Conditions of Olive Flounder, Paralichthys Olivaceus (넙치(Paralichthys olivaceus)의 생존과 생리상태에 미치는 오존의 급성 독성)

  • Kim, Heung-Yun;Oh, Myung-Joo;Jung, Sung-Ju
    • Journal of fish pathology
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    • v.12 no.1
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    • pp.32-41
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    • 1999
  • Ozonization for rearing seawater in land-based culture system has recently been utilized for disinfection of pathogenic microorganisms and improvement of water quality. This study was conducted to examine the effects of total residual oxidants (TRO) in ozone-treated seawater on survival, blood parameters, osmolality and oxygen consumption, and gill tissue of the flounder. Paralichthys olivaceus. Experiments were carried out with the starved flounder of 12~19 cm in total length at $20^{\circ}C$. The 48-hr and 96-hr $LC_{50}$ for the flounder amounts to 26.4 ppb and 22.3 ppb, respectively. With increase of TRO concentration from 24 to 39 ppb, the values of hematocrit, hemoglobin concentration, red blood cell count and osmolality of the flounder with respect to exposure time were significantly elevated, however, the oxygen consumption rates decreased. In the case of the fish exposed to 13 ppb for 96 hrs, blood glucose increased with an elapse of exposure time, while survival rate was 100%. Death apparently resulted by massive destruction of gill lamellar epithelium, severe osmotic imbalance and the lack of oxygen uptake. The results of this experiment indicated that to protect aquaculture organisms, the ozone-treated seawater should not contain any residual oxidants, and that relatively long-term exposure to TRO of low concentration can impact on survival and physiological conditions of the flounder.

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