• Title/Summary/Keyword: fish organ

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Trials for the control of scuticociliatosis in the cultured olive flounder(paralkhthys olivaceus) by bath treatment

  • Jee, Bo-Young;Jo, Mi-Ra
    • Journal of fish pathology
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    • v.15 no.2
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    • pp.93-97
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    • 2002
  • The scuticociliate, a histophagous ciliate, is known to cause high cumulative mortalities in juvenile olive flounder Paralichthys olivaceus rearing in land-based tank facilities. This study examined effects of bath treatment of 3 chemical agents including formalin, hydrogen peroxide and sodium chloride. and freshwater against scnricociliates infected olive flounder. Although 100 ppm formalin and freshwater did not completeIy eliminale ue scuticociliates within the internal organ of fish, chemicals were effective to prevent scuticociliatosis from spreading. It confirms the efficacy of the chemical with treating the diseased fish for at least 4 consecutive days.

Effects of Arsenic on the Gonadal Development in Crucian Carp (붕어의 발육 및 생식에 미치는 비소의 영향)

  • 남성숙;이철우;류지성;박응로;남규찬;류홍일;전성환;나진균;최덕일
    • Environmental Analysis Health and Toxicology
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    • v.16 no.2
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    • pp.51-56
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    • 2001
  • To evaluate the arsenic effect of fish endocrine disruption, crucian carp (Carassius auratus) were treated with 0.5 mg/L and 3.0 mg/L of As$_2$O$_3$ for 14 days and gonadal development was examined by histological analysis. In ovaries from female crucial carps exposed to 3.0 mg/L, immature follicles and atretic follicles were appeared while various normal developmental stages of oocytes were shown in control group. Body weight and Gonadosomatic Index (GSI) of treated carp were also decreased compared to control group. However, no other significant histological changes in liver or kidney were shown in this exposure scheme. This means that reproductive organs are more sensitive than other organs and arsenic may exert endocrine disrupting effect through inhibiting the development of reproductive organ in fish.

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First Record of Japanese Codling, Physiculus japonica Hilgendorf (Moridae, Gadiformes) from Korea

  • Koh Jeong-Rack;Moon Dae-Yeon
    • Fisheries and Aquatic Sciences
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    • v.6 no.2
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    • pp.97-100
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    • 2003
  • The Japanese codling fish, Physiculus japonica (family Moridae) is recorded as new to the Korean fish fauna. The specimen was fished from the South-Eastern waters off Jeju Island, Korea in March 1999. Standard length of the specimen was 343.2 mm, with a thin barbel on ower jaw, 67 soft second dorsal rays, 71 soft anal rays and 12 lateral-line above scales. Identification key of this specimen as P. japonica in the family Moridae was teethless vomer, chin barbel and well-developed black ventral light organ located on the anterior of anus. We give a new Korean name Dol-dae-gu for P. japonica.

Histology of Skin of the Amphibious Fish, Periophthalmus modestus

  • Park, Jong-Young;Kim, Ik-Soo;Kim, So-Young
    • Animal cells and systems
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    • v.4 no.4
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    • pp.315-318
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    • 2000
  • Structure of the skin in amphibious fish, Periophthalmus modestus, was described in relation to cutaneous respiration. The epidermis has no gland cell. The epidermis consists of three regions: outermost layer of one to five layers of flattened epithelial cells, middle layer of swollen epithelial cells instead of glandular cells and stratum germinativum of cuboidal cells. There are numerous blood capillaries in the outermost layer of the epidermis and diffusion distance between the blood of capillaries and the epidermis is about 1.4 Um. The middle layer of the epidermis appears to be a web-like structure due to the swollen epithelial cells. The stratum germinativum has a well-developed lymphatic space containing lymphocytes. There are numerous blood capillaries and elliptical area with acid mucopolysaccharides in stratum laxum of the dermis. The skin of Periophthalmus modestus may be an accessory respiratory organ for oxygen uptake during terrestrial or aquatic life.

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Studies on the Acute Toxicity and Histological Changes in Fish Exposed to Furrural (Furfural 어류급성독성 및 조직병리에 관한 연구)

  • 이철우;최성수;최필선;이상협;이길철;박광식
    • Environmental Analysis Health and Toxicology
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    • v.12 no.3_4
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    • pp.55-59
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    • 1997
  • Furfural, an organic solvent, is widely used as synthetic component material in producing chemical products. However, furfural has been reported that it shows strong toxicities to human being showing intense stimulus to skin, eyes, mucous membrane and nerve system. It is also known to cause anemia, liver cirrhosis, kidney failure and genetic toxicity in the human being working in the exposed area. LD$_{50}$ of furfural for peritoneal injected mouse has been known around 20mg/kg, but the acute toxicity on aquatic organisms such as fish, daphnid or algae are not well known, compared to those on rodents. In this experiment, we studied on the fish toxicity of furfural using Japanese Medaka (Orvzias latipes) and Common Carp (Cvprinus carpio). We also observed histological changes in the fish organs. The LC$_{50}$ were 12. Smg/L in Japanese Medaka and 21.8 mg/L in Common Carp, respectively. When Common Carps were exposed to 120mg/L of furfural concentration for 30 minutes, blood congestion in gills and lysis of secondary lamella were shown. Though the muscle of caudal fin was not completely eroded, its epidermic cells were shown to be necrotic in various parts. Tissue atrophy and cell necrosis were also shown in the liver of Common Carps exposed to furfural. From these results, furfural seems to cause histological damages on liver, an internal organ as well as on external organs such as gills and fins eventhough the fish were exposed for a short-term.

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Toxicity of the Puffer fish, Takifugu xanthopterus (Kkachibok) and Takifugu stictonotus (Kkachilbok) from Coastal Area of Korea (한국 연안산 까치복(Takifugu xanthopterus)과 까칠복(Takifugu stictonotus)의 독성)

  • Kim, Ji-Hoe;Mok, Jong-Soo;Son, Kwang-Tae;Kim, Ju-Gyeong;Jo, Mi-Ra;Kim, Poong-Ho;Lee, Tae-Seek
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.40 no.5
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    • pp.276-281
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    • 2007
  • The toxicity of two species of puffer fish, Takifugu xanthopterus and T. stictonotus, collected from coastal regions of Korea, was determined using a mouse bioassay. The highest toxin scores in the muscle, skin, fins, and testis in both species were below 50 mouse units (MU) per gram, and for each organ of both species the proportion of toxic specimens containing ${\geq}10MU/g$ was less than about 10%. In T. xanthopterus, the highest toxin levels in the liver, gallbladder, and ovary exceeded 1,000 MU/g (1,275-1,910), while less than 200 MU/g (12-136) was detected in the same organs of T. stictonotus. Therefore, the toxicities of muscle, skin, and testis in both species of puffer fish were within acceptable levels for human consumption.

Structure and Histological Characters of the Olfactory Organ in Korean Endemic Fish, Microphysogobio yaluensis (Cypriniformes, Cyprinidae) (돌마자 Microphysogobio yaluensis(Cypriniformes, Cyprinidae) 후각기관의 구조 및 조직학적 특성 연구)

  • Kim, Hyun Tae;Lee, Yong Joo;Kim, Hyeong Su;Park, Jong Young
    • Korean Journal of Ichthyology
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    • v.30 no.3
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    • pp.161-166
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    • 2018
  • The olfactory organ of Korean endemic fish Microphysogobio yaluensis are described anatomically and histologically, focused on relationship to its habitat and ecology. The paired olfactory organs are located at the dorsal snout, and externally consist of two semicircular nostrils and single nasal flap. They internally have rosette structure with 22 to 24 units of lamellae and the raphe inside the olfactory chamber. The lamella is made up of the sensory and the non-sensory epitheliums. The sensory epithelium has olfactory receptor neurons, supporting cells and basal cells whereas the nonsensory epithelium has stratified epithelial cells, ciliated non-sensory cells and mucous cells with acidic and neutral mucins. These structures might be considered that M. yaluensis has the olfactory organ which corresponds to the high sensitivity for its habitat and ecology, and is usable as a taxonomic key.

A Comparative Anatomical and Histological Study of the Olfactory Organ of Amphidromous and Land-locked Sweet Fish, Plecoglossus altivelis(Osmeriformes, Osmeridae), in Seomjingang River System, Korea (섬진강 수계에 출현하는 양측회유성과 육봉형 은어 Plecoglossus altivelis 후각기관의 해부 및 조직학적 구조 비교 연구)

  • Min Jeong Choi;Jong Young Park
    • Korean Journal of Ichthyology
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    • v.36 no.3
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    • pp.230-239
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    • 2024
  • This study was carried out the anatomical and histological investigation of the olfactory organ on a land-locked and an amphidromous Plecoglossus altivelis in Deokam-ri, Shinpyeong-myeon, Imsil-gun, Jeollabuk-do and Daeduk-ri, Gojeon-myeon, Hadong-gun, Gyeongsangnam-do, August, 2021, Korea. The external morphology of the two types of P. altivelis was indistinguishable, featuring a pair of the elliptical anterior nostrils, the semicircular posterior nostrils, and the nasal flaps on the snout. The olfactory organ consisted of 20 to 22 olfactory lamellae forming a rosette structure in the nasal chamber. The secondary folds appeared on the lamellae. The histological results were also uniform. The sensory epithelium was a continuous type, consisting of olfactory receptor neurons, supporting cells, basal cells, cilia, and an unidentified cell. The non-sensory epithelium found only in the terminal part of lamellae, consist of stratified epithelial cells, basal cells, and mucous cells. For the olfactory organ between a land-lock type and an amphidromous type, no difference was observed in external and histological structure between amphidromous and land-locked type. However, it is considered that P. altivelis has higher olfactory sensitivity than other anadromous fish due to more number of olfactory lamellae and the presence of the secondary folds.

The Study on the Experimental Ascite by Edwardsiella tarda in Snakehead (Channa argus) (Edwardsiella tarda에 의해 유발된 가물치 복수증에 관한 연구)

  • LEE Hun-Ku;SEONG Hee-Kyung;PARK Lee-Heon;JO Keug-Rae;KIM Young-Ja
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.23 no.5
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    • pp.353-360
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    • 1990
  • The bacterium Edwardsiella tarda was injected into healthy snakeheads (Channa argus) in order to prove the causative agent of ascite. The bacterium dominantly isolated from 2 cultured ascite snakeheads was injected into fish by the dose of $5\times10^6$ CFU/ 0.25ml, but the same dose of $0.65\%$ physiological saline was injected into the each control. The injected fish was divided into 4 groups such as intraperitoneal, intramuscle, control intra-peritoneal and control intramuscle according to their injection points. Each was composed of 10 healthy snakeheads respectively. Ascites and haemorrhagic ulcers became distinct 5 days after injection, but controls did not show any abnormal symptoms during the experimental period. Edwardsiella tarda was reisalated out of the injected fish's ascite, liver, kidney, spleen and haemorrhagic ulcer on the skin. Regardless of the injecting methods, liver was necrotized more severely than any other internal organ, but both the glomeruli of kidney and spleen were considerably damaged. Necrosis of muscle and a number of leucocytes were observed at the ulcerous region of the intramuscular injected fish. It is concluded that judging from the above results the Edwardsiella tarda is a causative agent to cause ascite in snakehead.

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Effects of dietary lipid sources on apoptotic and immune gene expression in head kidney of olive flounder (Paralichthys olivaceus)

  • Hur, Deokhwe;Lee, Sang-Min;Hong, Suhee
    • Journal of fish pathology
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    • v.25 no.3
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    • pp.199-210
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    • 2012
  • It can be hypothesized that dietary fatty acids can modulate immune responses in fish by inducing apoptosis of immune cells since dietary polyunsaturated fatty acid (PUFA) increase apoptosis by oxygen radicals generated by peroxidation. Thus we examined the effects of deferent dietary lipid sources such as squid liver oil (FO), linseed oil (LO) and soybean oil (SO) on oxidation (Cytochrome C oxidase; COS), apoptosis (TNF-${\alpha}$ Scinderin like) and immune (IL-$1{\beta}$ and NKEF) gene expression in the main immune organ (head kidney) in olive flounder (Paralichthys olivaceus) by Q-PCR analysis after feeding diets containing each oil (5%) for 15 weeks. Linseed oil and soybean oil were chosen to compare n-3 or n-6 enriched vegetable oils, respectively. Consequently, COS, TNF-${\alpha}$ and Scinderin like gene expression was increased in SO group, indicating the induction of oxidation and apoptosis. Meanwhile, no significant difference was found in immune gene expression. In conclusion vegetable oils containing n-3 PUFA like linseed oil seems to be more suitable lipid source than soybean oil for replacement of fish oil in flounder since n-6 PUFA in SO leads to activation of apoptosis pathways within the cellular damage in head kidney.