• Title/Summary/Keyword: Juvenile development

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Evaluation of Dietary Essentality of Ten Vitamins for Juvenile Black Rockfish (Sebastes schlegeli)

  • Lee, Hae-Young;Cho, Kee-Chae
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2000.05a
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    • pp.261-262
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    • 2000
  • Juvenile black rockfish, Sebastes schlegeli is an important commercial species along the coast of Republic of Korea. The black rockfish possesse some desirable characteristics for aquaculture including tolerance to cold water and handling, and receptivity to induced spawning in captivity. (omitted)

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The Larvae and Juvenile Development of Haddock, Melanogrammus aeglefinus Cultured in Atlantic Canada (Atlantic Canada 해산어 Haddock, Melanogrammus aeglefinus의 자치어 발생 단계)

  • Kim Chi-Hong;Im Jae Hyun;Johnson Stewart C;Hur Jun Wook;Park In-Seok
    • Development and Reproduction
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    • v.8 no.1
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    • pp.11-17
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    • 2004
  • The larvae and juvenile development of haddock Melanogrammus aeglefinus which is significant commercial fish living north Atlantic Ocean are described here. Larvae were reared in laboratory and sampled periodically for developmental study until 67 days after hatching. An increase in total length(TL) of fish indicated continuous growth, described by the growth expression Y=4.07 $e^{0.037}$( $R^{2}$=0.9978). The newly hatched pre-larvae was 4.9 mm in TL with ellipsoid yolk. In 16 days after hatching, larvae attained 6.8 mm in TL, and absorbed the yolk completely to become post-larval stage, but first heterotrophic food could be in 7 days after hatching already. Post-larval stage continued during 16~52 days after hatching with development of organs attachment. In 61 days after hatching with 41.3 mm in TL, the fries became a juvenile stage respectively having small teed lateral line, and a black blotch on the flank same as adults, but chin barbel was not developed yet. It was presumed that haddock changed food and ecological behavior after metamorphosis ken this time.e.

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Genetical identification and morphological description of the larvae and juveniles of Porocottus leptosomus (Pisces: Cottidae) from Korea

  • Shin, Ui Cheol;Jeong, Yeon Kyu;Yoon, Sang Chul;Choi, Kwang Ho;Kim, Jin-Koo
    • Fisheries and Aquatic Sciences
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    • v.21 no.12
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    • pp.37.1-37.10
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    • 2018
  • The larvae and juveniles of Porocottus leptosomus belonging to the family Cottidae were collected (n = 95, 3.9-16.5 mm in body length, BL) from Busan, Korea, in March 2015. The larvae and juvenile were identified using DNA barcoding as P. leptosomus, and their morphological description was presented in detail. The yolk-sac larvae (3.9-5.6 mm BL) body was slightly compressed, the head was large, the eye was round and large, and the anus was before the middle of the body. The preflexion larvae (5.2-10.0 mm BL) body length drastically increased; caudal fin rays began to occur. The flexion larvae (9.4-11.8 mm BL) notochord flexion started; dorsal, pectoral, and anal fin rays began to occur; pelvic fin buds are seen; they possessed a pair of parietal spine; and a pair of supraocular cirri was first to develop. At 12 mm BL, the notochord was completely flexed. The larva stage (3.9-12.6 mm SL) had the stellate melanophores in the head, isthmus, gut, and tail (along to the ventral midline). During the juvenile stage (11.4-16.5 mm BL), melanophores covered the head and began to form five black bands on the side of the body. The larvae of P. leptosomus spent pelagic life, but moved to the bottom during the juvenile stage. The larvae and juveniles of P. leptosomus differ from other cottid larval fishes by body shape, melanophore head pattern, and spine development. P. leptosomus can be distinguished from Porocottus allisi by morphological development and the occurrence of larval fish: preopercular spine development, melanophore pattern, and caudal fin development.

Osteological Development of the Larvae and Juvenile of Trident Goby, Tridentiger obscurus

  • Hwang, Seon-Yeong;Park, Jae-Min;Lee, Sung-Hun;Han, Kyeong-Ho
    • Development and Reproduction
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    • v.22 no.3
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    • pp.205-212
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    • 2018
  • This study is to observe the developmental process of the larval skeleton according to the growth of the trident goby, Tridentiger obscurus belonging to the larvae and juveniles and use it as the basic data of the taxonomic study. 8 days after hatching, the parasphenoid was ossified with an average total length of 3.62 mm, and basioccipital began to ossify. Caudal vertebrae and neural spine ossified in vertebra. 17 days after hatching, the average total length of the long hairs was 4.32 mm, pterotic and epiotic were ossified, and interhyal and subopercle were ossified. 52 days after hatching, the average total length of the juvenile was 18.2 mm, and lateral ethmoid, hypohyal ossified, vertebrae were parapophysis, and epural bone was osseous to the bone.

State of Optimal Rearing Technique on the Abalone (Haliotis discus hannai) Juvenile (참전복 치패의 최적사육 기술현황)

  • Son, Maeng-Hyun;Lee, Jung-Uie;Park, Min-Woo;Lim, Han-Kyu;Kim, Dae-Jung;Hwang, Hyung-Gue
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.42 no.6
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    • pp.621-627
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    • 2009
  • In order to standardize the juvenile abalone rearing technique, we selected sample farms by region in East, West and South coasts of Korea and Jeju island. We also have reviewed previous literature and visited farms to survey on the management of abalone juvenile production, spawning, hatching and so forth. Results of investigation are as follows: The light colors of tanks for larvae breeding are good for a frequent examination of larvae behaviour changes during the breeding period. The tank for the abalone juvenile production is a rectangular form in general and its size should amount to 3.5 m in length and 1.2 m width. It also should be built with proper drainage. The best age and size of adult for juvenile production are 3-6 years old individuals, with 9-12 cm separate burial and 125-150 g average weight. To induce spawning, the use of the exposure on air and ultraviolet ray together was the most effective. The density of larvae by plate should be 150-300 individuals and the proper stocking density was est imated and amount to 10-30 individuals. It has been shown that a correlation between water surface size($X_1$) and number of plates ($Y_1$), when producing abalone juveniles, is quite high and it is described by equation $Y_1=138.88X_1-5,736.8\;(R^2=0.9028)$. In addition, it has also been shown that a correlation between production of abalone juveniles ($Y_2$) and number of plates ($X_2$) is high and it is described by equation $Y_2=4.554X_2+12,493\;(R^2=0.8818)$. In Jindo region where a mass production of juveniles abalone has been done, it was shown, that a correlation between rearing water surface size ($X_3$) and production of juveniles abalone ($Y_3$) is very high and this relationship was described by the equation $Y_3=747.03X_2+94,359(R^2=0.9809)$. It has also been shown that a correlation between water surface size ($X_4$) and production of abalone juveniles ($Y_4$) in nationwide is high and the relationship between this variables was described by equation $Y_4=635.85X_4+99,923\;(R^2=0.9020)$.

Micro Structural Changes in Juvenile and Matured Wood of Populus tomentiglandulosa T. Lee

  • Lu, Sun;Ahmed, Sheikh Ali;Chong, Song-Ho
    • Journal of the Korea Furniture Society
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    • v.17 no.3
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    • pp.29-36
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    • 2006
  • Juvenile and matured wood of Populus tomentiglandulosa species of Salicaceae native grown in Korea was observed by FE-SEM and optical microscope. Species is characterized by mostly diffuse-porous, simple perforation plates, polygonal alternate non-vestured intervessel pit, medium length of vessel elements and fibres, non-septate very thin walled libriform fibres and exclusively uniseriate procumbent rays. Axial parenchyma was absent or extremely rare. Vessel and fibre length were longer in both matured and juvenile latewood than those of earlywood. Ray cell lumen diameter, ray length, number and diameter of endwall pit in ray cell, endwall pit, number and diameter of pit in lateral wall of one ray parenchyma cell, vessel ray pit number and diameter vary from juvenile early and latewood to matured wood.

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Morphological Development of Eggs, Larvae and Juveniles of the Misgrunus anguillicaudatus (Cypriniformes: Cobitidae) (미꾸리 Misgrunus anguillicaudatus (Cypriniformes: Cobitidae)의 난발생 및 자치어 형태발달)

  • Park, Jae-Min;Yoo, Dong-Jae;Son, Jun-Hyeok;Han, Kyeong-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.55 no.1
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    • pp.23-29
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    • 2022
  • This study was carried out to clarify the egg, larvae and juveniles development of Misgurnus anguillicaudatus, and relationships of M. anguillicaudatus and M. mizolepis, Cobitididae Fishes. The adult fishes were collected in Samsan-cheon, Haenam-gun, Jeollanam-do, Korea and their spawning inducement was carried by ovaprim injections. The egg shape was circular and the size was average 1.12 mm. The eggs were hatched at 61 to 72 h after fertilization. The newly hatched larvae had an average 3.23 mm in total length (TL). At 5 days after hatching, the larvae reached to post larval stage and they were 10.3 mm in TL. At 19 days after hatching, it reached to juvenile stage and was 25.3 mm in TL. The egg size of M. anguillicaudatus was almost same as M. mizolepis but the hatching period of M. anguillicaudatus has taken longer. It was possible for interspecific distinguishability of M. anguillicaudatus and M. mizolepis when their larvae reached to juvenile stage by the development of keel-like ridges.

The Gonadal Development and Sex Differentiation in the Spotted Sea Bass, Lateolabrax maculatus (점농어, Lateolabrax maculatus의 생식소 발달과 성분화)

  • 이원교;곽은주;양석우;김정우
    • Development and Reproduction
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    • v.4 no.2
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    • pp.195-201
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    • 2000
  • Sex differentiation process of the spotted sea bass, Lateolabrax maculatus, was investigated by histological method. The fish samples were collected from just after hatching to 365 days later. The primordial germ cells and genital ridge were appeared separately hanging under air bladder in 30-day larva (total length: 11.7~13.2 mm), and were unified into the undifferentiated gonads in 40-day larva (12.5~14.0 mm). The ovarian differentiation was started in 60-day juvenile (23.6~27.0 mm). The somatic tissues were elongated in tip of both ends of undifferentiated gonad and were fused each other. The complete ovarian cavity was appeared in 80-days juvenile(33.1~42.5 mm). The testicular differentiation was initiated in 70-day juvenile (24.8~31.6 mm). The rudiment of sperm duct was appeared in the center of the undifferentiated gonad. The meiosis of germ cells in the ovary was started in 168-day juvenile (88.0~115.4 mm). In 287-day juvenile (175.1~233.6 mm), the ovary was filled with both of chromatin stage and perinucleolus stage oocytes. The meiosis of male germ cells was started in 245-day juvenile (124.4~168.3 mm). However, the seminiferous tubules of testis were filled with numerous sperm in 365-day juvenile (162.5~253.8 mm). The sex ratio of male and female was 1:1.38. Considering these results, the spotted sea bass was showed differentiated type in sex differentiation and gonochorism in sexuality.

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Morphological Development and Reproductive Behavior of Hedgehog Seahorse Hippocampus spinosissimus (Teleostei: Syngnathidae) (Hedgehog Seahorse (Hippocampus spinosissimus)의 산출습성 및 형태발달)

  • KANG Su Youn;KOH Jeong Rack;JEONG Seung Beom;KIM Suam
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.38 no.5
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    • pp.298-303
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    • 2005
  • This study described the reproductive behavior and the morphological development of the larvae and juvenile of the hedgehog seahorse (Hippocampus spinosissimus). Larvae released from male seahorse were reared for 30 days in the laboratory. At the birth, the small flap-like mouth and anus of the yolk-sac larvae were open, and the yolk was completely absorbed within 1 day. The size of newborn larvae ranged 7.01-13.19mm (mean $9.26\pm1.9mm$, n=9) in TL (total length). The larvae had 15-16 pectoral fin rays and 19 dorsal fin rays, but 4 anal fin rays were not completely developed. The larval size ranged 13.38-14.38 mm (mean $13.96\pm0.3mm$, n=6) in TL at 1 day after release, and they had 17 pectoral fin rays, 20 dorsal fin rays and 4 anal fin rays when the larvae reached the juvenile stage. Juvenile size ranged 14.98-16.42mm (mean $15.84\pm0.5mm$, n=5) in TL at 3 days after release, and 1, 4, 6, 8 trunk spines extended quickly. Terminal part of the coronet became a four-forked wedge shape concurrently. Juvenile became 23.25mm (n=l) in TL after 15 days and all 11 trunk rings was connected completely. After 20 days, the juveniles were 24.66-28.65mm (mean $27.26\pm1.6mm$, n=5) in TL, and many melanophores appeared in integument. In the eye lenses, 5-6 lusters were formed. After 30 days, the juveniles were 26.78-28.26 mm (mean $27.36\pm0mm$, n=4)in TL and 8-9 lusters appeared on the eye lenses. Coronet terminal part developed to a five-forked crown-shape completely.

Police Diversion Program Active Plan For Juvenile Delinquency Repeat Prevention (청소년 범죄 재범방지를 위한 경찰 다이버전 프로그램 활성화 방안)

  • Park, Eun-Min;Choi, Jin-A
    • The Journal of the Korea Contents Association
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    • v.11 no.6
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    • pp.311-325
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    • 2011
  • The juvenile delinquency starts from trivial misconduct and reoccurs with the second offense. It is necessary the active plan to reduce the juvenile delinquency. The most important thing in processing the case of law breaking juveniles is to focus on the guidance process rather than punishment process in order encourage them to come back to society as normal members. In this process, I propose the specialist activation, the appropriate confrontation for the first criminals, the necessity for parents education, the mentor's activation, the program development to reduce the juvenile delinquency's second offense rate.