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      물렁가시붉은새우(Pandalopsis japonica)의 유생 단계에 따른에너지수지 = Energy Budgets of Pandalid Shrimp Pandalopsis japonica Larvae in the Different Larval Stages

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      https://www.riss.kr/link?id=A103873099

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      다국어 초록 (Multilingual Abstract)

      The energy budget of the larvae of pandalid shrimp, Pandalopsis japonica, reared in the laboratory from zoea to post-larva was investigated. Energy used during the growth of the shrimp larvae was calculated daily for feeding, growth, molting, and metabolism.
      The total energy used was 16.2 J for the entire larval stage. Molting energy loss was estimated at a total 1.03 J. Energy used for respiration was estimated at a total of 1.85 J. The intake energy by feeding reached a total of 77.69 J. The total sum of energies used by excretion and egestion was 58.61 J. Larvae assimilated 24.57% of ingested food and used 84.91% for somatic growth. The gross growth efficiency (K1) was 22.19% for the entire larval stage, and the net growth efficiency (K2) was 90.31%. Maintenance costs were estimated at 9.69% of assimilated energy for the entire larval stage.
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      The energy budget of the larvae of pandalid shrimp, Pandalopsis japonica, reared in the laboratory from zoea to post-larva was investigated. Energy used during the growth of the shrimp larvae was calculated daily for feeding, growth, molting, and meta...

      The energy budget of the larvae of pandalid shrimp, Pandalopsis japonica, reared in the laboratory from zoea to post-larva was investigated. Energy used during the growth of the shrimp larvae was calculated daily for feeding, growth, molting, and metabolism.
      The total energy used was 16.2 J for the entire larval stage. Molting energy loss was estimated at a total 1.03 J. Energy used for respiration was estimated at a total of 1.85 J. The intake energy by feeding reached a total of 77.69 J. The total sum of energies used by excretion and egestion was 58.61 J. Larvae assimilated 24.57% of ingested food and used 84.91% for somatic growth. The gross growth efficiency (K1) was 22.19% for the entire larval stage, and the net growth efficiency (K2) was 90.31%. Maintenance costs were estimated at 9.69% of assimilated energy for the entire larval stage.

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      참고문헌 (Reference)

      1 Degani G, "The influence of body size and temperature on oxygen consumption of the European eel, Anguilla anguilla" 34 : 19-24, 1989

      2 McLusky DS, "The effects of temperature on the oxygen consumption and filtration rate of Chlamys (Aequipectem) opercularis (L.) (Bivalvia)" 10 : 141-154, 1973

      3 Fry FEJ, "The effect of environmental factors on the physiology of fish, In Fish Physiology" Academic Press 1-98, 1971

      4 Hartnoll RG, "The control of size variation within instars of a crustacean" 53 : 235-239, 1981

      5 Spanopoulos-Hernandez M, "The combined effects of salinity and temperature on the oxygen consumption of juvenile shrimps Litopenaeus stylirostris (Stimpson, 1874)" 244 : 341-348, 2005

      6 Dawirs RR, "Respiration, energy balance and developmental pattern in growing and starving larvae of Carcinus means L. (Decapoda, Portunidae)" 69 : 105-128, 1983

      7 Ghiretti F, "Respiration, In Physiology of mollusca VOL II" Academic Press 175-208, 1966

      8 Sameoto DD, "Respiration rates, energy budget, and moulting frequency of three species of euphausiids found in the Gulf of St. Lawrence" 23 : 2568-2576, 1976

      9 Beamish FWH, "Respiration of fishes with special emphasis on standard oxygen consumption. II. Influence of weight and temperature on respiration of several species" 42 : 177-188, 1964

      10 Emmerson WD, "Predation and energetica of Penaeus indicus (Decapoda, Penaeidae) larvae feeding on Brachionus plicatilis and Artemia nauplii" 38 : 201-210, 1984

      1 Degani G, "The influence of body size and temperature on oxygen consumption of the European eel, Anguilla anguilla" 34 : 19-24, 1989

      2 McLusky DS, "The effects of temperature on the oxygen consumption and filtration rate of Chlamys (Aequipectem) opercularis (L.) (Bivalvia)" 10 : 141-154, 1973

      3 Fry FEJ, "The effect of environmental factors on the physiology of fish, In Fish Physiology" Academic Press 1-98, 1971

      4 Hartnoll RG, "The control of size variation within instars of a crustacean" 53 : 235-239, 1981

      5 Spanopoulos-Hernandez M, "The combined effects of salinity and temperature on the oxygen consumption of juvenile shrimps Litopenaeus stylirostris (Stimpson, 1874)" 244 : 341-348, 2005

      6 Dawirs RR, "Respiration, energy balance and developmental pattern in growing and starving larvae of Carcinus means L. (Decapoda, Portunidae)" 69 : 105-128, 1983

      7 Ghiretti F, "Respiration, In Physiology of mollusca VOL II" Academic Press 175-208, 1966

      8 Sameoto DD, "Respiration rates, energy budget, and moulting frequency of three species of euphausiids found in the Gulf of St. Lawrence" 23 : 2568-2576, 1976

      9 Beamish FWH, "Respiration of fishes with special emphasis on standard oxygen consumption. II. Influence of weight and temperature on respiration of several species" 42 : 177-188, 1964

      10 Emmerson WD, "Predation and energetica of Penaeus indicus (Decapoda, Penaeidae) larvae feeding on Brachionus plicatilis and Artemia nauplii" 38 : 201-210, 1984

      11 Willows RI, "Population and individual energetics of Ligia oceanic (L.) in the rocky supralittoral (Crustacea, Isopoda)" 105 : 253-274, 1987

      12 Johns DW, "Physiological studies on Cancer irroratus larvae. III. Effects of temperature and salinity on the partitioning of energy resources during development" 8 : 112-121, 1982

      13 Klekowski RZ, "Physiological approach to ecological energetics, In Methods for ecological bioenergetics" Blackwell Scientific 15-64, 1975

      14 Levine DM, "Partitioning and utilization of energy during developments of the xanthid crab, Rhithropanopeus harrisii (Gould)" 40 : 247-257, 1979

      15 Ikeda T, "Nutritional ecology of marine zooplankton" 23 : 1-97, 1974

      16 Emmerson WD, "Ingestion, growth and development of Penaeus indicus larvae as a function of Thalassiosira weissflogii cell concentration" 58 : 65-73, 1980

      17 Johns DM, "Influence of the accommodated fraction of No. 2 fuel oil on energetics of Cancer irroratus larvae" 55 : 247-254, 1980

      18 Stephenson MJ, "Growth, respiration and caloric content of larvae of the prawn, Macrobrachium rosenbergii" 66A : 386-391, 1980

      19 Reeve MR, "Growth, metamorphosis and energy conversion in the larvae of the prawn, Palaemon serratus" 49 : 77-96, 1969

      20 Kim DH, "Growth, Reproduction and Zoea larval Energy Budget of Pandalus hypsinotus" Cheju National University 1995

      21 Jacobi CC, "Growth and respiration during the larval development of Hyas coarctatus(Decapoda, Majidae)" 87 : 173-180, 1985

      22 Kim HY, "Growth and energy budget of opossum shrimp, Neomysis awatchensis" 34 : 594-609, 1991

      23 Kim JK, "Growth and energy budget of Pandalopsis japonica larvae" Gangneung-Wonju National University 2000

      24 Vernberg FJ, "Functional adaption of marine organisms" Academic Press 1-347, 1981

      25 Crisp DJ, "Energy relations of marine invertebrate larvae" 10 : 103-120, 1974

      26 Park KY, "Energy flow of the oriental brown shrimp, Penaeus japonicus reared in the laboratory" Pusan National Fisheries University 1989

      27 Chin P, "Energy budgets for the development stages of Palaemon macrodactylus" 25 : 341-358, 1992

      28 Choi YG, "Energy budget of the Mysis shrimp, Neomysis intermedia reared in the Laboratory" 289-300, 1997

      29 Harms J, "Energy budget for the larval development of Elminius midestus (Crustacea, Cirripedia)" 41 : 45-67, 1987

      30 Cai Y, "Effects of temperature and size on oxygen consumption and ammonia excretion by walleye" 104 : 127-138, 1992

      31 Clutter RI, "Ecological efficiency of a pelagic mysid shrimp: Estimates from growth, energy budget and mortality studies" 69 : 93-115, 1971

      32 Hiroko Y, "Combined influence of temperature and salinity on oxygen consumption of the larvae of the pink shrimp, Palaemon serratus (Pennant) (Crustacea, Decapoda, Palaemonidae)" 86 : 77-92, 1990

      33 Gnaiger E, "Calculation on energetic and biochemical equivalents of respiratory oxygen consumption, In Polarographic oxygen sensors" Springer 337-345, 1983

      34 Mootz CA, "An energy budget for Menippe mercenaria larvae fed Artemia nauplii" 146 : 44-55, 1974

      35 Dabrowski KR, "Active metabolism in larval and juvenile fish: ontogenetic changes, effect of water temperature and fasting" 1 : 125-144, 1986

      36 Logan DT, "A laboratory energy balance for the larvae and juveniles of the American lobster, Homarus americanus" 47 : 381-389, 1978

      37 NFRDI, "A Guide to identification of similar species" 42 (42): 1-71, 2007

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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.47 0.47 0.43
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.43 0.43 0.59 0.17
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