• Title/Summary/Keyword: 체장 측정

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Fish length dependance of acoustic target strength for large yellow croaker (부세에 대한 음향반사강도의 체장 의존성)

  • 강희영;이대재
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.39 no.3
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    • pp.239-248
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    • 2003
  • This paper was conducted as an attempt in order to construct the data bank of target strength for acoustic estimation of fish length in the coastal waters of Korea. The fish length dependence of acoustic target strength for 13 large yellow croakers (Pseudosciaena crocea) at 75 kHz was investigated and the prediction of the target strength by using the Kirchhoff-Ray Mode model (KRM model) was compared with target strength measurements. The results obtained are summarized as follows; 1. In the averaged target strength pattern for 13 large yellow croakers the maximum target strength was -35.13 dB at $-13.35^{\circ}$ on a tilted angle. 2. The relationship between fork length(L, cm) and averaged target strength(TS, dB) was expressed as follows; TS=23. 76log (L) -73.45 (r=0.47) TS=20log(L) -67.35 From this result, the conversion coefficient was -73.45 dB and 6.1 dB lower than the coefficient -67.35 dB where the value of the slope of the regression equation is forced to be 20. 3. Averaged target strength and a length conversion coefficient derived from a target strength histogram for 13 large yellow croakers of mean length 25.59 cm were -41.23 dB, -69.72 dB, respectively. 4. In the range of $$2;{\ll} L (fish length /{\lambda}(wave length);{\ll}40$$, the prediction of the averaged target strength by the KRM model increased gradually with the increasing of $L/{\lambda}$ and was lower than the measured target strength.

Calculation and Applicability of Rotifers Biomass (Polyarthra spp.) based on Length-Weight Relationship and Spatial Distribution of Body Length (윤충류 생체량 계산과 적용에 관한 고찰 및 제언: Polyarthra의 체장 분포를 이용한 길이-무게 관계식 및 생체량 비교 분석)

  • Oh, Hye-Ji;Seo, Dong-Hwan;Choi, Moonjung;Jeong, Hyun-Gi;Kim, Hyun-Woo;Oh, Jong Min;Chang, Kwang-Hyeon
    • Korean Journal of Ecology and Environment
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    • v.51 no.3
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    • pp.205-211
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    • 2018
  • In this study, we estimated the applicability of length-weight relationship-based biomass calculations by comparison of body length of genus Polyarthra collected from different habitats. Through the comparison, we also tested availability of representative species-specific biomass value of Polyarthra which is often used without length measurement. Polyarthra samples were collected from rivers (Han River and Nakdong River) and reservoir (Paldang Reservoir), and the body length was measured for statistical comparison among habitats and biomass calculations using different equations suggested previously. According to the results, the body length of Polyarthra spp. was significantly different among sampling sites, and the necessity of body length measurement for rotifer species in each situation has been suggested rather than using the representative biomass values which is fixed without considering time and space. Comparison of suggested biomass calculations based on our measured Polyarthra body length, the equation suggested by McCauley showed more reasonable range of biomass values than that suggested by EPA. In addition, in order to calculate more accurate biomass, it is necessary to measure the body length of rotifers, at least more than 44 individuals to reduce error probability to less than 5% with 99% probability. However, since direct measurement of rotifers biomass is limited, it is considered that further analyses are required for more precise application of rotifer biomass of which has high variability due to complex morphologies and species-specific cyclomorphosis often induced by biotic and abiotic factors in the habitats.

A Study on the Automation of Fish Species Identification and Body Length Measurement System (어종 인식 및 체장 측정 자동화 시스템에 관한 연구)

  • Seung-Beom Kang;Seung-Gyu Kim;Sae-Yong Park;Tae-ho Im
    • Journal of Internet Computing and Services
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    • v.25 no.1
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    • pp.17-27
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    • 2024
  • Overfishing, climate change, and competitive fishing have led to a continuous decline in fishery production. To address these issues, the Total Allowable Catch (TAC) system has been established, which sets annual catch quotas for individual fish species and allows fishing only within those limits. As part of the TAC system, land-based investigators measure the length and height of fish species at auction markets to calculate the weight and TAC depletion. However, the accuracy of the acquired data varies depending on the skill level of the land-based investigators, and the labor-intensive nature of the work makes it unsustainable. To address these issues, this paper proposes a fish species recognition and length measurement system that automatically measures the length, height, and weight of eight TAC-managed fish species using the camera of a smart pad that can measure the distance to the water surface. This system can help to automate the current labor-intensive work, minimize data loss, and facilitate the establishment of the TAC system.

Ultrasonic Target Strength of Cyprinus Carpio in Accordance with Body Length and Body Weight (이스라엘 잉어 Cyprinus Carpio의 체장 , 체중별 초음파 표적강도에 관한 연구)

  • Shin, Hyoung-Ho;Yoon, Gab-Dong;Park, Hae-Hoon
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.25 no.4
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    • pp.191-199
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    • 1989
  • Research on the acoustic properties of fish has been carried out by a number of scientific workers from the earliest days of applying acoustic techniques to fish biomass estimates. This paper describes measurements of the target strength of Cyprinus Carpio, which measurements made at 50KHz in the experimental water tank. The results obtained are as follows: 1. The target strength(dB) of the fish has a directivity pattern quite similar to that of a transducer. The maximum value of target strength(dB) is obtained when the fish is insonified to its head-tail axis either from the dorsal or from the ventral side. 2. Empirical relationship between target strength(dB) and body length(cm) of the fish can be estimated as TS=20 Log L-65.4 where TS is the target strength of the fish and L is the body length of the fish. 3. The relationship between target strength(dB) and body weight(g) of the fish can be estimated as TS=6.7 Log W-53.7 where W is body weight of the fish.

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Measurement and Comparison of Morphology of Developmental Stages of Chestnut Weevil, Curculio sikkimensis(Coleoptera: Curculionidae) (밤바구미 (Curculio sikkimensis)의 발육단계별 형태측정 및 비교)

  • Kim, Young-Jae;Moon, Sang-Rae;Yoon, Chang-Mann;Kim, Gil-Hah
    • Korean journal of applied entomology
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    • v.49 no.1
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    • pp.11-16
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    • 2010
  • Measurements were made on morphology of each developmental stages of the chestnut weevil, Curculio sikkimensis, reared in the laboratory and field from 2003 to 2006. The size of egg was 0.8${\pm}$0.03 mm. The escaping larvae were measured, in average, as 98 mg in body weight, 10.65 and 3.99 mm in body length and width, and 1.70 mm in head width. Pupal size of female and male was 7.01 and 6.53 mm, respectively. The fresh weight (0.343 g), body length (7.76 mm) and width (3.38 mm), and head width (1.60 mm) of female adults were significantly bigger than those (0.268 g, 7.14 mm, 3.01 mm and 1.37 mm, respectively) of male adults. Proboscis length (6.53 mm) and antennal length (5.47 mm) of female was also significantly longer than those (3.56 and 4.63 mm, respectively) of male. The larvae of C. sikkimensis overwintered for 1~3 years and their body weight, body length, and body width were decreased. The ratio between proboscis length and body length, the basipodite position attached to the proboscis, and shape of the sex organ on the abdominal end could be used to discriminate sexes.

Growth and Energv Budget of Opossum Shrimp, Neomysis awatschensis (Neomysis awatschensis의 성장과 에너지 수지)

  • Kim, Heung-Yun;Chin, Pyung
    • The Korean Journal of Zoology
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    • v.34 no.4
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    • pp.594-609
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    • 1991
  • 연안 천해에 서식하는 반부유성 갑각류인 감eomysis awatschensis를 수온 16$^{\circ}C$$25^{\circ}C$에서 Anemiusalina유생을 먹이로 공급하며 사육하면서 성장과 탈피에 미치는 수온의 영향을 조사, 성장, 탈피, 생식 및 호흡에 쓰인 에너지량과 체를필의 화학적 조성 및 에너지 함량을 측정한 자료로부터 개체의 사용 에너지 수지를 계산하였다. N. awatschensis 자웅의 총평균 체장성장율은 16$^{\circ}C$에서 0.08 mm/day, $25^{\circ}C$에서는 0.12maydaY였다. 수온은 동물의 각 탈피간 체장증가 백분율(growth factor)에는 영향을 미치지 않았으나 탈피기간에는 뚜렷한 영향을 나타내었다. 암컷의 체장별 각 탈피간 체장증가율은 수컷에 비하여 평균 3oye 정도 높았다. 성장과 탈피에 사용하는 평균 에너지는 각각 5.55 cal/mg X (건중, mg) 및 0.337 col/mg X (건중, mg)이였다. 난 1개의 에너지 함량은 0,057 cal이고, 암컷이 생식에 사용하는 에너지는 체장별 포란수와 관련되었다. 호흡계수는 4.5 col/ml 02였고, 회분비방법에 의한 동화효율은 70.9%였다. N. owotschensis의 총사용 에너지 중 성장에 사용하는 에너지는 갑각류의 다른 종에 비하여 높았다.

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STUDIES ON THE FISHERY BIOLOGY OF THE PACIFIC SAURY, COLOLABIS SAIRA OF THE EAST COAST OF KOREA 2. Migration (꽁치의 어업생물학적 연구 2. 회유)

  • KIM Ki-Joo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.6 no.1_2
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    • pp.49-57
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    • 1973
  • Based on the fork length data of 1960 and on the fishery statistical data of 1968, 1970 and 1971, a research was made on the migration of the Pacific saury in the waters off the eastern coast of Korea. The population is divided into four groups in terms of size as shown in Fig. 5. The four groups demonstrate more or less different pattern of migration, both temporally and spatially. Northward migration is brought out in order of size, i. e., the smaller move northward earlier than the larger do, and the order is reverse in the case of southward migration. The migration routes of each size group are presented in Fig. 8. Whether the fish takes its course to the north or the south, its distribution centroid within the fishing grounds is traced in general following the line between $130^{\circ}$ and $130^{\circ}$130^{\circ$x. long., although longitudinally a pronounced annual bias is found in its month position. The moving pattern of the distribution centroid is assumed to be related with the abundance of each group to a considerable extent.

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A Study on the Growth of Pacific Ocean Perch, Sebastes alutus Gilbert, in the Gulf of Alaska (알라스카만산 적어, Sebastes alutus Gilbert의 성장에 관한 연구)

  • ZHANG Chang Ik
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.14 no.3
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    • pp.171-178
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    • 1981
  • The growth of Sebastes alutus was studied by scale reading to check the change of growth rate at the early stage of life. Lee's phenomenon was recognized on the scale measurements except thc first ring radius. No evidence was found to support the change of growth rate at early stage. Von Bert-alanffy's growth equation was estimated with the back-calculated fork lengths, $1_t=357.8(1-e^{-0.6124(t+1.8566)}),\;and\;W_{\infty}=784.4g$

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Acoustic Target Strength of the Pelagic Fish in the Southern Waters of Korea I. In situ Measurement of Target Strength of Anchovy (Engraulis japonica) (한국 남해안 부어류의 음향반사강도에 관한 연구 I. 멸치 (Engraulis japonica)의 in situ 반사강도 측정)

  • YOON Gab Dong;KIM Zang Geun;CHOI Young Min
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.29 no.1
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    • pp.107-114
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    • 1996
  • The in situ target strength for the anchovy (Engraulis japonica) were measured by the split beam echo sounder system at 38 kHz. This study allowed us to detect the single echos from anchovy shoals which were dispersed during trawling operation in day time. The results of our study were as fellows: We found that the anchouy occupied about $95\%$ of the total catch from the detected shoals from which target strength data were collected. Length distribution of anchovy showed a mode and ranged from 13.6 to 15.4cm with a mean of 14.4cm and a standard deviation of 0.45cm, and weight distribution showed a mode and ranged from 16 to 28 g witha mean of 21.9 g and a standard deviation of 2.7 g. The target strength distribution of anchovy ranged from -40.7 dB to -69.2 dB in the water layer of ,$10\~30\;m$ -42.19 to -67.7 dB in the $30\~50\;m$ and -42.2 to -67.7 dB in $10\~50\;m$, showing 2 modes in each layer, respectively. Overall mean target strengths were -49.7 dB/fish and -33.1 dB/kg, averaged by area backscattering cross section $(\sigma)$, and the confidence interval for target strength was less than 1 dB. With the mean total length and the mean target strength, we drived the target strength-length relationship as $TS(\sigma)=20\;Log\;L-72.9$.

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