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Effects of Temperature and Body Size on the Clearance Rates of a Tidal Flat Bivalve, Coecella chinensis (Deshayes)
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  • Effects of Temperature and Body Size on the Clearance Rates of a Tidal Flat Bivalve, Coecella chinensis (Deshayes)
저자명
이창훈,류태권,성찬경,서진영,김기현,최진우,Lee. Chang-Hoon,Ryu. Tae-Kwon,Sung. Chan-Gyoung,Seo. Jin-Young,Kim. Ki-Hyun,Choi. Jin-Woo
간행물명
한국패류학회지
권/호정보
2004년|20권 1호|pp.35-43 (9 pages)
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한국패류학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

To know the effects on temperature and body size on the clearance rate (CR) of a small tidal flat bivalve, Coecella chinensis, laboratory experiments were performed with 20 individuals of different sizes (ranging from 7 to 25 mm) at 3 different temperatures (10, 15, $20^{circ}C$). The relationship between body size and CR was determined by an allometric equation. The CR of C. chinensis varied greatly ranging from 0.003 to 0.103 L/individual/hr. Both temperature and body size affected significantly on the CR of C. chinensis. The CR at $20^{circ}C$was 1.5 times higher than that at $15^{circ}C$ and 2.8 times than $10^{circ}C$. The temperature coefficient ($Q_10$) between 10 and $15^{circ}C$ was higher than that between 15 and $20^{circ}C$, which indicates that C. chinensis changes its CR more rapidly in lower temperature range. As body size increased, the CR increased more than 10-fold at all temperatures. The CR relative to flesh dry weight (FDW) were fitted well to the power function: CR = a ${ imes}$ $(FDW)^b$. The exponent value (b) of the fitted equation ranged from 0.64 to 0.70, which are similar to those of other bivalves. The weight-specific CR ($CR_w$) was still affected by body size (p < 0.05). This implies that smaller individuals require more energy per unit biomass for growth, and the energy requirement for growth decreases as body size increases.