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  • 1995-1999  (2)
  • Keywords Substrate oxidation  (1)
  • exploitation rate  (1)
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  • 1995-1999  (2)
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Keywords
  • 1
    ISSN: 1432-0428
    Keywords: Keywords Substrate oxidation ; energy expenditure ; lipolysis ; ketogenesis ; “dawn” phenomenon.
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Growth hormone (GH) secretion is suppressed during insulin-like growth factor-I (IGF-I) administration. The aim of the study was to examine whether IGF-I alters the metabolic response to a GH pulse. Seven healthy male subjects (age 27 ± 4 years, BMI 21.8 ± 1.7 kg/m2) were treated with NaCl 0.9 % (saline) or IGF-I (8 μg · kg–1· h–1) for 5 days by continuous subcutaneous infusion in a randomized, crossover fashion while receiving an isocaloric diet (30 kcal · kg–1· day–1). On the third treatment day an intravenous bolus of 0.5 U GH was administered. Forearm muscle metabolism was examined by measuring arterialized and deep venous blood samples, forearm blood flow by occlusion plethysmography and substrate oxidation by indirect calorimetry. IGF-I treatment significantly reduced insulin concentrations by 80 % (p 〈 0.02) and C-peptide levels by 78 % (p 〈 0.02), as assessed by area under the curve. Non-esterified fatty acid (NEFA), glycerol and 3-OH-butyrate levels were elevated and alanine concentration decreased. Forearm blood flow rose from 2.10 ± 0.43 (saline) to 2.79 ± 0.37 ml · 100ml–1· min–1 (IGF-I) (p 〈 0.02). GH-pulse: 10 h after i. v. GH injection serum GH peaked at 40.9 ± 7.4 ng/ml. GH did not influence circulating levels of total IGF-I, C-peptide, insulin or glucose, but caused a further increase in NEFA, glycerol and 3-OH-butyrate levels, indicating enhanced lipolysis and ketogenesis. This effect of GH was much more pronounced during IGF-I: NEFA rose from 702 ± 267 (saline) and 885 ± 236 (IGF-I) to 963 ± 215 (saline) (p 〈 0.05) and 1815 ± 586 μmol/l (IGF-I) (p 〈 0.02), respectively; after 5 h, 3-OH-butyrate rose from 242 ± 234 (saline) and 340 ± 280 (IGF-I) to 678 ± 638 (saline) (p 〈 0.02) and 1115 ± 578 μmol/l (IGF-I) (p 〈 0.02) respectively. After injection of GH, forearm uptake of 3-OH-butyrate was markedly elevated only in the subjects treated with IGF-I: from 44 ± 195 to 300 ± 370 after 20 min (p 〈 0.03) and to 287 ± 91 nmol · 100 ml–1· min–1after 120 min (p 〈 0.02). In conclusion, the lipolytic and ketogenic response to GH was grossly enhanced during IGF-I treatment, and utilization of ketone bodies by skeletal muscle was increased. [Diabetologia (1996) 39: 961–969]
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-5117
    Keywords: exploitation rate ; recruitment ; mortality ; growth ; sex ratios
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Monthly length-frequency data of green tiger prawns from April 1985 to August 1990 were analyzed to estimate the von Bertalanffy growth curves and related parameters. The mean asymptotic carapace lengths (L ∞) and growth constants (K) over 5 seasons were 36.6 mm and 1.6 yr−1 for males and 51.2 mm and 1.7 yr−1 for females, respectively. Annual total mortality rates (Z) from 1985/86 to 1989/90 ranged from 2.7 to 6.5 yr−1 for males and from 2.8 to 6.8 yr−1 1 for females. The mean exploitation rates calculated using the mean natural mortality rates (M) of 2.5 yr−1 for males and 2.4 yr−1 for females showed that the male green tiger prawns in Kuwait waters were under exploited, whereas the catch of females was very close to the sustainable yield. Chi-square tests indicated that the sex ratio was close to one for adults (CL ≽ 26 mm), but significantly favoured males for recruits (CL 〈 26 mm). A major recruitment was detected from June/July in all seasons and a minor recruitment in some seasons in August/September. The relative yield-per-recruit (Y'/R) reached the optimum at the length-at-first capture (L c) of 25 mm CL for males, and increased as L c increased for females. The observed mean L c, values were 23.4 mm for both males and females. The Y'/R under the current exploitation level is close to the maximum sustainable yield for females, but lower for males. More fishing effort could be exerted to exploit males, but doing so may not be biologically or commercially possible with current trawling practices.
    Type of Medium: Electronic Resource
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