The aim of this study was to describe in more detail the predisposition, natural course, and clinical impact of post-transplantation diabetes mellitus (PTDM) after heart transplantation (HT). The characteristics and clinical outcomes of 54 patients with PTDM were compared with those of 140 patients without PTDM. The mean age of PTDM patients was significantly higher than controls (48.9 ± 9.3 vs 38.6 ± 13.3 yr, respectively, P = 0.001), and ischemic heart disease was a more common indication of HT (20.4% [11/54] vs 7.1% [10/140], respectively, P = 0.008). In multivariate analysis, only recipient age (odds ratio, 1.80; 95% confidence interval, 1.35-2.40; P = 0.001) was associated with PTDM development. In 18 patients (33%), PTDM was reversed during the follow-up period, and the reversal of PTDM was critically dependent on the time taken to develop PTDM (1.9 ± 1.0 months in the reversed group vs 14.5 ± 25.3 months in the maintained group, P = 0.005). The 5-yr incidence of late infection (after 6 months) was higher in the PTDM group than in the control group (30.4% ± 7.1% vs 15.4% ± 3.3%, respectively, P = 0.031). However, the 5-yr overall survival rate was not different (92.9% ± 4.1% vs 85.8% ± 3.2%, respectively, P = 0.220). In conclusion, PTDM after HT is reversible in one-third of patients and is not a critical factor in patient survival after HT.
The purpose of this study is to develop the jellyfish separator system(JSS) for reducing fishery damage by the increase of jellyfish in the sea area of Korea in summer. First of all, to find the optimum structure of a JSS, six types of JSS in trawl fishery were designed and manufactured, the underwater shape of JSS and the separating process by JSS were observed in the circulating water channel(CWC). And the field experiments were carried out in July and September 2004 in the southern sea of Korea. For the moving path of the jellyfish model in the CWC, in case that the model was larger than the mesh size of the separator net, it was guided toward the lower part of the separator net by the guiding net and discharged through the outlet. In case that the model was smaller than the mesh size of the separator net, some models which passed through the upper part of the guiding net were smaller than the mesh size of the guiding net and discharged through the outlet and most of the model which passed through the lower part of the guiding net moved to the codend passing through the separator net. According to the field experiment result, the optimum tilt angle of separator net was inferred 20 that the discharge rate of jellyfish was higher than the other tilt angle of separator net and the optimum structure of JSS was inferred GS type(consists of guiding net and separator net) that the discharge rate of jellyfish was higher than S type(consists of separator net). It was demamded to carry out more study for the countermeasure to reduce loss of fish.
This paper presents size selectivity of dredge bagnet for a clam, equilateral Venus Gomphina melanaegis using cover-netˆshing experiments with test bagnets of four mesh sizes; 24, 30, 41, 47 mm and covernet of 13 mm mesh size. In the master curve analysis process, master curve equation of mesh selectivity for the clam was estimated to be r(R)=1/[1+exp (-8.63R+5.13)], where R is the ratio of shell length to mesh size. Also, size selectivity was estimated, of a sieve with grid of 12.5 mm bar spacing currently used on theˆshing boat deck byˆsher-men to sort larger size clams from smaller ones of no commercial value. Shell width of the 50 percent retention was 12.7 mm, close to 12.5 mm bar spacing of the grid. This means that the size selectivity of the on-deck sieve was a kind of contact selection. Bar spacing of the grid should be enlarged to retain the clams of commercial size over 35 mm shell length on the on-deck sieve. Enlargement in mesh size of bagnet and other methods to avoid catching small clams of no commercial value were also discussed.
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