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K Demuth

Publications and source records attributed to K Demuth.

24 records · Page 2Linked to original sources

Subject, topic and Sesotho passive.

Counter to findings in English, German and Hebrew, recent acquisition studies have shown that the passive is acquired early in several non-Indo-European languages. In an attempt to explain this phenomenon, this paper addresses certain typological phenomena which influence the early acquisition of passives in Sesotho, a southern Bantu language. After outlining the structure of the Sesotho passive and its syntactic and discourse functions, I examine Sesotho-speaking children's spontaneous use of passives, showing that the acquisition of passives in Sesotho is closely linked to the fact that Sesotho subjects must be discourse topics. I conclude that a detailed examination of how passive constructions interact with other components of a given linguistic system is critical for developing a coherent and universally applicable theory of how passives are acquired.

Child, Preschool↗

Association between plasma homocysteine concentrations and cardiac hypertrophy in end-stage renal disease.

In patients with end-stage renal disease, plasma homocysteine and cardiac mass are both increased and considered independent risk predictors for cardiovascular-specific morbidity and mortality. In order to establish a relationship between these two parameters, we determined cardiac mass and plasma homocysteine in 75 patients with end-stage renal disease undergoing chronic hemodialysis. We observed a statistically significant positive association between plasma homocysteine and cardiac mass index or either of its components. This was observed even after adjustment for age, sex, systolic blood pressure and hematocrit (p = 0.0027). The adjusted odds ratio for left ventricular hypertrophy was 6.6 (95% confidence interval 1.3-32.8) for subjects with the highest versus the lowest plasma homocysteine concentrations. This cross-sectional study is the first to show a statistical link between plasma homocysteine and cardiac structure, independently of mechanical factors. High plasma homocysteine concentrations are associated with an increased adjusted risk of left ventricular hypertrophy in end-stage renal disease patients.

Blood Pressure↗

[Plasma homocysteine measurement: a study of pre-analytical variation factors for conditions for total plasma homocysteine concentration].

An increase in homocysteine, a sulphur amino acid, is nowdays considered as a risk factor for cardiovascular diseases, and is independent of other risk factors. Reference range for total plasma homocysteine level in adults is usually 5-15 mmol/l. Hyperhomocysteinemia is defined as a fasting total plasma homocysteine level > 15 mmol/l. There may be also graded increased risks for subjects with homocysteinemia from 10 to 15 mmol/l. However, no threshold has been defined, partly because of the lack of standardization in pre-analytical and analytical steps. The aim of the present work was to evaluate three pre-analytical parameters on plasma homocysteine levels: i) the influence of three anticoagulants (EDTA, sodium citrate and lithium heparin); ii) the delay period of blood sample on ice before centrifugation; and iii) the advantages of strong acidic citrate at room temperature. The mean concentrations of total plasma homocysteine were different in function of the anticoagulant. These differences (EDTA minus lithium heparin or EDTA minus sodium citrate) were less than 10% however the used methods and could explain the good correlation between the results. However we recommend to keep the anticoagulant constant in the same study. When EDTA blood samples were immediately put on crushed ice, the maximum delay period before centrifugation could reach 4 hours. If ice is unavailable, strong acidic citrate at room temperature is a good alternative until for 4 hours.

Anticoagulants↗

[Comparison of plasma total homocysteine determinations in 9 French hospital laboratories by using 6 different methods].

A lot of methods are now available for total plasma homocysteine (tHcy) determination. Commercial kits using immunoassay, easier to use, begin to supplant in-house laboratory methods. Our aim is to evaluate the interchangeability of tHcy measurements in 9 French hospital laboratories. Six different method types were used: 2 gas chromatography-mass spectrometry (GC-MS), 2 HPLC with fluorescence detection subdivided in one in-house method and one commercial kit (Bio-Rad ), 3 fluorescence polarization immunoassays (FPIA), 1 enzyme immunoassay, 1 amino acid analyser, 1 capillary electrophoresis coupled with laser-induced fluorescence detection (EC-LIF). Each laboratory analysed 41 patient's plasma samples in which 8 samples contained added homocystine. Results were analysed for imprecision, recovery, and methodological differences. The mean among-laboratory imprecision (CV) ranged from 12.5 to 18% in function of plasma sample type and was identical to the mean among-method variation. In terms of recovery, we obtained underestimated results with immunoassays. The bias relative to the GC-MS method was less than 12.5% except for two laboratories, one using FPIA assay and the other EC-LIF. In conclusion, the interchangeability of tHcy results between laboratories is not satisfactory and does not allow us to evaluate cardiovascular risk linked to moderate increases of tHcy.

Blood Chemical Analysis↗