Background: Continuous intradialytic calf bioimpedance spectroscopy (cBIS) allows assessment of changes in calf extracellular fluid volume (ECV) to determine dry weight (DW) in hemodialysis patients. During dialysis, calf ECV decreases until excessive ECV has been removed and normalized resistivity ρN,5 rises to values comparable to those of a normal population (cBIS-DW). It is not clear whether chronic kidney disease (CKD) itself influences ρN,5 and whether normal values depend on race and ethnicity.
Methods: Therefore, we determined ρN,5 in 2 populations consisting of 35 healthy Caucasians and 37 with CKD in KDIGO stages G2-G4. Calf resistivity was determined using a bioimpedance spectrum analyzer (Xitron Technologies, San Diego, CA, USA) and was normalized for body mass index.
Results: ρN,5 was significantly higher in healthy subjects than in CKD patients (males: 18.2 ± 2.2 vs. 15.0 ± 2.8 × 10-2·Ωm3kg-1, p < 0.001; females: 19.7 ± 3.2 vs. 16.4 ± 3.3 × 10-2·Ωm3kg-1, p = 0.009). ρN,5 in Caucasians was significantly lower than in previously examined North American healthy subjects with prevailing African American race or Hispanic ethnicity (males: 18.2 ± 2.2 vs. 20.5 ± 2.0 × 10-2·Ωm3kg-1, p < 0.001; females: 19.7 ± 3.2 vs. 21.7 ± 2.6 × 10-2·Ωm3kg-1, p = 0.026).
Conclusion: We present the first determination of ρN,5 values in a Caucasian healthy as well as a non-dialysis dependent CKD population. Both groups differ significantly. Due to higher amounts of extracellular water, subclinical fluid overload already occurs in pre-dialysis stages of CKD. ρN,5 in Caucasians differs significantly from previously established normal ranges in other races/ethnicities. Population-based reference ranges should be established and used in the future to determine DW by means of cBIS.
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J Glob Antimicrob Resist
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Institute of Biotechnology, Addis Ababa University, Addis Ababa 1176, Ethiopia.
Escherichia coli of different pathotypes are frequently involved in morbidity and mortality in animals and humans. The study aimed to identify E. coli pathotypes and determine antimicrobial resistance (AMR) profiles in Ethiopian smallholder livestock households.
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Department of Animal Sciences, University of Florida, Gainesville, FL, United States.
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Sports Research Centre, Department of Sport Sciences, Miguel Hernández University, Elche, Avda. de la Universidad s/n, 03202, Alicante, Spain; Institute for Health and Biomedical Research (ISABIAL Foundation), Miguel Hernández University of Elche, Avda. Pintor Baeza 12-Planta 5a Centro de Diagnóstico, 03010, Alicante, Spain.
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Clinical Centre for Ruminant and Camelid Medicine, University of Veterinary Medicine, 1210 Vienna, Austria.
In the field of cattle medicine in Austria, to date, few studies have investigated the presence of methicillin-resistant and extended-spectrum β-lactamase-producing in Austria. For this reason, milk and nasal samples were examined for the presence of methicillin-resistant as well as fecal samples for extended-spectrum cephalosporin-resistant . The nasal and fecal swabs were collected during the veterinary treatment of calf pneumonia and calf diarrhea.
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Cattle are considered resistant to clinical toxoplasmosis and viable Toxoplasma gondii is rarely isolated from bovine tissues. Currently, there is no histologically confirmed case of clinical toxoplasmosis in cattle. Here, the first confirmed case of acute toxoplasmosis in cattle is reported.
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