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Haemodynamics Imaging of Swine Segmental Kidney Artery Using Duplex Doppler Technique

INTRODUCTION: The aim of the study was to assess the usefulness of duplex Doppler to objectify swine renal arterial flow in physiological conditions. The pig kidney was selected for its morphological similarities to the human and for the results therefore offering data to wider research. MATERIAL AN...

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Autores principales: Aleksiewicz, Roman, Lutnicki, Krzysztof, Bojarski, Marcin, Al-Mutari, Ilona, Bocheńska, Aneta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sciendo 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6598193/
https://www.ncbi.nlm.nih.gov/pubmed/31276066
http://dx.doi.org/10.2478/jvetres-2019-0036
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author Aleksiewicz, Roman
Lutnicki, Krzysztof
Bojarski, Marcin
Al-Mutari, Ilona
Bocheńska, Aneta
author_facet Aleksiewicz, Roman
Lutnicki, Krzysztof
Bojarski, Marcin
Al-Mutari, Ilona
Bocheńska, Aneta
author_sort Aleksiewicz, Roman
collection PubMed
description INTRODUCTION: The aim of the study was to assess the usefulness of duplex Doppler to objectify swine renal arterial flow in physiological conditions. The pig kidney was selected for its morphological similarities to the human and for the results therefore offering data to wider research. MATERIAL AND METHODS: Six White Large x Landrace sows, of 48.5–53 kg b.w. were used. Vascular flow parameters were acquired with a convex probe USG device with a duplex Doppler function using pulsed waves (frequency range of 5–7.5 MHz). Segmental kidney arterial flow was measured. RESULTS: The RI values were within the 0.57 (min) to 0.6 (max) range, x (RI) was 0.58 (±0.014), and the SD(2)value was 0.0002. The PI index values ranged from 1.21 (min) to 1.3 (max), and x (PI) was 1.24 (±0.035). The value of SD(2)was 0.00123. In the S/D index, the results fell between 2.2 (min) and 2.49 (max), with x (S/D) of 2.29 (±0.117). The value of variance SD(2)was 0.0139. A double analysis of correlation between indices showed this to be almost certain and highly positive as confirmed by high correlation coefficients: r (RI & PI) 0.857, rho (RI & PI) 0.739, r (RI & S/D) 0.930, rho (RI & S/D) 0.941, r (PI & S/D) 0.913, and rho (PI & S/D) 0.754. The segmental kidney arterial flow spectrum evinced falls in PSV and PSV/LDV ratio, also noticed in the filling of the spectral window, comparing the renal to an interlobar artery. CONCLUSION: Swine were selected because of renal anatomical and haemodynamic similarity to humans. The most relevant values and indices approximated those in humans. The study anaesthetic protocol had a minor influence on the average RI, PI, and S/D indices.
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spelling pubmed-65981932019-07-02 Haemodynamics Imaging of Swine Segmental Kidney Artery Using Duplex Doppler Technique Aleksiewicz, Roman Lutnicki, Krzysztof Bojarski, Marcin Al-Mutari, Ilona Bocheńska, Aneta J Vet Res Research Article INTRODUCTION: The aim of the study was to assess the usefulness of duplex Doppler to objectify swine renal arterial flow in physiological conditions. The pig kidney was selected for its morphological similarities to the human and for the results therefore offering data to wider research. MATERIAL AND METHODS: Six White Large x Landrace sows, of 48.5–53 kg b.w. were used. Vascular flow parameters were acquired with a convex probe USG device with a duplex Doppler function using pulsed waves (frequency range of 5–7.5 MHz). Segmental kidney arterial flow was measured. RESULTS: The RI values were within the 0.57 (min) to 0.6 (max) range, x (RI) was 0.58 (±0.014), and the SD(2)value was 0.0002. The PI index values ranged from 1.21 (min) to 1.3 (max), and x (PI) was 1.24 (±0.035). The value of SD(2)was 0.00123. In the S/D index, the results fell between 2.2 (min) and 2.49 (max), with x (S/D) of 2.29 (±0.117). The value of variance SD(2)was 0.0139. A double analysis of correlation between indices showed this to be almost certain and highly positive as confirmed by high correlation coefficients: r (RI & PI) 0.857, rho (RI & PI) 0.739, r (RI & S/D) 0.930, rho (RI & S/D) 0.941, r (PI & S/D) 0.913, and rho (PI & S/D) 0.754. The segmental kidney arterial flow spectrum evinced falls in PSV and PSV/LDV ratio, also noticed in the filling of the spectral window, comparing the renal to an interlobar artery. CONCLUSION: Swine were selected because of renal anatomical and haemodynamic similarity to humans. The most relevant values and indices approximated those in humans. The study anaesthetic protocol had a minor influence on the average RI, PI, and S/D indices. Sciendo 2019-06-12 /pmc/articles/PMC6598193/ /pubmed/31276066 http://dx.doi.org/10.2478/jvetres-2019-0036 Text en © 2019 R. Aleksiewicz et al. published by Sciendo http://creativecommons.org/licenses/by-nc-nd/3.0 This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.
spellingShingle Research Article
Aleksiewicz, Roman
Lutnicki, Krzysztof
Bojarski, Marcin
Al-Mutari, Ilona
Bocheńska, Aneta
Haemodynamics Imaging of Swine Segmental Kidney Artery Using Duplex Doppler Technique
title Haemodynamics Imaging of Swine Segmental Kidney Artery Using Duplex Doppler Technique
title_full Haemodynamics Imaging of Swine Segmental Kidney Artery Using Duplex Doppler Technique
title_fullStr Haemodynamics Imaging of Swine Segmental Kidney Artery Using Duplex Doppler Technique
title_full_unstemmed Haemodynamics Imaging of Swine Segmental Kidney Artery Using Duplex Doppler Technique
title_short Haemodynamics Imaging of Swine Segmental Kidney Artery Using Duplex Doppler Technique
title_sort haemodynamics imaging of swine segmental kidney artery using duplex doppler technique
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6598193/
https://www.ncbi.nlm.nih.gov/pubmed/31276066
http://dx.doi.org/10.2478/jvetres-2019-0036
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