Adaptive neuro-fuzzy system as a novel approach for predicting post-dialysis urea rebound

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dc.contributor.author Azar A.T.
dc.contributor.other Department of Electrical Communication and Electronics
dc.contributor.other Systems Engineering
dc.contributor.other Modern Science and Arts University (MSA)
dc.contributor.other 26 July Mehwar Road Intersection with Wahat Road
dc.contributor.other 6th of October City
dc.contributor.other Egypt
dc.date.accessioned 2020-01-25T19:58:30Z
dc.date.available 2020-01-25T19:58:30Z
dc.date.issued 2011
dc.identifier.issn 17408865
dc.identifier.other https://doi.org/10.1504/IJISTA.2011.040352
dc.identifier.uri https://cutt.ly/Ar1oRmT
dc.description Scopus
dc.description.abstract Total dialysis dose (Kt/V) is considered to be a major determinant of morbidity and mortality in haemodialysed patients. The continuous growth of the blood urea concentration over the 30-60-min period following dialysis, a phenomenon known as urea rebound, is a critical factor in determining the true dose of haemodialysis (HD). The misestimation of the equilibrated (true) postdialysis blood urea or equilibrated Kt/V results in an inadequate HD prescription, with predictably poor clinical outcomes for the patients. The estimation of the equilibrated post-dialysis blood urea (C eq) is therefore crucial in order to estimate the equilibrated (true) Kt/V. Measuring post-dialysis urea rebound (PDUR) requires a 30- or 60-min post-dialysis sampling, which is inconvenient. This paper presents a novel technique for predicting equilibrated urea concentration and PDUR in the form of a Takagi-Sugeno-Kang fuzzy inference system. The advantage of this neuro-fuzzy hybrid approach is that it does not require 30-60-min post-dialysis urea sample. Adaptive neuro-fuzzy inference system (ANFIS) was constructed to predict equilibrated urea (C eq) taken at 60 min after the end of the HD session in order to predict PDUR. The accuracy of the ANFIS was prospectively compared with other traditional methods for predicting equilibrated urea (C eq), PDUR and equilibrated dialysis dose ( eqKt/V). The results are highly promising, and a comparative analysis suggests that the proposed modelling approach outperforms other traditional urea kinetic models. � 2011 Inderscience Enterprises Ltd. en_US
dc.description.uri https://www.scimagojr.com/journalsearch.php?q=21100198230&tip=sid&clean=0
dc.language.iso English en_US
dc.relation.ispartofseries International Journal of Intelligent Systems Technologies and Applications
dc.relation.ispartofseries 10
dc.subject eqKt/V en_US
dc.subject Adaptive neuro-fuzzy inference system en_US
dc.subject ANFIS en_US
dc.subject C eq en_US
dc.subject Equilibrated dialysis adequacy en_US
dc.subject Equilibrated urea concentration en_US
dc.subject Neural networks en_US
dc.subject PDUR en_US
dc.subject Post-dialysis urea rebound en_US
dc.subject Takagi-Sugeno-Kang fuzzy inference system en_US
dc.title Adaptive neuro-fuzzy system as a novel approach for predicting post-dialysis urea rebound en_US
dc.type Article en_US
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dcterms.source Scopus
dc.identifier.doi https://doi.org/10.1504/IJISTA.2011.040352
dc.Affiliation October University for modern sciences and Arts (MSA)


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