Key result
This paper presents the clinical study protocol designed for calibrating and validating computational modeling tools to improve outcomes after vascular access creation.
Why the study?
Does the use of patient-specific computational modeling tools improve outcomes after vascular access creation?
Does the use of patient-specific computational modeling tools improve outcomes after vascular access creation?
The ARCH project protocol describes a multicenter clinical study designed to calibrate and validate computational modeling tools aimed at optimizing vascular access creation and improving outcomes.
Protocol for validating computational tools in vascular access; leaves open whether patient-specific modeling improves outcomes pending completion.
Despite clinical guidelines and the possibility of diagnostic vascular imaging, creation and maintenance of a vascular access (VA) remains problematic: avoiding short- and long-term VA dysfunction is challenging. Although prognostic factors for VA dysfunction have been identified in previous studies, their potential interplay at a systemic level is disregarded. Consideration of multiple prognostic patient specific factors and their complex interaction using dedicated computational modeling tools might improve outcome after VA creation by enabling a better selection of VA configuration. These computational modeling tools are developed and validated in the ARCH project: a joint initiative of four medical centers and three industrial partners (FP7-ICT-224390). This paper reports the rationale behind computational modeling and presents the clinical study protocol designed for calibrating and validating these modeling tools. The clinical study is based on the pre-operative collection of structural and functional data at a vascular level, as well as a VA functional evaluation during the follow-up period. The strategy adopted to perform the study and for data collection is also described here.
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Caroli et al. (2011) studied Vascular access creation. Computational modeling tools for vascular access configuration was evaluated. This paper presents the clinical study protocol designed for calibrating and validating computational modeling tools to improve outcomes after vascular access creation.
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