Artificial urinary bladder model

Technological advancements in the medical field are often slow and expensive, sometimes due to complexities associated with pre-clinical testing of medical devices and implants. There is therefore a growing need for new test beds that can mimic more closely the in vivo environment of physiological s...

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Main Authors: Read, B, Tan Sze Wuan, A, Pietropaolo, A, Somani, BK, Carugo, D, Mosayyebi, A
פורמט: Journal article
שפה:English
יצא לאור: SAGE Publications 2024
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author Read, B
Tan Sze Wuan, A
Pietropaolo, A
Somani, BK
Carugo, D
Mosayyebi, A
author_facet Read, B
Tan Sze Wuan, A
Pietropaolo, A
Somani, BK
Carugo, D
Mosayyebi, A
author_sort Read, B
collection OXFORD
description Technological advancements in the medical field are often slow and expensive, sometimes due to complexities associated with pre-clinical testing of medical devices and implants. There is therefore a growing need for new test beds that can mimic more closely the in vivo environment of physiological systems. In the present study, a novel bladder model was designed and fabricated with the aim of providing a pre-clinical testing platform for urological stents and catheters. The model is collapsible, has a Young’s modulus that is comparable to a biological bladder, and can be actuated on-demand to enable voiding. Moreover, the developed fabrication technique provides versatility to adjust the model’s shape, size, and thickness, through a rapid and relatively inexpensive process. When compared to a biological bladder, there is a significant difference in compliance; however, the model exhibits cystometry profiles during priming and voiding that are qualitatively comparable to a biological bladder. The developed bladder model has therefore potential for future usage in urological device testing; however, improvements are required to more closely replicate the architecture and relevant flow metrics of a physiological bladder.
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spelling oxford-uuid:73146ab9-fe9e-44d6-9926-0ce2affe850d2024-08-12T19:35:26ZArtificial urinary bladder modelJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:73146ab9-fe9e-44d6-9926-0ce2affe850dEnglishJisc Publications RouterSAGE Publications2024Read, BTan Sze Wuan, APietropaolo, ASomani, BKCarugo, DMosayyebi, ATechnological advancements in the medical field are often slow and expensive, sometimes due to complexities associated with pre-clinical testing of medical devices and implants. There is therefore a growing need for new test beds that can mimic more closely the in vivo environment of physiological systems. In the present study, a novel bladder model was designed and fabricated with the aim of providing a pre-clinical testing platform for urological stents and catheters. The model is collapsible, has a Young’s modulus that is comparable to a biological bladder, and can be actuated on-demand to enable voiding. Moreover, the developed fabrication technique provides versatility to adjust the model’s shape, size, and thickness, through a rapid and relatively inexpensive process. When compared to a biological bladder, there is a significant difference in compliance; however, the model exhibits cystometry profiles during priming and voiding that are qualitatively comparable to a biological bladder. The developed bladder model has therefore potential for future usage in urological device testing; however, improvements are required to more closely replicate the architecture and relevant flow metrics of a physiological bladder.
spellingShingle Read, B
Tan Sze Wuan, A
Pietropaolo, A
Somani, BK
Carugo, D
Mosayyebi, A
Artificial urinary bladder model
title Artificial urinary bladder model
title_full Artificial urinary bladder model
title_fullStr Artificial urinary bladder model
title_full_unstemmed Artificial urinary bladder model
title_short Artificial urinary bladder model
title_sort artificial urinary bladder model
work_keys_str_mv AT readb artificialurinarybladdermodel
AT tanszewuana artificialurinarybladdermodel
AT pietropaoloa artificialurinarybladdermodel
AT somanibk artificialurinarybladdermodel
AT carugod artificialurinarybladdermodel
AT mosayyebia artificialurinarybladdermodel