Biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: A systematic review
The best artificial disc material must closely resemble the viscoelasticity, biomechanics and bioavailability of a natural human intervertebral disc. Currently, there is a lack of reviews discussing the characterization of polyvinyl alcohol (PVA) hydrogel as a nucleus pulposus (NP) replacement in in...
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التنسيق: | مقال PeerReviewed |
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Spandidos Publications
2023
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الوصول للمادة أونلاين: | https://repository.unair.ac.id/133225/1/Biomechanical%20properties%20of%20polyvinyl%20alcohol%20hydrogel%20as%20a%20nucleus%20pulposus%20replacement%20in%20intervertebral%20disc%20herniation_%20A%20Systematic%20review.pdf https://repository.unair.ac.id/133225/2/1-16.pdf https://repository.unair.ac.id/133225/3/Turnitin%20-%20Biomechanical%20properties%20of%20polyvinyl%20alcohol%20hydrogel%20as%20a%20nucleus%20pulposus%20replacement%20in%20intervertebral%20disc%20herniation_%20A%20Systematic%20review.pdf https://repository.unair.ac.id/133225/ https://www.spandidos-publications.com/10.3892/wasj.2023.214 https://doi.org/10.3892/wasj.2023.214 |
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id-langga.1332252024-05-28T00:58:57Z https://repository.unair.ac.id/133225/ Biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: A systematic review Eko Agus Subagio, Eko Galih Indra Permana, Galih Abdul Hafid Bajamal, Abdul Muhammad Faris, Muhammad Nur Setiawan Suroto, Nur Amaliya Rasyida, Amaliya Budi Utomo, Budi R Medicine R Medicine (General) R856-857 Biomedical engineering. Electronics. Instrumentation The best artificial disc material must closely resemble the viscoelasticity, biomechanics and bioavailability of a natural human intervertebral disc. Currently, there is a lack of reviews discussing the characterization of polyvinyl alcohol (PVA) hydrogel as a nucleus pulposus (NP) replacement in intervertebral disc herniation. The present study systematically reviewed the biomechanical characterization of PVA hydrogel as a potential ideal candidate for the replacement of NP. The PubMed, Google Scholar, Science Direct, and Cochrane Database of Systematic Reviews databases were searched according to the Preferred Reporting Items for Systematic Reviews and Meta‑Analyses guideline. Data from the literature regarding study design, sample size, materials and biomechanical properties were collected. The literature search identified seven publications, which were read to obtain information about the biomechanical characteristics of PVA hydrogel material used with different compounds. Stress, strain and Young's modulus testing outcomes were all evaluated. The biomechanical characteristics of the materials were evaluated to determine how closely they resemble those of the NP. The results revealed that the PVA hydrogel and NP share similar biomechanical characteristics. In order to enhance its biomechanical capabilities, the PVA hydrogel may be combined with other materials. Spandidos Publications 2023 Article PeerReviewed text en https://repository.unair.ac.id/133225/1/Biomechanical%20properties%20of%20polyvinyl%20alcohol%20hydrogel%20as%20a%20nucleus%20pulposus%20replacement%20in%20intervertebral%20disc%20herniation_%20A%20Systematic%20review.pdf text en https://repository.unair.ac.id/133225/2/1-16.pdf text en https://repository.unair.ac.id/133225/3/Turnitin%20-%20Biomechanical%20properties%20of%20polyvinyl%20alcohol%20hydrogel%20as%20a%20nucleus%20pulposus%20replacement%20in%20intervertebral%20disc%20herniation_%20A%20Systematic%20review.pdf Eko Agus Subagio, Eko and Galih Indra Permana, Galih and Abdul Hafid Bajamal, Abdul and Muhammad Faris, Muhammad and Nur Setiawan Suroto, Nur and Amaliya Rasyida, Amaliya and Budi Utomo, Budi (2023) Biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: A systematic review. World Academy of Sciences Journal, 5 (37). pp. 1-6. ISSN ISSN: 2632-2900, E-ISSN: 2632-2919 https://www.spandidos-publications.com/10.3892/wasj.2023.214 https://doi.org/10.3892/wasj.2023.214 |
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English English English |
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R Medicine R Medicine (General) R856-857 Biomedical engineering. Electronics. Instrumentation |
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R Medicine R Medicine (General) R856-857 Biomedical engineering. Electronics. Instrumentation Eko Agus Subagio, Eko Galih Indra Permana, Galih Abdul Hafid Bajamal, Abdul Muhammad Faris, Muhammad Nur Setiawan Suroto, Nur Amaliya Rasyida, Amaliya Budi Utomo, Budi Biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: A systematic review |
description |
The best artificial disc material must closely resemble the viscoelasticity, biomechanics and bioavailability of a natural human intervertebral disc. Currently, there is a lack of reviews discussing the characterization of polyvinyl alcohol (PVA) hydrogel as a nucleus pulposus (NP) replacement in intervertebral disc herniation. The present study systematically reviewed the biomechanical characterization of PVA hydrogel as a potential ideal candidate for the replacement of NP. The PubMed, Google Scholar, Science Direct, and Cochrane Database of Systematic Reviews databases were searched according to the Preferred Reporting Items for Systematic Reviews and Meta‑Analyses guideline. Data from the literature regarding study design, sample size, materials and biomechanical properties were collected. The literature search identified seven publications, which were read to obtain information about the biomechanical characteristics of PVA hydrogel material used with different compounds. Stress, strain and Young's modulus testing outcomes were all evaluated. The biomechanical characteristics of the materials were evaluated to determine how closely they resemble those of the NP. The results revealed that the PVA hydrogel and NP share similar biomechanical characteristics. In order to enhance its biomechanical capabilities, the PVA hydrogel may be combined with other materials. |
format |
Article PeerReviewed |
author |
Eko Agus Subagio, Eko Galih Indra Permana, Galih Abdul Hafid Bajamal, Abdul Muhammad Faris, Muhammad Nur Setiawan Suroto, Nur Amaliya Rasyida, Amaliya Budi Utomo, Budi |
author_facet |
Eko Agus Subagio, Eko Galih Indra Permana, Galih Abdul Hafid Bajamal, Abdul Muhammad Faris, Muhammad Nur Setiawan Suroto, Nur Amaliya Rasyida, Amaliya Budi Utomo, Budi |
author_sort |
Eko Agus Subagio, Eko |
title |
Biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: A systematic review |
title_short |
Biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: A systematic review |
title_full |
Biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: A systematic review |
title_fullStr |
Biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: A systematic review |
title_full_unstemmed |
Biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: A systematic review |
title_sort |
biomechanical properties of polyvinyl alcohol hydrogel as a nucleus pulposus replacement in intervertebral disc herniation: a systematic review |
publisher |
Spandidos Publications |
publishDate |
2023 |
url |
https://repository.unair.ac.id/133225/1/Biomechanical%20properties%20of%20polyvinyl%20alcohol%20hydrogel%20as%20a%20nucleus%20pulposus%20replacement%20in%20intervertebral%20disc%20herniation_%20A%20Systematic%20review.pdf https://repository.unair.ac.id/133225/2/1-16.pdf https://repository.unair.ac.id/133225/3/Turnitin%20-%20Biomechanical%20properties%20of%20polyvinyl%20alcohol%20hydrogel%20as%20a%20nucleus%20pulposus%20replacement%20in%20intervertebral%20disc%20herniation_%20A%20Systematic%20review.pdf https://repository.unair.ac.id/133225/ https://www.spandidos-publications.com/10.3892/wasj.2023.214 https://doi.org/10.3892/wasj.2023.214 |
_version_ |
1800917497744982016 |