The Capacity of Periodontal Gel to Occupy the Spaces Inside the Periodontal Pockets Using Computational Fluid Dynamic

The aim of the current work is to demonstrate the capacity of a new periodontal gel to occupy the spaces inside the periodontal pockets through Computational Fluid Dynamic (CFD). The test gel consists of two resorbable medical grade polymers (PEO, Poly Ethylen Oxide and HPMC, Hydroxy Propyl Metyl Ce...

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Main Authors: Luca Levrini, Luigi Paracchini, Maria Giulia Nosotti
Format: Article
Language:English
Published: MDPI AG 2019-12-01
Series:Dentistry Journal
Subjects:
Online Access:https://www.mdpi.com/2304-6767/8/1/1
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author Luca Levrini
Luigi Paracchini
Maria Giulia Nosotti
author_facet Luca Levrini
Luigi Paracchini
Maria Giulia Nosotti
author_sort Luca Levrini
collection DOAJ
description The aim of the current work is to demonstrate the capacity of a new periodontal gel to occupy the spaces inside the periodontal pockets through Computational Fluid Dynamic (CFD). The test gel consists of two resorbable medical grade polymers (PEO, Poly Ethylen Oxide and HPMC, Hydroxy Propyl Metyl Cellulose), Type I Collagen, SAP (Vitamin C), and PBS (Saline Solution), while the control gel is 14% doxyclin controlled release gel, which is used for treating periodontal pockets with probing &#8805;5 mm after scaling and root plaining. The study examined the fluid dynamic analysis (Computational Fluid Dynamic&#8212;CFD) of two different gels, used in dentistry to treat periodontitis, in relation to both the geometry of the periodontal pocket and the function of two different types of needles that are used to distribute the preparation. The periodontal pocket was determined by reading DICOM images taken from the patient&#8217;s CAT scan. The results show that the H42<sup>&#174;</sup> gel comes out uniformly compared to the other gel. Moreover, it is possible to observe how the rheological properties of the gel allow the fluid to spread evenly within the periodontal pocket in relation to the geometry of the needle. In particular, H42<sup>&#174;</sup> gel exits in a constant way both from the first and the second exit. In fact, it was observed that by changing the geometry of the needle or the type of periodontal gel, the distribution of the gel inside the pocket was no longer homogeneous. Thus, having the correct rheological properties and correct needle geometries both speeds up the gel and optimizes the pressure distribution. Currently, the literature is still lacking, therefore further studies will be needed to confirm these results.
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spelling doaj.art-2cbbb581e93c4f429a246e86ddfbae192022-12-22T03:18:59ZengMDPI AGDentistry Journal2304-67672019-12-0181110.3390/dj8010001dj8010001The Capacity of Periodontal Gel to Occupy the Spaces Inside the Periodontal Pockets Using Computational Fluid DynamicLuca Levrini0Luigi Paracchini1Maria Giulia Nosotti2Department of Human Sciences, Innovation and Territory, Dental Hygiene School, University of Insubria, 22100 Varese-Como, ItalyINGEO, 28100 Varallo Pombia (Novara), ItalyDepartment of Human Sciences, Innovation and Territory, Dental Hygiene School, University of Insubria, 22100 Varese-Como, ItalyThe aim of the current work is to demonstrate the capacity of a new periodontal gel to occupy the spaces inside the periodontal pockets through Computational Fluid Dynamic (CFD). The test gel consists of two resorbable medical grade polymers (PEO, Poly Ethylen Oxide and HPMC, Hydroxy Propyl Metyl Cellulose), Type I Collagen, SAP (Vitamin C), and PBS (Saline Solution), while the control gel is 14% doxyclin controlled release gel, which is used for treating periodontal pockets with probing &#8805;5 mm after scaling and root plaining. The study examined the fluid dynamic analysis (Computational Fluid Dynamic&#8212;CFD) of two different gels, used in dentistry to treat periodontitis, in relation to both the geometry of the periodontal pocket and the function of two different types of needles that are used to distribute the preparation. The periodontal pocket was determined by reading DICOM images taken from the patient&#8217;s CAT scan. The results show that the H42<sup>&#174;</sup> gel comes out uniformly compared to the other gel. Moreover, it is possible to observe how the rheological properties of the gel allow the fluid to spread evenly within the periodontal pocket in relation to the geometry of the needle. In particular, H42<sup>&#174;</sup> gel exits in a constant way both from the first and the second exit. In fact, it was observed that by changing the geometry of the needle or the type of periodontal gel, the distribution of the gel inside the pocket was no longer homogeneous. Thus, having the correct rheological properties and correct needle geometries both speeds up the gel and optimizes the pressure distribution. Currently, the literature is still lacking, therefore further studies will be needed to confirm these results.https://www.mdpi.com/2304-6767/8/1/1computional fluid dynamiccat scanperiodontal gels
spellingShingle Luca Levrini
Luigi Paracchini
Maria Giulia Nosotti
The Capacity of Periodontal Gel to Occupy the Spaces Inside the Periodontal Pockets Using Computational Fluid Dynamic
Dentistry Journal
computional fluid dynamic
cat scan
periodontal gels
title The Capacity of Periodontal Gel to Occupy the Spaces Inside the Periodontal Pockets Using Computational Fluid Dynamic
title_full The Capacity of Periodontal Gel to Occupy the Spaces Inside the Periodontal Pockets Using Computational Fluid Dynamic
title_fullStr The Capacity of Periodontal Gel to Occupy the Spaces Inside the Periodontal Pockets Using Computational Fluid Dynamic
title_full_unstemmed The Capacity of Periodontal Gel to Occupy the Spaces Inside the Periodontal Pockets Using Computational Fluid Dynamic
title_short The Capacity of Periodontal Gel to Occupy the Spaces Inside the Periodontal Pockets Using Computational Fluid Dynamic
title_sort capacity of periodontal gel to occupy the spaces inside the periodontal pockets using computational fluid dynamic
topic computional fluid dynamic
cat scan
periodontal gels
url https://www.mdpi.com/2304-6767/8/1/1
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