Heba Mitwalli
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Explore the profile of Heba Mitwalli including associated specialties, affiliations and a list of published articles.
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Articles
13
Citations
112
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Recent Articles
1.
Daghrery A, Jabarti E, Baras B, Mitwalli H, Al Moaleem M, Khojah M, et al.
Med Sci Monit
. 2025 Feb;
31:e947191.
PMID: 39895039
BACKGROUND This computer-aided design and computer-aided manufacturing (CAD/CAM) study aimed to evaluate the effects of thermocycling on deep margin elevation relocation of subgingival cavity outlines in 80 molar teeth using...
2.
Daghrery A, Khayat W, Albar N, Khojah M, Jabarti E, Mitwalli H, et al.
Heliyon
. 2024 Jul;
10(13):e34172.
PMID: 39071601
Statement Of The Problem: Patient stratifications considered the stability of color and treatment longevity are key success of restoration. Daily consumption of colored beverages, such as coffee, tea, and soft...
3.
Alhussein A, Alsahafi R, Wang X, Mitwalli H, Filemban H, Hack G, et al.
J Funct Biomater
. 2023 Jul;
14(7).
PMID: 37504831
Objectives: Current dental resins exhibit polymerization shrinkage causing microleakage, which has the potential to cause recurrent caries. Our objectives were to create and characterize low-shrinkage-stress (LSS) composites with dimethylaminododecyl methacrylate...
4.
Alsahafi R, Mitwalli H, Alhussein A, Balhaddad A, Alquria T, Melo M, et al.
J Dent
. 2022 Oct;
126:104312.
PMID: 36184005
Objective: In most clinical circumstances, secondary caries at the margin of fixed dental restorations leads to restoration failure and replacement. Accordingly, the objectives of this study were to: (1) develop...
5.
Alsahafi R, Wang X, Mitwalli H, Alhussein A, Balhaddad A, Melo M, et al.
Dent Mater
. 2022 Sep;
38(11):1689-1702.
PMID: 36115699
Objective: A low-shrinkage-stress resin-based cement with antibacterial properties could be beneficial to create a cement with lower stress at the tooth-restoration interface, which could help to enhance the longevity of...
6.
Alsahafi R, Mitwalli H, Alhussein A, Melo M, Martinho F, Lynch C, et al.
J Dent
. 2022 May;
122:104140.
PMID: 35490839
Objective: Resin cements with remineralizing and antibacterial properties are favorable for inhibition of caries. The objectives of this study were: (1) to investigate the capability of the novel dimethylaminohexadecyl-methacrylate (DMAHDM)...
7.
Albeshir E, Alsahafi R, Albluwi R, Balhaddad A, Mitwalli H, Oates T, et al.
Materials (Basel)
. 2022 Apr;
15(8).
PMID: 35454643
Dimethacrylate-based resin composites restorations have become widely-used intraoral materials in daily dental practice. The increasing use of composites has greatly enhanced modern preventive and conservative dentistry. They have many superior...
8.
Mitwalli H, Alsahafi R, Alhussein A, Oates T, Melo M, Xu H, et al.
Dent Mater
. 2022 Jan;
38(2):397-408.
PMID: 34974900
Objectives: Composite restorations with calcium fluoride nanoparticles (nCaF) can remineralize tooth structure through F and Ca ion release. However, the persistence of ion release is limited. The objectives for this...
9.
Albeshir E, Balhaddad A, Mitwalli H, Wang X, Sun J, Melo M, et al.
Dent Mater
. 2022 Jan;
38(2):409-420.
PMID: 34973816
Methods: The light-cured low-shrinkage-stress flowable resin was formulated by mixing urethane dimethacrylate (UDMA) and triethylene glycol divinylbenzyl ether (TEG-DVBE) at a 1:1 mass ratio. Different mass fractions of glass, and...
10.
Mitwalli H, Alsahafi R, Albeshir E, Dai Q, Sun J, Oates T, et al.
J Dent
. 2021 Aug;
113:103789.
PMID: 34455017
Objective: Composites with remineralizing and antibacterial properties are favorable for caries inhibition. The objectives of this study were to develop a new bioactive nanocomposite with remineralizing and antibiofilm properties by...