2018
DOI: 10.17691/stm2018.10.3.24
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Materials for Plastic Surgery of the Dura Mater: History and Current State of the Problem (Review)

Abstract: The review addresses one of the important aspects of modern neurosurgery: the repair of various dura mater defects. The optimal material for plastic surgery of the dura mater should meet certain biological, physical and chemical requirements, should not cause serious complications such as liquorrhea, inflammation or brain's lining scars, it should be simple and convenient in use, as well as cost-effective. The present report reviews the concepts and techniques developed in the XIX-XX centuries and also describ… Show more

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Cited by 6 publications
(6 citation statements)
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References 18 publications
(22 reference statements)
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“…Different n-HA/polymer composites, such as n-HA added poly(lactic-co-glycolic acid) (PLGA) or polycaprolactone (PCL), have been developed and broadly investigated as scaffolds for bone repair [11,12,13]. But few of them have been used for plastic and reconstructive surgery, because the specific biomaterials need match to the comfortable and aesthetic requirements of tissue augmentation, such as resilience, adjusting physical softness and hardness, contact pressure, uniform block, and easy shaping [14,15]. It is well known that there is a class of polymer materials that can be synthesized as “soft or hard scaffolds” by different segmented structures [16].…”
Section: Introductionmentioning
confidence: 99%
“…Different n-HA/polymer composites, such as n-HA added poly(lactic-co-glycolic acid) (PLGA) or polycaprolactone (PCL), have been developed and broadly investigated as scaffolds for bone repair [11,12,13]. But few of them have been used for plastic and reconstructive surgery, because the specific biomaterials need match to the comfortable and aesthetic requirements of tissue augmentation, such as resilience, adjusting physical softness and hardness, contact pressure, uniform block, and easy shaping [14,15]. It is well known that there is a class of polymer materials that can be synthesized as “soft or hard scaffolds” by different segmented structures [16].…”
Section: Introductionmentioning
confidence: 99%
“…Biofunctional characteristics of Reperen represent the safety in application of the exogenous material with lack of response from recipient organism immune system. Significant research into the clinical use of Reperen [18,19,20] shows the expediency of clinical application. Reperen has a low contamination potential, the material does not change size or form, it is inert.…”
Section: Discussionmentioning
confidence: 99%
“…В подальшому використання цього матеріалу було описано Oliver (1896), Estes (1896), Сummers (1897) and Woolsey (1897), а також подібні роботи були виконані, але вже зі срібною фольгою Ray (1901), Harris (1904), Prime (1909) та платиновою Morehead (1896) і McCosh (1898). Chao, Humphreys та Penfield (1940) повідомили про свій досвід роботи зі срібною фольгою, алюмінієвою фольгою, нікелевою та пластиною з нержавіючої сталі [22]. Вже перші публікації вказували на незадовільні результати використання цих замінників через досить серйозні ускладнення, серед яких крововиливи, запальні реакції та реакції на чужорідне тіло [7].…”
Section: Introduction/вступunclassified