{"title":"牙槽骨骨质增生用于保护和压实牙槽骨,以增强牙科植入物的稳定性:系统综述","authors":"Arshad Jamal Sayed","doi":"10.55522/jmpas.v13i1.5741","DOIUrl":null,"url":null,"abstract":"A higher implant failure rate may be associated with a lack of primary stability.\n Primary stability is a stationary, entirely mechanical parameter that determines when an\n implant is placed. Several methods have been developed to improve the primary implant's\n level of stability. However, Osseo-densification (OD) is a revolutionary implant\n preparation approach that addresses these issues and enhances the main stability of\n implants inserted into low-density bones. In light of this, the present systematic\n review was conducted to understand the Osseo-densification for preservation and\n compaction of alveolar bone in enhancing the stability of the dental implant. Research\n papers from PubMed, CINAHL, Web of Science, and Web of Science, Medline searched. The\n most recent literature suggests that using the Osseo-densification drilling protocol\n increases the overall value of implant insertion torque and, consequently, increases the\n primary stability of implants. To evaluate the caliber of the contained research, CARE,\n ARRIVE, and modified CONSORT checklists were employed. 133 full texts were chosen for\n further investigation after duplicates were removed and titles and abstracts were\n reviewed of these, 27 entire texts met the inclusion criteria. The thorough literature\n search identified 6 Case Studies & Case Series, 11 in vivo animal studies, and ten\n /experimental animal studies that noted the use of the Osseo-densification technique.\n The data from most recent animal in vivo/in vitro studies and case reports / case series\n suggest that Osseo-densification drilling protocol increases the overall value of\n implant insertion torque and, as a result, increases implant primary stability.","PeriodicalId":16445,"journal":{"name":"Journal of Medical pharmaceutical and allied sciences","volume":"22 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-02-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Osseo-densification for preservation and compaction of alveolar bone in enhancing\\n stability of dental implants: A systematic review\",\"authors\":\"Arshad Jamal Sayed\",\"doi\":\"10.55522/jmpas.v13i1.5741\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"A higher implant failure rate may be associated with a lack of primary stability.\\n Primary stability is a stationary, entirely mechanical parameter that determines when an\\n implant is placed. Several methods have been developed to improve the primary implant's\\n level of stability. However, Osseo-densification (OD) is a revolutionary implant\\n preparation approach that addresses these issues and enhances the main stability of\\n implants inserted into low-density bones. In light of this, the present systematic\\n review was conducted to understand the Osseo-densification for preservation and\\n compaction of alveolar bone in enhancing the stability of the dental implant. Research\\n papers from PubMed, CINAHL, Web of Science, and Web of Science, Medline searched. The\\n most recent literature suggests that using the Osseo-densification drilling protocol\\n increases the overall value of implant insertion torque and, consequently, increases the\\n primary stability of implants. To evaluate the caliber of the contained research, CARE,\\n ARRIVE, and modified CONSORT checklists were employed. 133 full texts were chosen for\\n further investigation after duplicates were removed and titles and abstracts were\\n reviewed of these, 27 entire texts met the inclusion criteria. 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引用次数: 0
摘要
种植体失败率较高可能与缺乏初级稳定性有关。基底稳定性是一个固定的、完全机械的参数,它决定了何时植入种植体。目前已开发出多种方法来提高种植体的初次稳定性。然而,骨质致密化(OD)是一种革命性的种植体制备方法,它可以解决这些问题,并增强植入低密度骨骼的种植体的主要稳定性。有鉴于此,本系统性综述旨在了解 Osseo-densification(骨密度调整)在保护和压实牙槽骨以增强牙科植入物稳定性方面的作用。研究论文来自 PubMed、CINAHL、Web of Science 和 Web of Science、Medline。最新的文献表明,使用 Osseo 增密钻孔方案可以增加种植体插入扭矩的总体值,从而提高种植体的主要稳定性。为了评估所含研究的质量,我们采用了 CARE、ARRIVE 和修改后的 CONSORT 检查表。在剔除重复文献、审阅标题和摘要后,我们选择了 133 篇全文进行进一步调查,其中 27 篇全文符合纳入标准。通过全面的文献检索,确定了 6 项病例研究和病例系列研究、11 项体内动物研究和 10 项实验动物研究,这些研究都提到了 Osseo 骨密度技术的使用。最新的体内/体外动物研究和病例报告/病例系列的数据表明,Osseo-致密化钻孔方案可以增加种植体插入扭矩的总体值,从而增加种植体的初期稳定性。
Osseo-densification for preservation and compaction of alveolar bone in enhancing
stability of dental implants: A systematic review
A higher implant failure rate may be associated with a lack of primary stability.
Primary stability is a stationary, entirely mechanical parameter that determines when an
implant is placed. Several methods have been developed to improve the primary implant's
level of stability. However, Osseo-densification (OD) is a revolutionary implant
preparation approach that addresses these issues and enhances the main stability of
implants inserted into low-density bones. In light of this, the present systematic
review was conducted to understand the Osseo-densification for preservation and
compaction of alveolar bone in enhancing the stability of the dental implant. Research
papers from PubMed, CINAHL, Web of Science, and Web of Science, Medline searched. The
most recent literature suggests that using the Osseo-densification drilling protocol
increases the overall value of implant insertion torque and, consequently, increases the
primary stability of implants. To evaluate the caliber of the contained research, CARE,
ARRIVE, and modified CONSORT checklists were employed. 133 full texts were chosen for
further investigation after duplicates were removed and titles and abstracts were
reviewed of these, 27 entire texts met the inclusion criteria. The thorough literature
search identified 6 Case Studies & Case Series, 11 in vivo animal studies, and ten
/experimental animal studies that noted the use of the Osseo-densification technique.
The data from most recent animal in vivo/in vitro studies and case reports / case series
suggest that Osseo-densification drilling protocol increases the overall value of
implant insertion torque and, as a result, increases implant primary stability.