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用于在牙种植体周围植入可注射富血小板纤维蛋白的创新方法“DV-PIMS”技术及牙种植体设计——山羊下颌骨尸体研究

Innovative method "DV-PIMS" technique and dental implant design for grafting injectable platelet-rich fibrin around the dental implant - Goat jaw cadaver study.

作者信息

Vikhe Deepak M, Shah Seemit V, Carrion Juan Blanco, Palekar Umesh G

机构信息

Department of Prosthodontics, Rural Dental College, PIMS, India.

Department of Oral Surgery, Rural Dental College, PIMS, India.

出版信息

Indian J Dent Res. 2019 May-Jun;30(3):450-454. doi: 10.4103/ijdr.IJDR_195_19.

Abstract

AIMS

Dental implants have revolutionized the treatment modality for replacing missing teeth. The ability of implants to osseointegrate with the bone leads to its success. The problem is sometimes there is inadequate bone available for implant. If hygiene is not maintained, biofilms of bacteria can be formed around the dental implant. One approach to this problem has been development of bioactive surgical additives. Platelet-rich fibrin (PRF) appears as an alternative. There are various techniques of using PRF. These techniques need skill and practice to use PRF.

OBJECTIVE

To evaluate implant stability and flow of injectable PRF (i-PRF) of regular implant and modified innovative design implant.

MATERIALS AND METHODS

Thirty goat jaw bones were selected. Implants were placed in mandibular posterior region. Fifteen implants were placed using regular dental implant system (Group A) on the left side of jaw bone. The other 15 implants were placed using modified dental implant (Group B) on the right side of jaw bone. The body of these implants at middle has drainage vents to drain/flow the i-PRF-like dye. The dye was injected through regular and modified implants (DV-PIMS technique). Then the stability was checked with the help of Periotest. Cross section was taken 3 cm away from dental implant at the angle of mandible, to check the flow of i-PRF/platelet-rich plasma (PRP)-like dye.

RESULTS

Periotest evaluation showed a mean of 2.3 for implant Group B and a mean of 1.5 for implant Group A. The flow of i-PRF-like dye was seen in Group B, and Group A does not show any flow.

CONCLUSION

There are various techniques of using PRF. These techniques need skill and practice to use PRF. This (DV-PIMS) method aims to explain new implant design that disperses an i-PRF solution from inside out. The screw section of the new implant is made of a reservoir running vertically down inside. That reservoir is filled with (injectable) PRF, and then a cover screw is placed. The solution will begin to slowly diffuse out, through the vents in implant, keeping biofilms from forming or avoiding at the screw-bone interface and accelerate healing process.

摘要

目的

牙种植体彻底改变了缺失牙的治疗方式。种植体与骨实现骨结合的能力使其获得成功。问题在于有时可供种植的骨量不足。如果不保持卫生,牙种植体周围会形成细菌生物膜。解决这一问题的一种方法是开发生物活性手术添加剂。富血小板纤维蛋白(PRF)似乎是一种选择。使用PRF有多种技术。这些技术需要技巧和实践才能运用PRF。

目的

评估常规种植体和改良创新设计种植体的种植体稳定性以及可注射PRF(i-PRF)的流动性。

材料与方法

选取30块山羊颌骨。将种植体植入下颌后牙区。在颌骨左侧使用常规牙种植系统植入15枚种植体(A组)。在颌骨右侧使用改良牙种植体植入另外15枚种植体(B组)。这些种植体中部的主体有引流孔以引流/流动i-PRF样染料。通过常规和改良种植体注射染料(DV-PIMS技术)。然后借助牙周探针检查稳定性。在下颌角距牙种植体3厘米处取横截面,以检查i-PRF/富血小板血浆(PRP)样染料的流动情况。

结果

牙周探针评估显示,B组种植体平均值为2.3,A组种植体平均值为1.5。B组可见i-PRF样染料流动,而A组未显示任何流动情况。

结论

使用PRF有多种技术。这些技术需要技巧和实践才能运用PRF。这种(DV-PIMS)方法旨在解释一种新的种植体设计,该设计能使i-PRF溶液由内而外扩散。新种植体的螺杆部分由一个垂直向下延伸的储液器构成。该储液器填充有(可注射的)PRF,然后放置一个覆盖螺丝。溶液将开始缓慢扩散出来,通过种植体上的孔,防止生物膜在螺丝-骨界面形成或避免形成生物膜,并加速愈合过程。

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