自体条件血清对种植牙体水平骨增强后硬组织影像学特征影响的评价。

Hamidreza Mohammadi, Adileh Shirmohammadi, Amirreza Babaloo, Leila Roshangar, Zeinab Torab, Mehdi Mojtahedinia
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引用次数: 1

摘要

背景。不同部位的骨缺乏是种植体放置的问题。种植体放置区域硬组织的组织学、组织形态学和放射学特性的变化影响种植体成功的许多参数。自体条件血清(ACS)是一种具有高水平il - 1受体拮抗剂的血液制品。在许多情况下需要进行隆胸手术,因为在无牙区域植入植体需要足够数量的骨。因此,本研究对水平骨增强后自体条件血清的效果进行了影像学评价。方法。在这项前瞻性随机对照试验中,对21例符合条件的患者进行了评估。患者在该区域进行了水平脊隆胸手术。acs浸渍的移植物与骨直接接触。对照组采用相同的手术方案,但未使用ACS。术后4个月,行CBCT x线片,利用水平尺寸骨形成量的差异和Hounsfield单位(HU)计算两个区域的x线变化。使用描述性统计方法报告数据,包括平均值(标准差)和频率(百分比)。根据Kolmog-orov-Smirnov检验结果,数据符合正态分布(P>0.05);因此,采用配对t检验比较两组间参数的均数。结果。x线检查显示两组术前骨水平尺寸相似。但术后ACS组(33.13±6.1)明显高于对照组(62.1±86.4)(P>0.05)。ACS组水平尺寸增加率(术前、术后差异)明显高于对照组。两组患者术前骨密度相似。但术后ACS组(75.56±330.42 HUs)明显高于对照组(38.35±292.38 HUs) (P>0.05)。ACS组的密度增加率(术前、术后差异)明显高于对照组。结论。硬组织的x线评估显示,与对照组相比,使用ACS的骨水平尺寸和新形成骨的密度显著增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Evaluation of the effect of autologous conditioned serum on the radiographic characteristics of hard tissue after horizontal bone augmentation in implant dentistry.

Evaluation of the effect of autologous conditioned serum on the radiographic characteristics of hard tissue after horizontal bone augmentation in implant dentistry.

Background. Bone deficiency in different areas is problematic in implant placement. Changes in histological, histomorphometric, and radiographic properties of hard tissues in the implant placement area affect many parameters of implant success. Autologous conditioned serum (ACS) is a blood product with high levels of IL1- receptor antagonists. Augmentation surgeries are required in many cases because implant placement in the edentulous areas requires a sufficient amount of bone. Therefore, this study radiographically evaluated the effect of autologous conditioned serum after horizontal bone augmentation. Methods. In this prospective RCT, 21 patients eligible patients were evaluated. The patient underwent horizontal ridge augmentation surgery in the area. The ACS-impregnated graft was in direct con-tact with the bone. The control side underwent the same surgical protocol without using ACS. Four months after surgery, a CBCT radiograph was taken, and radiographic changes in the two areas were calculated using the differences in the amount of bone formed in the horizontal dimension as well as the Hounsfield unit (HU). The data were reported using descriptive statistical methods, including means (standard deviations) and frequencies (percentages). According to the results of the Kolmog-orov-Smirnov test, the data had a normal distribution (P>0.05); therefore, paired t-test was used to compare the means of the parameters between the two groups. Results. IRadiographic examinations showed that the horizontal dimension of bone before surgery was similar between the two groups. However, after surgery in the ACS group (33.13±6.1), it was significantly higher than in the control group (62.1±86.4) (P>0.05). Also, the rate of horizontal dimension increase (the difference before and after surgery) in the ACS group was significantly higher than in the control group. Bone density before surgery was similar between the two groups. However, after surgery, there was a significant increase in the ACS group (75.56±330.42 HUs) compared to the control group (38.35±292.38 HUs) (P>0.05). Also, the rate of density increase (the difference before and after surgery) in the ACS group was significantly higher than in the control group. Conclusion. Radiographic evaluations of hard tissues showed a significant increase in the horizontal dimension of bone and density of newly formed bone using ACS compared to the control group.

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