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低强度激光疗法对受电离辐射的大鼠胫骨骨修复的影响

Low-level laser therapy on bone repair of rat tibiae exposed to ionizing radiation.

作者信息

Maman Fracher Abramoff Meire, Pereira Max Domingues, de Seixas Alves Maria Teresa, Segreto Roberto Araújo, Guilherme Arnaldo, Ferreira Lydia Masako

机构信息

1 Division of Plastic Surgery, Department of Surgery, Universidade Federal de São Paulo , São Paulo, SP, Brazil .

出版信息

Photomed Laser Surg. 2014 Nov;32(11):618-26. doi: 10.1089/pho.2013.3692.

Abstract

OBJECTIVE

The purpose of this study was to evaluate the effects of low-level laser therapy (LLLT) on the repair of rat tibiae exposed to ionizing radiation (IR).

BACKGROUND DATA

IR causes structural changes that delay bone tissue repair. Properly dosed, LLLT improves the bone repair process.

METHODS

Seventy-two healthy Wistar rats were distributed into the following groups: Group I, sham control; Group II, LLLT; Group III, IR; and Group IV, IR and LLLT. Groups III and IV received a single dose (30 Gy) of gamma radiation and underwent surgery 28 days later. A noncritical sized bone defect (diameter 2.5 mm) was surgically created in all groups. Groups II and IV received three applications of postsurgical LLLT (GaAlAs, 808 nm, 100 mW, 0.028 cm(2), 3.57 W/cm(2), 20 sec, 2 J,≅71.4 J/cm(2)) on alternate days. Histomorphometry was assessed following digital image analysis.

RESULTS

The samples were evaluated on days 7, 14, and 21 after surgery; the IR protocol resulted in a significant reduction (p<0.018) in bone formation in Group III compared with Group I. Significant increases (p<0.006) in newly formed bone were noted in Group IV compared with Group III. No significant differences were observed between Group I and Group IV.

CONCLUSIONS

LLLT increased the newly formed bone area during the initial phase of the tibiae repair process in rats exposed to IR.

摘要

目的

本研究旨在评估低强度激光疗法(LLLT)对暴露于电离辐射(IR)的大鼠胫骨修复的影响。

背景数据

IR会导致结构变化,从而延迟骨组织修复。适当剂量的LLLT可改善骨修复过程。

方法

将72只健康的Wistar大鼠分为以下几组:第一组,假手术对照组;第二组,LLLT组;第三组,IR组;第四组,IR + LLLT组。第三组和第四组接受单次剂量(30 Gy)的γ射线辐射,并在28天后进行手术。所有组均通过手术制造一个非临界尺寸的骨缺损(直径2.5毫米)。第二组和第四组在术后隔天接受三次LLLT治疗(GaAlAs,808纳米,100毫瓦,0.028平方厘米,3.

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