Histological and Radiological Evaluation of Low-Intensity Pulsed Ultrasound Versus Whole Body Vibration on Healing of Mandibular Bone Defects in Rats

: Mechanical stimulation can improve the structural properties of the fracture site and induce the differentiation of different cell types for bone regeneration. This study aimed to compare the effect of low-intensity pulsed ultrasound stimulation (LIPUS) versus whole body vibration (WBV) on healing...

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Veröffentlicht in:Medicina (Kaunas, Lithuania) Lithuania), 2020-09, Vol.56 (9), p.457
Hauptverfasser: Etemadi Sh, Milad, Hsieh, Nan-Chen, Movahed Mohammadi, Seyed Shahin, Momeni, Shahrooz, Razavi, Seyed Mohammad, Alizargar, Javad
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Sprache:eng
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Zusammenfassung:: Mechanical stimulation can improve the structural properties of the fracture site and induce the differentiation of different cell types for bone regeneration. This study aimed to compare the effect of low-intensity pulsed ultrasound stimulation (LIPUS) versus whole body vibration (WBV) on healing of mandibular bone defects. : A mandibular defect was created in 66 rats. The rats were randomly divided into two groups of rats. Each group was subdivided randomly by three groups ( = 11) as follows: (I) control group, (II) treatment with LIPUS, and (III) treatment with WBV. The radiographic changes in bone density, the ratio of lamellar bone to the entire bone volume, the ratio of the newly formed bone to the connective tissue and inflammation grade were evaluated after 1 and 2 months. : LIPUS significantly increased the radiographic bone density change compared to the control group at the first and second month postoperatively ( < 0.01). WBV only significantly increased the bone density compared to the control group at the second month after the surgery ( < 0.01). : Application of LIPUS and WBV may enhance the regeneration of mandibular bone defects in rats. Although LIPUS and WBV are effective in mandibular bone healing, the effects of LIPUS are faster and greater than WBV.
ISSN:1648-9144
1010-660X
1648-9144
DOI:10.3390/medicina56090457