The Experts below are selected from a list of 9 Experts worldwide ranked by ideXlab platform

Du L - One of the best experts on this subject based on the ideXlab platform.

  • Effect of simulating static magnetic field of magnetic Attachment on osteoblastic morphology and surface ultrastructure
    Chinese journal of stomatology, 2008
    Co-Authors: Yao W, Yongqi Zhao, Li By, Yong-lie Chao, Du L
    Abstract:

    Objective To investigate effects of the stoic magnetic field(SMF)generated by dental magnetic Attachment on osteoblastic morphology and surface ultrastructure. Methods The in vitro cultured rat osteoblasts were exposed continuously to 12.5 mT,125 mT,and 250 mT static magnetic fields for 1,3,5,and 7 days. After exposed in SMF,osteoblasts were observed under a pliase contrast microscope,and then HE stained and observed under a light microscope. In addition, the cells were observed under a scanning electron microscope(SEM). ResulIs By continuous exposure,the different intensities of SMF exposure did not change the vital osteoblast growth pattern or distribution. The SEM photos showed that there were certain changes in cellular microstructures for osteoblasts after exposed to 12.5 mT for 5 to 7 days,as well as 125 mT and 250 mT for 3 to 7 days. The more exposure time increased,the more microvesicles on the surfaces of cells were observed. Conclusions Continuous SMF-stimulation could not affect the shape,distribution, and growth pattern of osteoblasts. The SMF of magnetic Attachments could lead to certain changes in surface uhrastructures of osteoblasts in this study. Key words: Osteoblasts;  Denture Precision Attachment;  Static magnetic field;  Ultrastructure

Yao W - One of the best experts on this subject based on the ideXlab platform.

  • Effect of simulating static magnetic field of magnetic Attachment on osteoblastic morphology and surface ultrastructure
    Chinese journal of stomatology, 2008
    Co-Authors: Yao W, Yongqi Zhao, Li By, Yong-lie Chao, Du L
    Abstract:

    Objective To investigate effects of the stoic magnetic field(SMF)generated by dental magnetic Attachment on osteoblastic morphology and surface ultrastructure. Methods The in vitro cultured rat osteoblasts were exposed continuously to 12.5 mT,125 mT,and 250 mT static magnetic fields for 1,3,5,and 7 days. After exposed in SMF,osteoblasts were observed under a pliase contrast microscope,and then HE stained and observed under a light microscope. In addition, the cells were observed under a scanning electron microscope(SEM). ResulIs By continuous exposure,the different intensities of SMF exposure did not change the vital osteoblast growth pattern or distribution. The SEM photos showed that there were certain changes in cellular microstructures for osteoblasts after exposed to 12.5 mT for 5 to 7 days,as well as 125 mT and 250 mT for 3 to 7 days. The more exposure time increased,the more microvesicles on the surfaces of cells were observed. Conclusions Continuous SMF-stimulation could not affect the shape,distribution, and growth pattern of osteoblasts. The SMF of magnetic Attachments could lead to certain changes in surface uhrastructures of osteoblasts in this study. Key words: Osteoblasts;  Denture Precision Attachment;  Static magnetic field;  Ultrastructure

Yongqi Zhao - One of the best experts on this subject based on the ideXlab platform.

  • Effect of simulating static magnetic field of magnetic Attachment on osteoblastic morphology and surface ultrastructure
    Chinese journal of stomatology, 2008
    Co-Authors: Yao W, Yongqi Zhao, Li By, Yong-lie Chao, Du L
    Abstract:

    Objective To investigate effects of the stoic magnetic field(SMF)generated by dental magnetic Attachment on osteoblastic morphology and surface ultrastructure. Methods The in vitro cultured rat osteoblasts were exposed continuously to 12.5 mT,125 mT,and 250 mT static magnetic fields for 1,3,5,and 7 days. After exposed in SMF,osteoblasts were observed under a pliase contrast microscope,and then HE stained and observed under a light microscope. In addition, the cells were observed under a scanning electron microscope(SEM). ResulIs By continuous exposure,the different intensities of SMF exposure did not change the vital osteoblast growth pattern or distribution. The SEM photos showed that there were certain changes in cellular microstructures for osteoblasts after exposed to 12.5 mT for 5 to 7 days,as well as 125 mT and 250 mT for 3 to 7 days. The more exposure time increased,the more microvesicles on the surfaces of cells were observed. Conclusions Continuous SMF-stimulation could not affect the shape,distribution, and growth pattern of osteoblasts. The SMF of magnetic Attachments could lead to certain changes in surface uhrastructures of osteoblasts in this study. Key words: Osteoblasts;  Denture Precision Attachment;  Static magnetic field;  Ultrastructure

Li By - One of the best experts on this subject based on the ideXlab platform.

  • Effect of simulating static magnetic field of magnetic Attachment on osteoblastic morphology and surface ultrastructure
    Chinese journal of stomatology, 2008
    Co-Authors: Yao W, Yongqi Zhao, Li By, Yong-lie Chao, Du L
    Abstract:

    Objective To investigate effects of the stoic magnetic field(SMF)generated by dental magnetic Attachment on osteoblastic morphology and surface ultrastructure. Methods The in vitro cultured rat osteoblasts were exposed continuously to 12.5 mT,125 mT,and 250 mT static magnetic fields for 1,3,5,and 7 days. After exposed in SMF,osteoblasts were observed under a pliase contrast microscope,and then HE stained and observed under a light microscope. In addition, the cells were observed under a scanning electron microscope(SEM). ResulIs By continuous exposure,the different intensities of SMF exposure did not change the vital osteoblast growth pattern or distribution. The SEM photos showed that there were certain changes in cellular microstructures for osteoblasts after exposed to 12.5 mT for 5 to 7 days,as well as 125 mT and 250 mT for 3 to 7 days. The more exposure time increased,the more microvesicles on the surfaces of cells were observed. Conclusions Continuous SMF-stimulation could not affect the shape,distribution, and growth pattern of osteoblasts. The SMF of magnetic Attachments could lead to certain changes in surface uhrastructures of osteoblasts in this study. Key words: Osteoblasts;  Denture Precision Attachment;  Static magnetic field;  Ultrastructure

Yong-lie Chao - One of the best experts on this subject based on the ideXlab platform.

  • Effect of simulating static magnetic field of magnetic Attachment on osteoblastic morphology and surface ultrastructure
    Chinese journal of stomatology, 2008
    Co-Authors: Yao W, Yongqi Zhao, Li By, Yong-lie Chao, Du L
    Abstract:

    Objective To investigate effects of the stoic magnetic field(SMF)generated by dental magnetic Attachment on osteoblastic morphology and surface ultrastructure. Methods The in vitro cultured rat osteoblasts were exposed continuously to 12.5 mT,125 mT,and 250 mT static magnetic fields for 1,3,5,and 7 days. After exposed in SMF,osteoblasts were observed under a pliase contrast microscope,and then HE stained and observed under a light microscope. In addition, the cells were observed under a scanning electron microscope(SEM). ResulIs By continuous exposure,the different intensities of SMF exposure did not change the vital osteoblast growth pattern or distribution. The SEM photos showed that there were certain changes in cellular microstructures for osteoblasts after exposed to 12.5 mT for 5 to 7 days,as well as 125 mT and 250 mT for 3 to 7 days. The more exposure time increased,the more microvesicles on the surfaces of cells were observed. Conclusions Continuous SMF-stimulation could not affect the shape,distribution, and growth pattern of osteoblasts. The SMF of magnetic Attachments could lead to certain changes in surface uhrastructures of osteoblasts in this study. Key words: Osteoblasts;  Denture Precision Attachment;  Static magnetic field;  Ultrastructure