The Experts below are selected from a list of 321 Experts worldwide ranked by ideXlab platform

Kollerov Miu - One of the best experts on this subject based on the ideXlab platform.

  • Radical thoracoplasty by the funneled Thorax Malformation in adults
    Khirurgiia, 2010
    Co-Authors: Kollerov Miu
    Abstract:

    Early and long-term results of radical thoracoplasty in 114 adult patients with funnel chest are presented. The Sulamaa-Paltia operation was performed in 24 patients, thoracoplasty with sternocostal complex fixing by arcuated nitinol plates was made in 30 patients. Thoracoplasty with sternocostal complex fixing by M-shaped nitinol plates was performed in 60 cases. Two patients after Sulamaa-Paltia operation demonstrated the plate displacement, which caused the relapse of the disease. Those patients, who had other techniques applied, showed no signs of relapse. Thus, Sulamaa-Paltia operation allowed good results in 83,3% of the treated patients; the use of arcuated and M-shaped plates showed good results in 93,3 and 98,3%, respectively.

Guorong Lyu - One of the best experts on this subject based on the ideXlab platform.

  • Application of 3D ultrasound VOCAL technique in the detection of fetal Thorax
    Chinese Journal of Ultrasonography, 2017
    Co-Authors: Xihua Lian, Guorong Lyu
    Abstract:

    Objective To establish the normal data of the fetal Thorax, and to evaluate its values in the diagnosis of fetal Thorax Malformation. Methods Totally 398 normal singleton fetuses at 16 to 36 gestational weeks(GW) were enrolled, 2D-US and 3D-US VOCAL technique were used to measure the 2D data and 3D volumes on the transverse section at the level of the four-chamber view, and the correlation among all measurements with GW was analyzed. Thirty fetuses collected randomly were examined to analyze the reliability. Nine fetuses with congenital thoracic dysplasia (CTD) and 10 fetuses with congenital diaphragmatic hernia (CDH) were assessed and compared with the normal fetuses. Results ① In healthy controls, the fetal thoracic 2D measurements and 3D volumes increased along with the growth of the GW. The regression equations were listed as follows: thoracic transverse diameter (cm)=-0.002 GW2+ 0.301GW-1.510; thoracic anteroposterior diameter (cm)=0.003GW2+ 0.046GW+ 0.666; thoracic area (cm2)=0.071GW2-1.466 GW+ 14.728; thoracic circumference (cm) =0.01GW2+ 0.313GW+ 3.341; thoracic volume (cm3)=0.285GW2-7.797GW+ 66.592; lung volume (cm3)=0.178GW2-5.317GW+ 45.539; the ratio of lung volume to thoracic volume=0.005GW+ 0.396. ② The reliabilities of the data obtained by the same /two different operators were good. ③ CTD group was obviously lower than the healthy controls in all thoracic measurements (all P 0.05), while the 3D volumes and the ratio of lung volume to thoracic volume were obviously lower than those in the healthy controls (P

Xihua Lian - One of the best experts on this subject based on the ideXlab platform.

  • Application of 3D ultrasound VOCAL technique in the detection of fetal Thorax
    Chinese Journal of Ultrasonography, 2017
    Co-Authors: Xihua Lian, Guorong Lyu
    Abstract:

    Objective To establish the normal data of the fetal Thorax, and to evaluate its values in the diagnosis of fetal Thorax Malformation. Methods Totally 398 normal singleton fetuses at 16 to 36 gestational weeks(GW) were enrolled, 2D-US and 3D-US VOCAL technique were used to measure the 2D data and 3D volumes on the transverse section at the level of the four-chamber view, and the correlation among all measurements with GW was analyzed. Thirty fetuses collected randomly were examined to analyze the reliability. Nine fetuses with congenital thoracic dysplasia (CTD) and 10 fetuses with congenital diaphragmatic hernia (CDH) were assessed and compared with the normal fetuses. Results ① In healthy controls, the fetal thoracic 2D measurements and 3D volumes increased along with the growth of the GW. The regression equations were listed as follows: thoracic transverse diameter (cm)=-0.002 GW2+ 0.301GW-1.510; thoracic anteroposterior diameter (cm)=0.003GW2+ 0.046GW+ 0.666; thoracic area (cm2)=0.071GW2-1.466 GW+ 14.728; thoracic circumference (cm) =0.01GW2+ 0.313GW+ 3.341; thoracic volume (cm3)=0.285GW2-7.797GW+ 66.592; lung volume (cm3)=0.178GW2-5.317GW+ 45.539; the ratio of lung volume to thoracic volume=0.005GW+ 0.396. ② The reliabilities of the data obtained by the same /two different operators were good. ③ CTD group was obviously lower than the healthy controls in all thoracic measurements (all P 0.05), while the 3D volumes and the ratio of lung volume to thoracic volume were obviously lower than those in the healthy controls (P