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find Author "CHEN Dongdong" 3 results
  • Analysis of Mammographic Characteristics of Calcification in Breast Tumor Without Mass

    ObjectiveTo investigate the X-ray diagnostic significance of calcification of the breast tumor without mass. MethodsMammograms of 90 cases of breast tumor without mass confirmed pathologically were retrospectively analyzed. There were 55 cases confirmed benign breast tumor, and the rest cases were breast cancer. The shape, distribution, total number, location of calcifications in the breast, and asymmetric dense of the breast were recorded and watched. Results①The X-ray findings of calcification in benign breast tumors always presented as coarse granular (31), scattered shape (35) with small number, less with the asymmetric dense of the breast (7), and the change of side with axillary lymph node (2). ②Meanwhile, fine sand-like (32), showing the cluster-like distribution (24) with larger number, with the asymmetric dense of the breast (24) and the change of side with axillary lymph node (10). Both of the differences of the calcifications (the shape, the distribution, and the total number) were statistically significant (Plt;0.05). ConclusionsThe calcifications of benign and malignant breast tumors have their unique X-ray characteristics. And there is a great value in differentiating early benign and malignant breast tumor.

    Release date:2016-09-08 10:42 Export PDF Favorites Scan
  • Treatment of benign bone lesions of proximal femur using dynamic hip screw and intralesional curettage via Watson-Jones approach

    ObjectiveTo explore the effectiveness of dynamic hip screw (DHS) and intralesional curettage via Watson-Jones approach in treatment of benign bone lesions of the proximal femur.MethodsBetween March 2012 and December 2016, 20 patients (21 lesions) with benign bone tumors or tumor like conditions of proximal femurs were treated with DHS and intralesional curettage via Watson-Jones approach. Their average age was 27.8 years (range, 11-51 years), including 13 males and 7 females. The pathological diagnosis were fibrous dysplasia in 11 cases, simple bone cyst in 2 cases, aneurysmal bone cyst in 2 cases, benign fibrous histocytoma in 2 cases, giant cell tumor in 2 cases, and chondroblastoma in 1 case, including 3 pathological fractures. According to the Enneking staging system, 18 patients were in stage S1, 3 patients with pathological fractures in stage S2. There was no varus deformity or valgus deformity. The operation time, intraoperative blood loss, and time of full weight-bearing were recorded. X-ray film and CT were used to observe the bone graft fusion and location of DHS. Complications were recorded. Visual analogue scale (VAS) and Musculoskeletal Tumor Society (MSTS) scoring were used to evaluate function of lower limbs.ResultsThe average operation time was 177.1 minutes (range, 110-265 minutes). The average intraoperative blood loss was 828.6 mL (range, 200-2 300 mL). There was superficial incision infection in 1 case, deep incision infection in 1 case, and hip discomfort in 1 case, respectively. All patients were followed up 6-63 months (mean, 27.4 months). The time of full weight-bearing was 2 days in 2 patients with giant cell tumor and 2 to 13 weeks with an average of 7.2 weeks in the other patients. At last follow-up, VAS and MSTS were 0.19±0.51 and 29.62±0.97 respectively, showing significant differences when compared with the values before operation (3.52±2.62 and 23.71±8.77) (t=5.565, P=0.000; t=–3.020, P=0.007 ). X-ray film showed the all bone grafts fusion with mean time of 8.2 months (range, 5-12 months). There was no pathological fracture of the femur, local tumor recurrence, chronic hip pain, dislocation, or femoral head necrosis during follow-up.ConclusionThe treatment of benign bone lesion of the proximal femur using DHS and intralesional curettage via Watson-Jones approach is a safe and effective method.

    Release date:2018-01-09 11:23 Export PDF Favorites Scan
  • Analysis on muscle force and injured femoral reduction force based on new muscle tendon model

    Robot-assisted fracture reduction usually involves fixing the proximal end of the fracture and driving the distal end of the fracture to the proximal end in a planned reduction path. In order to improve the accuracy and safety of reduction surgery, it is necessary to know the changing rule of muscle force and reduction force during reduction. Fracture reduction force was analyzed based on the muscle force of femoral. In this paper, a femoral skeletal muscle model named as PA-MTM was presented based on the four elements of skeletal muscle model. With this, pinnate angle of the skeletal muscle was considered, which had an effect on muscle force properties. Here, the muscle force of skeletal muscles in different muscle models was compared and analyzed. The muscle force and the change of the reduction force under different reduction paths were compared and simulated. The results showed that the greater the pinnate angle was, the greater the influence of muscle strength was. The biceps femoris short head played a major role in the femoral fracture reduction; the force in the z direction contributed the majority to the resulting force with maximums of 472.18 N and 497.28 N for z and resultant, respectively, and the rationality of the new musculoskeletal model was verified.

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