PRESENTATION OF CASE: 1st case: A-39-years-old male, complain of irreducible right patella dislocation with valgus knee and already done soft tissue procedure for patella dislocation. Long-leg radiographs of the right leg showed 18° valgus mechanical angle. 2nd case: A-26-years-old obese female, complain of dislocation of left patella and history of surgery for dislocation at 5 years old. Long-leg radiographs of the right leg showed 11° valgus mechanical angle.
DISCUSSION: After knowing the cause of the patellar dislocation from history taking, physical and supporting examination, we performed lateral open wedge distal femoral osteotomy also MPFL and MCL reconstruction, and tibial tuberosity medialization osteotomy. There is improvement mean score in Tegner Lysholm Knee Scoring system and IKDC Scoring at 6 months after surgery.
CONCLUSION: Lateral open wedge distal femur osteotomy combine with MPFL and MCL reconstruction and tibial tuberosity medialization realignment procedure can be successfully done for improve irreducible patellar dislocation in valgus knee, from clinical and radiological evaluation have good outcome after surgery.
INTRODUCTION: This study ascertains the minimum level of follow-up exercise required to maintain bone gains induced by an 8-week jumping exercise in rats.
METHODS: Twelve groups of 12-week old rats (n = 10 rats per group) were given either no exercise for 8 (8S) or 32 weeks (32S), or received 8 weeks of standard training program (8STP) that consisted of 200 jumps per week, given at 40 jumps per day for 5 days per week, followed by 24 weeks of exercise at loads of either 40 or 20 or 10 jumps per day, for either 5, or 3, or 1 day/week. Bone mass, strength, and morphometric properties were measured in the right tibia. Data were analyzed using one-way analyses of variance.
RESULTS: Bone mass, strength, mid-shaft periosteal perimeter and cortical area were significantly (p < 0.05) higher in the rats given 8STP than that in the 8S group. The minimal level of exercise required to maintain the bone gains was 31, 36, 25, and 21 jumps per week for mass, strength, periosteal perimeter and cortical area, respectively.
CONCLUSIONS: Eight weeks of jumping exercise-induced bone gains could be maintained for a period of 24 weeks with follow-up exercise consisting of 11% to 18% of the initial exercise load.