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Query: UNIPROT:P50502 (Hip)
7,003 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Fatigue fracture of the pelvis is the form of fracture due to repetitive micro-stress accumulation, can be affected by a number of factors such as patient's nutritional status, biomechanics, social status and so on. Still there is no study about precise standard degree of external force that lead to stress fracture, but it may caused by compression force, traction force or complex force and others. Avulsion stress to ischial tuberosity or anterior superior iliac spine by attached muscle is known as the main factor for the avulsion fracture. This report will deal with 19 years old conscripted policeman who occurred ischial tuberosity avulsion fracture after training of 6-hour running for 5 days accompanying hip hyper-flexion motion. This reports aims to provide case study of stress fracture occurred after 5 days of exercise which is relatively short period who had no specific trauma history or pain.
Hip Pelvis 2016 Sep
PMID:Ischial Tuberosity Avulsion Stress Fracture after Short Period of Repetitive Training. 2777 24

Hip arthroscopy has been increasing tremendously in the past decade and is a very common surgical procedure to repair femoroacetabular impingement. To access the hip joint, distraction is mandatory to treat intra-articular disorders such as labral tears, cartilage loose bodies, and ligamentum teres tears and to evaluate the condition of the femoral head and acetabular cartilage. To distract the hip, counterdistraction is needed, and this is achieved with placement of a bulky and cushioned perineal post. Most of the described techniques in hip arthroscopy use a perineal post, whereas others use beanbags to place the patient's body on the surgical table. Still others do not use a post at all but rather use gravity and a Trendelenburg position to achieve distraction. Our technique does not use a perineal post but instead uses heavy-duty tape over the patient's upper body, which is placed on a normal operating room table to distract the hip while entering the central compartment.
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PMID:The Tutankhamun Technique in Hip Arthroscopy. 3053 64

Hip arthroscopy can effectively address cam and pincer impingement by reshaping bone prominences or bone edges. However, hip arthroscopy cannot be used to correct severe bone torsion abnormalities such as acetabular or femoral retroversion. As a result, some surgeons contraindicate hip arthroscopy in patients with femoral retroversion absent correction of the torsion abnormalities. However, recent research has suggested that hip arthroscopy absent osteotomy, with a focus on labral preservation and thorough correction of underlying cam and pincer bony abnormalities, achieves positive outcomes. Still, although femoral retroversion should not be considered a contraindication for hip arthroscopy, patients should be carefully counseled about residual symptoms.
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PMID:Editorial Commentary: Myth Buster-Is Femoral Retroversion a Contraindication to Hip Arthroscopy in Femoroacetabular Impingement? 3162 82

Rigid body musculoskeletal models have been applied to study kinematics, moments, muscle forces, and joint reaction forces in the hip. Most often, models are driven with segment motions calculated through optical tracking of markers adhered to the skin. One limitation of optical tracking is soft tissue artifact (STA), which occurs due to motion of the skin surface relative to the underlying skeleton. The purpose of this study was to quantify differences in musculoskeletal model outputs when tracking body segment positions with skin markers as compared to bony landmarks measured by direct imaging of bone motion with dual fluoroscopy (DF). Eleven asymptomatic participants with normally developed hip anatomy were imaged with DF during level treadmill walking at a self-selected speed. Hip joint kinematics and kinetics were generated using inverse kinematics, inverse dynamics, static optimization and joint reaction force analysis. The effect of STA was assessed by comparing the difference in estimates from simulations based on skin marker positions (SM) versus virtual markers on bony landmarks from DF. While patterns were similar, STA caused underestimation of kinematics, range of motion (ROM), moments, and reaction forces at the hip, including flexion-extension ROM, maximum internal rotation joint moment and peak joint reaction force magnitude. Still, kinetic differences were relatively small, and thus they may not be relevant nor clinically meaningful.
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PMID:Soft tissue artifact causes underestimation of hip joint kinematics and kinetics in a rigid-body musculoskeletal model. 3263 3