Preseason conditioning to prevent soccer injuries in young women.
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Biomedical subjects
Publications and source records attributed to B R Mandelbaum.
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Cartilage defects in the knee joint are common and have a bad tendency for healing due to the limited regeneration of hyaline cartilage. Surgeons have an ample choice of various operative treatment measures. Especially for the treatment of larger lesions first results of autologous chondrocyte transplantation (ACT) were published in 1994 [3]. Autologous chondrocytes are isolated from an arthoscopically harvested cartilage biopsy, cultured in vitro and implanted in the defect under a periostal flap in a second procedure. In an international multicenter study 1,051 patients treated with ACT between 6/95 and 12/98 were documented with follow-up examinations after 12 months (588 patients), 24 months (220 patients) and 36 months (40 patients). The majority of the defects (61.2%) were localized on the medial femoral condyle, measuring 4.6 cm2 and mostly described as grade III/IV lesions. The clinical evaluation was performed using a modified Cincinnati knee rating system independently for clinician and patient. Evaluations showed an increase from 3.35 to 6.25 after 24 months and from 3.10 to 6.77 in a scale from 1 (bad) to 10 (excellent). ACT favours defects of the femur with an improvement rate of 85%. Adverse events possibly related to ACT were described in 4.8% of the patients. Diagnostic second-look arthroscopies are included in the reoperation rate of 5.1%. The presented data indicate autologous chondrocyte transplantation as an effective and safe option for the treatment of large full thickness cartilage defects in the knee joint.
Ankle sprains are among the most common injuries sustained by athletes and seen by sports medicine physicians. Despite their prevalence in society, ankle sprains still remain a difficult diagnostic and therapeutic challenge in the athlete, as well as in society in general. The purpose of this section of our two-part study is to review scope of the problem, the anatomy and biomechanics of the lateral ankle ligaments, review the pathoanatomical correlates of lateral ankle sprains, the histopathogenesis of ligament healing, and define the mechanisms of injury to understand the basis of our diagnostic approach to the patient with this common acute and chronic injury. We extensively review the diagnostic evaluation including historical information and physical examination, as well as options for supplementary radiographic examination. We further discuss the differential diagnosis of the patient with recurrent instability symptoms. This will also serve as the foundation for part two of our study, which is to understand the rationale for our treatment approach for this common problem.
During the course of routine MR imaging of the shoulder, a wide variety of abnormalities may be encountered owing to the technique's broad soft-tissue contrast resolution and multiplanar tomographic capability. In this article, the authors provide an overview of the lesions that might be encountered in this setting.
A 10-yr-old gymnast, training well below the elite level, reported a 3-wk history of bilateral dorsal wrist pain. Physical examination and radiographic findings were consistent with stress injury to the distal radial growth plates. The patient's radiographs also displayed rare findings including cleft radial and ulnar epiphyses, as well as epiphyseal spur formation. Magnetic resonance imaging (MRI) demonstrated evidence of metaphyseal and epiphyseal ischemia of the growth plate. The patient responded well to conservative treatment, including ice, splinting, and activity modification. This case illustrates several potentially confusing radiographic abnormalities and the emerging role of MRI in evaluating wrist pain in young gymnasts.
Acute Achilles tendon injuries are discussed in terms of various etiologies, pathomechanics, and treatment options. Surgical management has evolved to promote the athlete's early return to sport utilizing a new suture technique and aggressive rehabilitation protocol. The specific training and recovery modalities have significantly reduced the morbidity of these injuries by restoring strength, range of motion, and preventing disuse atrophy.
In conclusion, the sports medicine specialist is able to use a spectrum of diagnostic, surgical, and rehabilitation techniques to identify etiologic factors and to choose optimal treatment regimens for patients with Achilles tendinitis or traumatic rupture. Correction of pathomechanic factors, anatomic restoration, and aggressive postoperative rehabilitation allows an early return to sport without significant loss of strength or mobility.
In vivo moment arm lengths for the Achilles tendon and tibialis anterior (TA) were determined in 10 adult male subjects. Moment arms were measured as the perpendicular distance between the joint center of rotation (CR) and the center of the muscle's tendon on a series of sagittal plane magnetic resonance images. The first set of calculations used a fixed CR and the second a moving CR. The position of the CR was determined using a modification of the graphical method of Reuleaux. For both moving and fixed CR conditions, moment arms increased by approximately 20% for the Achilles tendon and decreased by approximately 30% for the TA when the ankle moved from maximum dorsiflexion to maximum plantarflexion. Moment arms averaged 3.1% greater for the Achilles tendon and 2.5% greater for the TA when calculated using a fixed CR. These data suggest that the averaged moment arm lengths for the Achilles tendon and the TA were relatively unaffected by the use of a fixed vs moving CR.
Gymnastics is a sport which involves substantial periods of upper extremity support as well as frequent impacts to the wrist. Not surprisingly, wrist pain is a common finding in gymnasts. Of all events, the pommel horse is the most painful. In order to study the forces of wrist impact, a standard pommel horse was instrumented with a specially designed load cell to record the resultant force of the hand on the pommel during a series of basic skills performed by a group of seventeen elite male gymnasts. The highest mean peak forces were recorded during the front scissors and flair exercises (1.5 BW) with peaks of up to 2.0 BW for some gymnasts. The mean peak force for hip circles at the center or end of the horse was 1.1 BW. The mean overall loading rate (initial contact to first loading peak) ranged from 5.2 BWs-1 (hip circles) to 10.6 BW s-1 (flairs). However, many recordings displayed localized initial loading spikes which occurred during 'hard' landings on the pommel. When front scissors were performed in an aggressive manner, the initial loading spikes averaged 1.0 BW in magnitude (maximum 1.8 BW) with an average rise time of 8.2 ms; calculated localized loading rates averaged 129 BW s-1 (maximum 219 BW s-1). These loading parameters are comparable to those encountered at heel strike during running. These impact forces and loading rates are remarkably high for an upper extremity joint not normally exposed to weight-bearing loads, and may contribute to the pathogenesis of wrist injuries in gymnastics.
Pigmented villonodular synovitis (PVNS) of the knee joint remains a difficult and elusive entity to define and characterize. This entity most often appears in the young adult knee with nonspecific clinical features, including a painful range of motion and perhaps a sensation of locking. Detection and diagnosis of this localized soft-tissue mass are difficult because plain roentgenograms may be totally within normal limits. The case of a 21-year-old woman illustrates the use of magnetic resonance imaging (MRI) as an effective technique to define and characterize PVNS. Advantages of MRI include high-resolution/high-contrast multiplanar sections that depict bone, marrow, ligaments and tendons, fat, menisci, and articular cartilage in one image. In addition, MRI is noninvasive and requires no ionized radiation. MRI is an excellent clinical tool for the evaluation of intraarticular tumors of the knee joint.
The nutritional status was analyzed in 37 patients being treated with staged anterior and posterior spinal reconstructive procedures. Using stringent criteria for nutritional and immunologic incompetency, 31 patients (84%) became malnourished during hospitalization. Although the serum albumin on admission had been normal for all patients, it became significantly depressed in 77% following anterior and posterior spinal procedures. In a similar fashion, the total lymphocyte count became significantly depressed in 92%. The postoperative complications were clearly more extensive in patients who were malnourished and immune-deficient using these criteria--15 patients with urinary tract infections, four patients with bacterial sepsis, four patients with wound infections, and four patients with pneumonia (vs. one with a wound infection in the adequately nourished group). The length of hospitalization following the second operative procedure was significantly longer in the malnourished group: 16.2 days versus 12.4 days (p less than 0.05). The main purpose of this study is to create awareness of the ongoing nutritional demands placed on patients treated by two-stage spinal reconstruction surgical procedures. More aggressive nutritional intervention can reduce postoperative complications and length of hospital stay and improve the speed of functional recovery.
Neglected tears of the patellar tendon due to loss of active extension remain a difficult therapeutic endeavor. The goals in the approach to this diagnosis include restoration of both structural and functional integrity of the extensor mechanism. A procedure has been developed utilizing Z-shortening of the patellar tendon, Z-lengthening of the quadriceps tendon, and the semitendinosis gracilis as a biologic splint. This technique allows establishment of preoperative goals, including restoration of the muscle-tendon complex in its anatomic position, restoration of quadriceps function, preservation of vascularity of the reconstructed tendon, and splinting of the patellar tendon. This reconstruction allows early mobilization and rehabilitation.
Fractures of the acetabulum present a formidable diagnostic and therapeutic challenge. Improved management has decreased the mortality associated with these injuries. Prolonged survival of the severely injured has raised the associated morbidity. To improve diagnosis and treatment in these patients, computed tomography with multiplanar reconstructions has been utilized in the pre- and post-operative period in 30 patients. This refinement provides a precise, accurate, and reproducible method of establishing the diagnostic data base. Consequently it is possible to better define the pathoanatomy, make decisions as to the best technique for intervention, and facilitate execution of these techniques by improved preoperative planning and postintervention assessment. It is concluded that computed tomography with multiplanar reconstructions optimizes the ability to manage these injuries.
Multiplanar CT expands the ability of the radiologist to define the extent of disease, to suggest appropriate surgery, and to offer a probable prognosis.
Following plain radiographic examination CT with multiplanar reformatting (CT/MPR) was used to assess 34 patients with pelvic trauma and definite (24 patients) or clinically suspected (10 patients) fractures. Computed tomography/MPR detected four fractures missed on conventional radiography. The findings on CT/MPR led to major alterations of patient management in seven cases. In four patients in whom the initial decision had been to use closed management with traction, information derived from CT/MPR led to open surgical reduction. In three patients in whom the initial impression had been that open management was dictated, CT/MPR contributed anatomical information that reserved that decision, leading to more conservative management. In all patients going to surgery the surgeons believed that surgical planning and execution had been significantly affected by the information provided by CT/MPR. Computed tomography/MPR was used postoperatively in 10 patients to confirm the status of reduction and fixation and to evaluate patients with unusual problems in the recovery period.
Traumatic injury to the knee remains a diagnostic and therapeutic challenge. Magnetic resonance imaging (MRI) has been applied to musculoskeletal pathoanatomy and has been shown to be an effective tool for definition and characterization of knee pathology. A systematic approach is taken to establish anatomical and pathoanatomical correlations, as well as the role of MRI in the management of knee injuries. Imaging was performed at the UCLA Medical Center using a permanent magnet system and a combination of solenoidal surface coils and thin-section, high-resolution scanning techniques. Images depict structural anatomical and spatial details of the knee that correlate well with corresponding cadaveric cryosections. To determine pathoanatomical correlations and the efficacy of MRI, 105 patients with preoperative diagnoses of meniscal tears, anterior and posterior cruciate ligament tears, tibial plateau fracture, and patella and quadriceps injuries were imaged. Results indicated that for the medial meniscus MRI demonstrated a 95.7% sensitivity, 81.8% specificity, 90% accuracy, 88.2% positive predictive value (PPV), and 93.1% negative predictive value (NPV). Imaging of the lateral meniscus demonstrated a 75% sensitivity, 95% specificity, 91% accuracy, 80% PPV, and 94% NPV. MRI of the ACL revealed 100% sensitivity, specificity, accuracy, positive and negative predictive values. MRI is a noninvasive tool which uses no ionizing radiation and can accurately define and characterize anatomy and pathoanatomy. This study indicates that MRI in conjunction with clinical evaluation can contribute to treatment decision-making processes and assist in preoperative planning. An algorithm demonstrating the potential clinical use of MRI is presented.
Gymnast wrist pain syndrome presents a difficult diagnostic and therapeutic challenge. It is common and debilitating among gymnasts, resulting in a reduction in training and performance, and may be the result of a response to repetitive trauma during the period of growth and development. This study was undertaken to define and characterize factors contributing to the causes and development of gymnast wrist pain and to establish an effective means of systematic and comprehensive evaluation and treatment. Thirty-eight collegiate gymnasts (20 UCLA: 9 female, 11 male; 18 NCAA: all male) were evaluated by radiograph and questionnaire. Seventy-five percent (22) of the males and 33% (3) of the females had had wrist pain for at least 4 months. The UCLA males averaged 2.82 +/- 1.94 mm positive ulnar variance; this was significantly greater than that of the NCAA males, who averaged 1.28 +/- 1.02 mm (P less than 0.02). The UCLA females averaged 1.44 +/- 1.88 mm positive ulnar variance. All of the gymnasts had significantly greater variance than had the controls, who averaged -0.52 mm (P less than 0.0001). The pommel horse routine was consistently responsible for wrist pain among the males. Anatomical and histological correlation of cryosections with magnetic resonance imaging (MRI) was performed to establish the usefulness of MRI in the diagnosis of wrist pain. MRI was able to differentiate the complex transitions between cortical and trabecular bone, articular surfaces, the ligaments, and the triangular fibrocartilage (TFC) complex of the wrist joint. A therapeutic algorithm was established to facilitate the evaluation and management of gymnast wrist pain. Arthroscopic surgery was successful, and arthroscopic findings correlated well with those of MRI and arthrography. Prospective studies are now underway in the pediatric and adolescent population to define further the causes and development of wrist pain problems in gymnasts.
Shoulder complaints are common in the athletic population. Successful treatment is dependent upon the ability to correctly identify the pathologic changes associated with a specific disorder and arrive at an accurate diagnosis. Labral abnormalities are traditionally associated with glenohumeral instability. Isolated labral tears or degenerative changes may also cause shoulder dysfunction. A reliable clinical tool to assess the status of the labrum would be useful for diagnosis and management of shoulder disorders. The magnetic resonance images of 48 shoulders that had subsequent surgical examination of their labra were reviewed with respect to labral appearance. Labra appearing as abnormal were further classified as torn, degenerative, or eroded. Surgical examination was used as the reference standard. Magnetic resonance imaging demonstrated high levels of sensitivity, specificity, positive and negative predictive values, and accuracy for evaluation of the glenoid labrum. Magnetic resonance imaging is a reliable and accurate method for depicting the status of the glenoid labrum. Magnetic resonance imaging appearance of the labrum may assist the clinician in distinguishing the varying forms of shoulder dysfunction and facilitate diagnosis and effective treatment.