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Biomedical subjects

G Ottl

Publications and source records attributed to G Ottl.

5 recordsLinked to original sources

[In Process Citation]

Since their first description several years ago, superior||| glenoid labral lesions have increasingly been blamed for shoulder problems||| associated with sports. Originally merely describing arthroscopically visible||| upper labral/biceps abnormalities, the current understanding is that often||| clinical problems such as impingement pain or even rotator cuff disease can be||| secondary to these lesions, especially in overhead athletes. Impingement in||| these cases is caused by superior shoulder instability originating from an||| unstable biceps insertion that is present for example in SLAP (superior labrum||| from anterior to posterior) lesions. Additional problems such as internal or||| posterosuperior impingement that are often found simultaneously in these||| patients are pathomorphologically located in the same anatomical region and||| therefore make exact diagnosis and thus treatment more complex. Magnetic||| resonance imaging with intra-articular contrast enhancement and particularly||| arthroscopy are the primary tools for exact diagnosis and classification of||| superior labral/biceps pathology. Therapeutically, lesions with unstable biceps||| origin (SLAP types 2 and 4) require operative refixation, as we have seen in||| our 50 cases in the last 4 years, in order to reestablish the stabilising||| effect of the biceps tendon for the shoulder joint. The arthroscopic technique||| for repair of these lesions using different devices of implantable suture||| anchors is presented. Long-term pain-free shoulder function in competitive||| athletes, throwers in particular, thus requires anatomical reconstruction of||| the originally unstable biceps, which is the causal therapy for these||| lesions.

Journal Article↗

[Superior labrum pathology in the athlete].

Since their first description several years ago, superior glenoid labral lesions have increasingly been blamed for shoulder problems associated with sports. Originally merely describing arthroscopically visible upper labral/biceps abnormalities, the current understanding is that often clinical problems such as impingement pain or even rotator cuff disease can be secondary to these lesions, especially in overhead athletes. Impingement in these cases is caused by superior shoulder instability originating from an unstable biceps insertion that is present for example in SLAP (superior labrum from anterior to posterior) lesions. Additional problems such as internal or posterosuperior impingement that are often found simultaneously in these patients are pathomorphologically located in the same anatomical region and therefore make exact diagnosis and thus treatment more complex. Magnetic resonance imaging with intra-articular contrast enhancement and particularly arthroscopy are the primary tools for exact diagnosis and classification of superior labral/biceps pathology. Therapeutically, lesions with unstable biceps origin (SLAP types 2 and 4) require operative refixation, as we have seen in our 50 cases in the last 4 years, in order to reestablish the stabilising effect of the biceps tendon for the shoulder joint. The arthroscopic technique for repair of these lesions using different devices of implantable suture anchors is presented. Long-term pain-free shoulder function in competitive athletes, throwers in particular, thus requires anatomical reconstruction of the originally unstable biceps, which is the causal therapy for these lesions.

Arthroscopy↗

[Chondral and osteochondral lesions of the upper ankle joint. Clinical aspects, diagnosis and therapy].

Chondral and osteochondral lesions as well as bone bruises of the ankle are caused in the most cases by trauma and are localized almost exclusively at the talus. For diagnosis, operative management and follow up, magnetic resonance imaging was useful, which can be further improved by application of intravenous or intraarticullar contrast enhancement (Gadolinium). In adults operative therapy is favored. Due to new techniques, arthroscopy became an important alternative to arthrotomy. According to the stage of the disease, drilling or curettage, removal or fixation of the fragment, autologous bone transplantation or osteochondral graft can be performed. All procedures can be managed arthroscopically.

Adult↗

[Prospective comparison of ARTOSCAN-MRI and arthroscopy in knee injuries].

The results of magnetic resonance imaging (MRI) were compared with those of arthroscopy in a prospective series of 276 patients. A "dedicated system" for MRI of limbs and peripheral joints--the 0,2 Tesla ARTOSCAN (ESAOTE, Italy)--was used for imaging knee joint lesions. T1-weighted spin echo sagittal images, T2-weighted gradient-echo coronal images, and axial views for lesions of bone and the femoropatellar joint were acquired. If necessary paraxial sagittal and oblique coronal views were obtained for imaging of the cruciate ligaments. This protocol allowed excellent visualization of the cruciate ligaments, medial and lateral meniscus in almost all patients. Compared with arthroscopy performed within 48 hours after imaging, the sensitivity, specificity, and accuracy were respectively, 91, 92 and 91 per cent for tears of the medial meniscus; 80, 96, and 92 per cent for tears of the posterior meniscus; 100, 100, and 100 per cent for tears of the posterior cruciate ligament; 93, 98, and 99 per cent for tears of the anterior cruciate ligament; and 73, 100, and 92 per cent for full-thickness articular cartilage lesions. The examination can be performed within 30 to 45 minutes at a cost that is lower than that of diagnostic arthroscopy. ARTOSCAN imaging is a safe and valuable adjunct to the clinical examination of the knee and an aid to efficient preoperative planning.

Adolescent↗