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1.
Sci Data ; 10(1): 136, 2023 03 15.
Article in English | MEDLINE | ID: mdl-36922515

ABSTRACT

The Ocean Carbon and Acidification Data System (OCADS) is a data management system at the National Oceanic and Atmospheric Administration (NOAA) National Centers for Environmental Information (NCEI). It manages a wide range of ocean carbon and acidification data, including chemical, physical, and biological observations collected from research vessels, ships of opportunity, and uncrewed platforms, as well as laboratory experiment results, and model outputs. Additionally, OCADS serves as a repository for related Global Ocean Observing System (GOOS) biogeochemistry Essential Ocean Variables (EOVs), e.g., oxygen, nutrients, transient tracers, and stable isotopes. OCADS endeavors to be one of the world's leading providers of ocean carbon and acidification data, information, products, and services. To provide the best data management services to the ocean carbon and acidification research community, OCADS prioritizes adopting a customer-centric approach and gathering knowledge and expertise from the research community to improve its data management practices. OCADS aims to make all ocean carbon and acidification data accessible via a single portal, and welcomes submissions from around the world: https://www.ncei.noaa.gov/products/ocean-carbon-acidification-data-system/.

2.
Arthroscopy ; 30(11): 1413-7, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25194167

ABSTRACT

PURPOSE: To quantify the amount of the extra-articular long head of the biceps tendon (LHBT) seen during intra-articular shoulder arthroscopy by pulling the tendon into the joint with a probe through an anterior portal while viewing through a standard posterior portal. METHODS: Intra-articular shoulder arthroscopy was performed on 10 forequarter cadaveric specimens. The extra-articular portion of the LHBT was evaluated by pulling the tendon into the joint with an arthroscopic probe inserted through an anterior portal. The tendon was marked at the pulley insertion on the humerus with a vascular clip before and after the tendon was pulled into the joint. An open deltopectoral approach was performed, and the amount of extra-articular tendon visualized was calculated as an absolute amount and in relation to nearby anatomic structures. RESULTS: An additional 1.9 cm (range, 1.4 to 2.6 cm) of extra-articular LHBT was viewed by pulling the tendon into the joint with an arthroscopic probe through an anterior portal during shoulder arthroscopy. This represented 30.8% of the extra-articular portion of the tendon, 47.7% of tendon in the bicipital groove, and 76.3% of the tendon that lies under the area from the pulley insertion to the distal edge of the transverse humeral ligament. CONCLUSIONS: During intra-articular shoulder arthroscopy, the extra-articular portion of the LHBT is incompletely visualized by pulling the tendon into the joint with a probe placed through an anterior portal while viewing through a standard posterior portal. CLINICAL RELEVANCE: An additional extra-articular portion of the LHBT may be viewed by pulling the tendon into the joint with an arthroscopic probe during shoulder arthroscopy.


Subject(s)
Arthroscopy/methods , Muscle, Skeletal/anatomy & histology , Shoulder Joint/surgery , Tendons/anatomy & histology , Cadaver , Female , Humans , Ligaments, Articular , Male , Middle Aged
3.
Orthopedics ; 32(5): 367, 2009 May.
Article in English | MEDLINE | ID: mdl-19472949

ABSTRACT

Luxatio erecta, inferior dislocation of the glenohumeral joint, is a relatively rare type of glenohumeral dislocation, accounting for <0.5% of all shoulder dislocations. It has been well described in terms of presentation and conservative management. Arthroscopic findings after the more commonly found anteroinferior glenohumeral dislocation have also been described. However, we know of only 1 case report that details the arthroscopic findings and open surgical management in a patient who sustained a single episode of luxatio erecta. Additionally, we were unable to find any reports in the literature of the arthroscopic management of this type of dislocation. We present the arthroscopic findings and arthroscopic management of an 18-year-old male college football player who reported 7 episodes of left shoulder luxatio erecta. Arthroscopic evaluation revealed an extensive anterior capsulolabral injury as well as a superior labrum anteroposterior (SLAP) tear. Additionally, there were extensive articular cartilage changes of the anterosuperior glenoid, a posterior Hill-Sachs lesion, and an anterosuperior humeral head cartilage indentation. The anterior capsulolabral injury and the SLAP lesion were fixed arthroscopically with suture anchors. The remainder of the lesions were debrided. The patient was able to return to college-level football and reported no further episodes of instability, pain, or stiffness at 3-year follow-up.


Subject(s)
Arthroscopy/methods , Football/injuries , Shoulder Dislocation/pathology , Shoulder Dislocation/surgery , Shoulder Injuries , Shoulder Joint/surgery , Adolescent , Humans , Male , Recurrence , Shoulder Joint/pathology , Treatment Outcome
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