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1.
Sensors (Basel) ; 22(2)2022 Jan 07.
Artículo en Inglés | MEDLINE | ID: mdl-35062404

RESUMEN

In aquaculture, the density of fish stock, use of feeding, and surrounding environmental conditions can easily result in an excessive concentration of harmful compounds that require continuous monitoring. Chemical sensors are available for most of these compounds, however, operative conditions and continuous monitoring in water make the development of sensors suitable for long and unattended deployments difficult. A possible solution is the development of engineered automatic labs where the uptake of sample and the contact with water is reduced and the use of a minimal quantity of reagents enables the implementation of reliable chemical assays. In this paper, a platform for automatic chemical assays is presented. The concept is demonstrated with the detection of nitrites based on the well-known colorimetric Griess reaction. The platform is centered around a lab-on-a-chip where reagents and water samples are mixed. The color of the reaction product is measured with low-cost optoelectronic components. Results show the feasibility of the approach with a minimum detectable concentration of about 0.1 mg/L which is below the tolerance level for aquaculture farms.


Asunto(s)
Nitritos , Contaminantes Químicos del Agua , Animales , Acuicultura , Colorimetría , Dispositivos Laboratorio en un Chip , Nitritos/análisis , Contaminantes Químicos del Agua/análisis
2.
Arthroscopy ; 23(11): 1243.e1-4, 2007 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-17986416

RESUMEN

The patient is placed in lateral decubitus. A 6-cm incision made in the axilla allows access to the latissimus dorsi tendon and its neurovascular pedicle. Holding the arm in internal rotation, the surgeon detaches sharply the tendon off the humeral shaft and then reinforces it with wrapping sutures. Pulling the free limbs of the sutures exposes the under surface of the muscle and helps to identify the neurovascular pedicle. Special lighting retractors suited for a large diameter scope are helpful. Mobilization is completed when 2 cm of the tendon crosses the posterior edge of the acromion. The standard lateral portal is used for visualization. A silicon drain tube stiffened by a Wissinger rod is advanced from the posterior portal under direct visualization in the space between teres minor and deltoid, exiting in the auxiliary incision. A suture loop passed down the tube retrieves the tendon sutures out the posterior portal. These are then moved out the anterior portal, thus pulling the tendon over the tuberosity. The first anchor is inserted at the anterior aspect of the greater tuberosity, close to the articular cartilage and long head of the biceps tendon. Two to 3 anchors are inserted fixing the tendon to the tuberosity until it is stable.


Asunto(s)
Artroscopía/métodos , Manguito de los Rotadores/cirugía , Transferencia Tendinosa/métodos , Humanos , Planificación de Atención al Paciente , Lesiones del Manguito de los Rotadores , Técnicas de Sutura
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