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1.
Acta Ortop Mex ; 35(4): 331-340, 2021.
Artigo em Espanhol | MEDLINE | ID: mdl-35139592

RESUMO

INTRODUCTION: Osteoarthritis in Mexico is one of the ten most frequent causes of disability. Early diagnosis and detection of risk factors are determinant for treatment. The institutional organization establishes therapeutic guidelines according to each level of care, but effective management is not achieved. MATERIAL AND METHODS: A prospective, pilot, interventional, clinical study was conducted, which included patients diagnosed with different degrees of knee osteoarthritis in the first, second and third level of care, with an integrative model that includes a group of professionals for the intervention of nutritional, physiotherapeutic, social and psychological evaluation from the first level. RESULTS: The intervention of a multidisciplinary care group allows a correct evaluation and assignment of the level of care, optimizing human and material resources. The participation of different disciplines in nutrition, psychology, social work, physiotherapy and rehabilitation modifies the global lifestyle by involving the patients themselves in their treatment. The intervention group had improvements in the visual analog pain scale, mobility arcs, low body mass index and improvement in the psychological aspect. CONCLUSIONS: The proposed model of care demonstrates that implementation in the institution and in each clinical care unit should be considered to improve outcomes.


INTRODUCCIÓN: La osteoartritis en México es una de las 10 causas más frecuentes de discapacidad. El diagnóstico temprano y la detección de factores de riesgo son determinantes para el tratamiento. La organización institucional establece las pautas terapéuticas de acuerdo con cada nivel de atención, pero no se logra un manejo efectivo. MATERIAL Y MÉTODOS: Se realizó un estudio prospectivo, piloto, de intervención, clínico conformado por pacientes diagnosticados con diferentes grados de osteoartritis de rodilla en el primer, segundo y tercer nivel de atención, con un modelo integrador que incluyó un grupo de profesionales para la intervención de la evaluación nutricional, fisioterapéutica, social y sicológica desde el primer nivel. RESULTADOS: La intervención de un grupo de atención multidisciplinaria permite una correcta evaluación y asignación del nivel de atención optimizando los recursos humanos y materiales. La participación de diferentes disciplinas en nutrición, sicología, trabajo social, fisioterapia y rehabilitación modifica el estilo de vida global al involucrar a los propios pacientes en su tratamiento. El grupo de intervención tuvo mejoras en la escala de dolor análogo visual, arcos de movilidad, bajo índice de masa corporal y mejoría en el aspecto sicológico. CONCLUSIONES: El modelo de atención propuesto demuestra que la implementación en la institución y en cada unidad clínica de atención debe considerarse para mejorar los resultados.


Assuntos
Osteoartrite do Joelho , Humanos , México , Osteoartrite do Joelho/terapia , Medição da Dor , Estudos Prospectivos
2.
Sci Rep ; 9(1): 7321, 2019 May 13.
Artigo em Inglês | MEDLINE | ID: mdl-31086214

RESUMO

The interaction of light with nanometer-sized solids provides the means of focusing optical radiation to sub-wavelength spatial scales with associated electric field enhancements offering new opportunities for multifaceted applications. We utilize collective effects in nanoplasmas with sub-two-cycle light pulses of extreme intensity to extend the waveform-dependent electron acceleration regime into the relativistic realm, by using 106 times higher intensity than previous works to date. Through irradiation of nanometric tungsten needles, we obtain multi-MeV energy electron bunches, whose energy and direction can be steered by the combined effect of the induced near-field and the laser field. We identified a two-step mechanism for the electron acceleration: (i) ejection within a sub-half-optical-cycle into the near-field from the target at >TVm-1 acceleration fields, and (ii) subsequent acceleration in vacuum by the intense laser field. Our observations raise the prospect of isolating and controlling relativistic attosecond electron bunches, and pave the way for next generation electron and photon sources.

3.
Sci Rep ; 7(1): 5224, 2017 07 12.
Artigo em Inglês | MEDLINE | ID: mdl-28701692

RESUMO

The observation and manipulation of electron dynamics in matter call for attosecond light pulses, routinely available from high-order harmonic generation driven by few-femtosecond lasers. However, the energy limitation of these lasers supports only weak sources and correspondingly linear attosecond studies. Here we report on an optical parametric synthesizer designed for nonlinear attosecond optics and relativistic laser-plasma physics. This synthesizer uniquely combines ultra-relativistic focused intensities of about 1020 W/cm2 with a pulse duration of sub-two carrier-wave cycles. The coherent combination of two sequentially amplified and complementary spectral ranges yields sub-5-fs pulses with multi-TW peak power. The application of this source allows the generation of a broad spectral continuum at 100-eV photon energy in gases as well as high-order harmonics in relativistic plasmas. Unprecedented spatio-temporal confinement of light now permits the investigation of electric-field-driven electron phenomena in the relativistic regime and ultimately the rise of next-generation intense isolated attosecond sources.

4.
Phys Rev Lett ; 117(14): 144801, 2016 Sep 30.
Artigo em Inglês | MEDLINE | ID: mdl-27740829

RESUMO

Few-fs electron bunches from laser wakefield acceleration (LWFA) can efficiently drive plasma wakefields (PWFs), as shown by their propagation through underdense plasma in two experiments. A strong and density-insensitive deceleration of the bunches has been observed in 2 mm of 10^{18} cm^{-3} density plasma with 5.1 GV/m average gradient, which is attributed to a self-driven PWF. This observation implies that the physics of PWFs, usually relying on large-scale rf accelerators as drivers, can be studied by tabletop LWFA electron sources.

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