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1.
Nature ; 606(7916): 873-877, 2022 06.
Artículo en Inglés | MEDLINE | ID: mdl-35676486

RESUMEN

The dispersive sweep of fast radio bursts (FRBs) has been used to probe the ionized baryon content of the intergalactic medium1, which is assumed to dominate the total extragalactic dispersion. Although the host-galaxy contributions to the dispersion measure appear to be small for most FRBs2, in at least one case there is evidence for an extreme magneto-ionic local environment3,4 and a compact persistent radio source5. Here we report the detection and localization of the repeating FRB 20190520B, which is co-located with a compact, persistent radio source and associated with a dwarf host galaxy of high specific-star-formation rate at a redshift of 0.241 ± 0.001. The estimated host-galaxy dispersion measure of approximately [Formula: see text] parsecs per cubic centimetre, which is nearly an order of magnitude higher than the average of FRB host galaxies2,6, far exceeds the dispersion-measure contribution of the intergalactic medium. Caution is thus warranted in inferring redshifts for FRBs without accurate host-galaxy identifications.

2.
Nature ; 587(7832): 59-62, 2020 11.
Artículo en Inglés | MEDLINE | ID: mdl-33149288

RESUMEN

Since their discovery in 20071, much effort has been devoted to uncovering the sources of the extragalactic, millisecond-duration fast radio bursts (FRBs)2. A class of neutron stars known as magnetars is a leading candidate source of FRBs3,4. Magnetars have surface magnetic fields in excess of 1014 gauss, the decay of which powers a range of high-energy phenomena5. Here we report observations of a millisecond-duration radio burst from the Galactic magnetar SGR 1935+2154, with a fluence of 1.5 ± 0.3 megajansky milliseconds. This event, FRB 200428 (ST 200428A), was detected on 28 April 2020 by the STARE2 radio array6 in the 1,281-1,468 megahertz band. The isotropic-equivalent energy released in FRB 200428 is 4 × 103 times greater than that of any radio pulse from the Crab pulsar-previously the source of the brightest Galactic radio bursts observed on similar timescales7. FRB 200428 is just 30 times less energetic than the weakest extragalactic FRB observed so far8, and is drawn from the same population as the observed FRB sample. The coincidence of FRB 200428 with an X-ray burst9-11 favours emission models that describe synchrotron masers or electromagnetic pulses powered by magnetar bursts and giant flares3,4,12,13. The discovery of FRB 200428 implies that active magnetars such as SGR 1935+2154 can produce FRBs at extragalactic distances.

4.
J Hand Ther ; 13(2): 108-23, 2000.
Artículo en Inglés | MEDLINE | ID: mdl-10855746

RESUMEN

Osteoarthritis of the fingers is an especially common condition in postmenopausal women. Many consider it a normal part of aging or a relatively minor disease. Osteoarthritis of the fingers is a disease process that destroys interphalangeal cartilage and results in pain, swelling, decreased finger motion, joint deformities, and difficulty performing activities that require grip or pinch. Medication, rest, and supportive splinting alternated with mobility and strengthening exercises, patient education, and incorporation of joint protection techniques may alleviate symptoms and improve functional abilities. Surgery is indicated when these methods have failed to control pain, instability, and deformities or improve ease of function. Joints may be fused (arthrodesis) or replaced (arthroplasty) to manage pain and produce finger joints capable of withstanding the force of normal use without pain or further joint damage. Postoperative therapy includes splinting to protect healing structures along with range-of-motion programs to maximize functional outcomes.


Asunto(s)
Dedos , Osteoartritis , Artrodesis , Fenómenos Biomecánicos , Progresión de la Enfermedad , Femenino , Humanos , Osteoartritis/diagnóstico , Osteoartritis/fisiopatología , Osteoartritis/terapia , Educación del Paciente como Asunto
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