153 resultados para Auricular muscles


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Dystrophin mediates a physical link between the cytoskeleton of muscle fibers and the extracellular matrix, and its absence leads to muscle degeneration and dystrophy. In this article, we show that the lack of dystrophin affects the elasticity of individual fibers within muscle tissue explants, as probed using atomic force microscopy (AFM), providing a sensitive and quantitative description of the properties of normal and dystrophic myofibers. The rescue of dystrophin expression by exon skipping or by the ectopic expression of the utrophin analogue normalized the elasticity of dystrophic muscles, and these effects were commensurate to the functional recovery of whole muscle strength. However, a more homogeneous and widespread restoration of normal elasticity was obtained by the exon-skipping approach when comparing individual myofibers. AFM may thus provide a quantification of the functional benefit of gene therapies from live tissues coupled to single-cell resolution.

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Several dysmorphic syndromes affect the development of both the eye and the ear, but only a few are restricted to the eye and the external ear. We describe a developmental defect affecting the eye and the external ear in three members of a consanguineous family. This syndrome is characterized by ophthalmic anomalies (microcornea, microphthalmia, anterior-segment dysgenesis, cataract, coloboma of various parts of the eye, abnormalities of the retinal pigment epithelium, and rod-cone dystrophy) and a particular cleft ear lobule. Linkage analysis and mutation screening revealed in the first exon of the NKX5-3 gene a homozygous 26 nucleotide deletion, generating a truncating protein that lacked the complete homeodomain. Morpholino knockdown expression of the zebrafish nkx5-3 induced microphthalmia and disorganization of the developing retina, thus confirming that this gene represents an additional member implicated in axial patterning of the retina.

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Objective: Existing VADs are single-ventricle pumps needing anticoagulation. We developed a bi ventricular external assist device that reproduces the physiological heart muscle movement completely avoiding anticoagulants. Methods: The device has a carbon fibre skeleton fitting a 30-40 kg patient's heart, to which a Nitinol based artificial muscle is connected. The artificial muscle wraps both ventricles. The strength of the Nitinol fibres is amplified by a pivot articulation in contact with the ventricle wall. The fibres are electrically driven and a dedicated control unit has been developed. We assessed hemodynamic performances of this device using a previously described dedicated bench test. Volume ejected and pressure gradient has been measured with afterload ranging from 25 to 50mmHg. Results: With anafterload of 50mmHg the system has an ejection fraction (EF) of 10% on the right side and 8% on the left side. The system is able to generate a systolic ejection of 5,5 ml on the right side and 4,4 ml on the left side. With anafterload of 25mmHg the results are reduced of about 20%. The activation frequency is 80/minute resulting in a total volume displacement of 440 ml/minute on the right side and 352 ml/minute on the left side. Conclusions: The artificial muscle follows Starling's law as the ejected volume increases when afterload increases. These preliminary studies confirmed the possibility of improving the EF of a failing heart using artificial muscle for external cardiac compression. This device could be helpful in weaning CPB and/or for short-term cardio-circulatory support in paediatric population with cardiac failure.

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Introduction: La survenue d'une hémorragie dans les muscles iliopsoasconstitue une pathologie grave, dont le diagnostic est souventtardif et grevé d'une morbidité importante. Sa présentation cliniquedoit être reconnue précocement, en particulier par les médecins depremier recours.Cas clinique: Un patient de 65 ans est admis aux urgences en raisonde douleurs invalidantes de la jambe droite, prédominant sur la faceantérieure de la cuisse. Les douleurs irradient dans le pli inguinal, leflanc, la région lombaire, ainsi que la hanche droite. Elles sont associéesà une parésie du quadriceps droit. Le patient a bénéficié en2006 d'un remplacement de valve aortique, avec implantation d'unevalve mécanique motivant une anticoagulation par acenocoumarol.Il présente par ailleurs une parésie sur le territoire du nerf sciatiquedroit, après fracture du bassin en 1970. Le diagnostic est évoqué auvu d'une antioagulation supra-thérapeutique (INR 5).Un CT-scan de l'abdomen confirmera un important hématome(11 x 7 cm) du muscle iliaque droit (fig. 1) qui sera drainé chirurgicalement,après réversion partielle de la crase, permettant une évolutionfavorable.Discussion: Les hématomes des muscles ilio-psoas surviennentclassiquement de manière spontanée. Les symptômes sont peu spécifiques,à type de douleurs diffuses abdominales, lombaires ou crurales,de paresthésies, de limitation fonctionnelle ou de chute isoléede l'hémoglobine (Hb). Les patients sous anticoagulants (héparine,acenocoumarol) ou présentant des troubles de la coagulation (hémophilie,thrombopathie, maladie de von Willebrand) sont particulièrementà risque. Les complications sont fréquentes: compressions dunerf fémoral (avec hypoesthésie, parésie du quadriceps ou abolitiondu réflexe rotulien), anémie, état de choc. Le traitement implique lacorrection des troubles de la coagulation, ainsi qu'un suivi clinique,radiologique et biologique (Hb) régulier. Le traitement conservateurest proposé lors d'hématome de petite taille, si le patient est stable etpeu symptomatique. Dans les autres cas, un drainage chirurgical parvoie ouverte ou par voie percutanée est recommandé. L'embolisationartérielle s'affiche comme une future option thérapeutique.Conclusions: Ce cas illustre les différents éléments cliniques etbiologiques qui orientent précocement vers le diagnostic d'hématomedes muscles ilio-psoas. Il devrait favoriser l'évocation d'une pathologierare, permettant de garantir un diagnostic précoce.

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INTRODUCTION: As it might lead to less discomfort, magnetic nerve stimulation (MNS) is increasingly used as an alternative to electrical stimulation methods. Yet, MNS and electrical nerve stimulation (ENS) and electrical muscle stimulation (EMS) have not been formally compared for the evaluation of plantar flexor neuromuscular function. METHODS: We quantified plantar flexor neuromuscular function with ENS, EMS and MNS in 10 volunteers in fresh and fatigued muscles. Central alterations were assessed through changes in voluntary activation level (VAL) and peripheral function through changes in M-wave, twitch and doublet (PS100) amplitudes. Discomfort associated with 100-Hz paired stimuli delivered with each method was evaluated on a 10-cm visual analog scale. RESULTS: VAL, agonist and antagonist M-wave amplitudes and PS100 were similar between the different methods in both fresh and fatigued states. Potentiated peak twitch was lower in EMS compared to ENS, whereas no difference was found between ENS and MNS for any parameter. Discomfort associated with MNS (1.5 ± 1.4 cm) was significantly less compared to ENS (5.5 ± 1.9 cm) and EMS (4.2 ± 2.6 cm) (p < 0.05). CONCLUSION: When PS100 is used to evaluate neuromuscular properties, MNS, EMS and ENS can be used interchangeably for plantar flexor neuromuscular function assessment as they provide similar evaluation of central and peripheral factors in unfatigued and fatigued states. Importantly, electrical current spread to antagonist muscles was similar between the three methods while discomfort from MNS was much less compared to ENS and EMS. MNS may be potentially employed to assess neuromuscular function of plantar flexor muscles in fragile populations.