980 resultados para Breathing apparatus.


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El sistema respiratorio, es uno de los principales sistemas de soporte vital del cuerpo. Aquí se explican los pulmones, cómo funcionan, y problemas respiratorios. Se ha mantenido el detalle anatómico, pero también incluye un primer plano desde el punto de vista médico con fotografías en color. Se hace énfasis en la educación para la salud y la importancia de cuidar nuestro cuerpo.

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Los pequeños pueden aprender las complejidades del sistema respiratorio no sólo de una manera informativa, sino también con experimentos sencillos, que muestran cómo es y cómo funciona realmente. Para averiguar la razón del estornudo, la tos y el hipo, las alergias y el cáncer de pulmón.

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Various methods of assessment have been applied to the One Dimensional Time to Explosion (ODTX) apparatus and experiments with the aim of allowing an estimate of the comparative violence of the explosion event to be made. Non-mechanical methods used were a simple visual inspection, measuring the increase in the void volume of the anvils following an explosion and measuring the velocity of the sound produced by the explosion over 1 metre. Mechanical methods used included monitoring piezo-electric devices inserted in the frame of the machine and measuring the rotational velocity of a rotating bar placed on the top of the anvils after it had been displaced by the shock wave. This last method, which resembles original Hopkinson Bar experiments, seemed the easiest to apply and analyse, giving relative rankings of violence and the possibility of the calculation of a “detonation” pressure.

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A One-Dimensional Time to Explosion (ODTX) apparatus has been used to study the times to explosion of a number of compositions based on RDX and HMX over a range of contact temperatures. The times to explosion at any given temperature tend to increase from RDX to HMX and with the proportion of HMX in the composition. Thermal ignition theory has been applied to time to explosion data to calculate kinetic parameters. The apparent activation energy for all of the compositions lay between 127 kJ mol−1 and 146 kJ mol−1. There were big differences in the pre-exponential factor and this controlled the time to explosion rather than the activation energy for the process.

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It is known that slow breathing (<10 breaths min(-1)) reduces blood pressure ( BP), but the mechanisms involved in this phenomenon are not completely clear. The aim of this study was to evaluate the acute responses of the muscle sympathetic nerve activity, BP and heart rate (HR), using device-guided slow breathing ( breathe with interactive music (BIM)) or calm music. In all, 27 treated mild hypertensives were enrolled. Muscle sympathetic nerve activity, BP and HR were measured for 5min before the use of the device (n=14) or while subjects listened to calm music (n=13), it was measured again for 15 min while in use and finally, 5min after the interventions. BIM device reduced respiratory rate from 16 +/- 3 beats per minute (b.p.m) to 5.5 +/- 1.8 b.p.m (P<0.05), calm music did not affect this variable. Both interventions reduced systolic (-6 and -4mmHg for both) and diastolic BPs (-4mmHg and -3mmHg, respectively) and did not affect the HR (-1 and -2 b.p.m respectively). Only the BIM device reduced the sympathetic nerve activity of the sample (-8bursts min(-1)). In conclusion, both device-guided slow breathing and listening to calm music have decreased BP but only the device-guided slow breathing was able to reduce the peripheral sympathetic nerve activity. Hypertension Research ( 2010) 33, 708-712; doi: 10.1038/hr.2010.74; published online 3 June 2010

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Method of detecting an event in electrical apparatus (146, 148, 150). Electromagnetic radiation from the apparatus, characteristic of the event, is detected. An electrical signal is generated, this representing the electromagnetic radiation. The signal is subjected to non-stationary wave signal analysis to generate an output indicative of the detecting.

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Method of detecting an event in electrical apparatus (146, 148, 150). Electromagnetic radiation from the apparatus, characteristic of the event, is detected. An electrical signal is generated, this representing the electromagnetic radiation. The signal is subjected to non-stationary wave signal analysis to generate an output indicative of the detecting.