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Titlebook: World Congress on Medical Physics and Biomedical Engineering September 7 - 12, 2009 Munich, Germany; Vol. 25/XI Biomedica Olaf Dössel,Wolfg

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Novel Designs for Middle Ear Implants Produced by Micro Injection Molding, prevent harm caused by excessive acoustic pressure. A new design for middle ear implants, composed of several integral hinges and produced by micro injection molding (MIM) resolves this limitation..Several designs were developed and simulated under static load, equivalent to a sound pressure level
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Development of a High Performance Green Laser Cavity for Retinal Photocoagulation,e Pumped Solid State Laser technology and Second Harmonic Generation. The main application of the designed cavity module is the development of a portable equipment for Retinal Photocoagulation that will be able to treat several kinds of eye diseases, such as: proliferative and non-proliferative diab
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Zoom Slit Lamp Adapter for Ophthalmological Green Laser,g system is composed by a collimation doublet that focuses the green laser beam from the cavity to a 105μm optical fiber core. The coupling efficiency reached was around 90-95%. The other side of the fiber is aligned by a micro-mechanic centralizer that guides the beam to the SLA optical system. Thi
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Neuromagnetic Responses Elicited by Tones and Chords of Different Intensities and Frequency Compone effects of other acoustic parameters of stimulus sounds or endogenous factors such as attention are investigated in the auditory experiments. Sound intensity can be defined by several parameters such as temporal peak intensity, RMS intensity and spectral peak intensity of frequency component(s). Th
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The Precision of Neuronal Coding in the Auditory Brainstem and Implications for Cochlear Implants,oral resolution. The largest detriments in performance are in noisy conditions, the appreciation of music, perception of tonal languages and spatial hearing. As for these tasks temporal information is thought to play a crucial role, we analyzed the precision of coding by neurons in the auditory brai
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