Publications by authors named "S Werquin"

Optical microresonator biosensors have proven to be a valid tool to perform affinity analysis of a biological binding event. However, when these microresonators are excited with a single optical mode they can not distinguish between a thin dense layer of biomolecules or a thick sparse layer. This means the sensor is "blind" to changes in shape of bound biomolecules.

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In this work we explore the micro-ring resonator platform to study the diffusion-driven mass transport of small molecules within microfluidic channels. The micro-ring resonators are integrated on a silicon-on-insulator photonic chip and combined with microfluidics in poly(dimethylsiloxane) (PDMS). We apply a strong initial gradient in the solute concentration and use the micro-ring resonators to observe how this concentration evolves over time and space.

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Silicon-on-insulator microring resonators have proven to be an excellent platform for label-free nanophotonic biosensors. The high index contrast of silicon-on-insulator allows for fabrication of micrometer-size sensors. However, it also limits the quality of the resonances by introducing an intrinsic mode-splitting.

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We report the case of a Cardiobacterium hominis endocarditis causing an acute mitral insufficiency complicated of left heart failure. The patient has been treated after a few days by surgical valvuloplasty. Cardiobacterium hominis is a bacteria of the HACCEK group, bacille gram-negative, sometimes anaerobic, difficult to isolate.

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beta-Adrenergic blocking drugs are effective in reducing sudden cardiac death after acute myocardial infarction but the precise mechanism of this effect is unclear. We investigated the acute and chronic effects of acebutolol, a beta-adrenergic blocker, on electrocardiographic parameters, diastolic excitability threshold (DET), and right ventricular effective refractory period (RVERP) in chronically instrumented conscious dogs. These parameters were determined during spontaneous sinus rhythm and at a fixed pacing rate (200 beats/min).

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