Publications by authors named "Damian Martinez"

Live-cell super-resolution microscopy enables the imaging of biological structure dynamics below the diffraction limit. Here we present enhanced super-resolution radial fluctuations (eSRRF), substantially improving image fidelity and resolution compared to the original SRRF method. eSRRF incorporates automated parameter optimization based on the data itself, giving insight into the trade-off between resolution and fidelity.

View Article and Find Full Text PDF

The resolution of fluorescence microscopy images is limited by the physical properties of light. In the last decade, numerous super-resolution microscopy (SRM) approaches have been proposed to deal with such hindrance. Here we present Mean-Shift Super Resolution (MSSR), a new SRM algorithm based on the Mean Shift theory, which extends spatial resolution of single fluorescence images beyond the diffraction limit of light.

View Article and Find Full Text PDF

Due to the wave nature of light, optical microscopy has a lower-bound lateral resolution limit of approximately half of the wavelength of visible light, that is, within the range of 200 to 350 nm. Fluorescence fluctuation-based super-resolution microscopy (FF-SRM) is a term used to encompass a collection of image analysis techniques that rely on the statistical processing of temporal variations of the fluorescence signal. FF-SRM aims to reduce the uncertainty of the location of fluorophores within an image, often improving spatial resolution by several tens of nanometers.

View Article and Find Full Text PDF

Informal social support has long been touted as a key to success for young offenders, but little empirical work has concretized these benefits. This article explores the dynamics of informal social support for returning young offenders (ages 14-24), particularly in the context of peers and family members. The authors use a metasynthesis methodology to examine 13 qualitative articles and dissertations published in the United States from 1998 through 2010.

View Article and Find Full Text PDF