Everett Ramer Email and Phone Number
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I am an experimental scientist with background in optics and analytical instrumentation. I have experience with the automation of laboratory instruments including chromatographs, microscopes, and positioners. Design experience includes modeling for proof of concept and simulation for protocol optimization.My R&D experience includes 20 years as an imaging algorithmist developing and applying image analysis techniques for high content screening in biomedical research, structural characterization of high-porosity materials, and analysis of particles collected in environmental sampling.My software development experience is in C, C++, C#, R, and Python.My greatest strength is finding simple solutions to challenging R&D problems based on an in-depth understanding the problems, knowledge of approaches others have taken, creation of my own, original solutions, use of analytical and modeling methods to evaluate possible solutions and determine trade-offs, and acceptance of work-arounds when necessary (recognizing that a partial solution may be significantly better than no solution).
Maison De L'Amitie - Montréal
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- maisondelamitie.ca
- Employees:
- 12
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English Second Language TeacherMaison De L'Amitie - Montréal Jun 2023 - PresentMontreal, Quebec, Canada -
RetiredRetired Jun 2020 - PresentNewark, Delaware, United States
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Lab ManagerUniversity Of Delaware Jul 2015 - Jun 2020Newark, DeI am currently expanding the size and functionality of lecture demonstration prep room and working with instructors to update the advanced labs in electronics/instrumentation, optics, and experimentation. -
Developer/DemonstratorDepartment Of Physics And Astronomy, University Of Pittsburgh Jan 2010 - May 2015I manage three advanced undergraduate teaching laboratories: Electronics, Optics, and Modern Physics. Develop new experiments, revise current experiments, maintain equipment, and provide hands-on help to students.Electronics: Analog and digital, introduced Arduino microcontroller as enhancement to digital portion of course.Optics: Geometric and physical optics, elecro-optics, optical Fourier transform, optical image processing, gratings, interferometers, holography, and fiber optics.Modern Physics: STM, ESR, pulsed NMR, gamma-ray spectroscopy, mass spectrometry, Mossbauer spectrometry, signal detection and analysis. Introduced R for statistical analysis of data. -
Instrument ProgrammerRj Lee Group 2006 - Dec 2009I work on a team of scientists and software engineers developing the next generation of automated scanning electron microscope. On this team I function as a software developer and chief scientist.Projects include:Image Autofocus: Challenging problem because hyteresis in focusing coils requires a uni-directional focus search strategy. Developed innovative way of determining threshold value used in gradient truncation. Electron Source Drift CorrectionVibration Detection: Implemented event-driven system to sense excessive vibration, halt image acquisition, roll back the database to purge questionable results, and resume analysis after passage of the vibration event, repeating the analysis of any discarded image fields. Rejection of Duplicate Objects: Two-pass imaging strategy employed because of sparse particles. Change in resolution separates or join proximate particles. Developed image-processing solution by creating “as-detected” and “as-measured” particle masks.Hyper-Spectral Imaging of Material Phases: Acquisition of position-tagged x-ray spectra (one spectrum/pixel). Developed progressive storage strategy that allocates image layers as needed. Implemented methods to retrieve image slices (variable thickness) and spatially averaged spectra (variable ROI size).Spatial Analysis: Implemented creation of global images, each containing the contents of hundreds of field images covering entire specimen, allowing analysis of large-scale spatial relationships between particles.Automated Particle Classification: Divide particle populations into classes, or types, on the basis of chemistry, size, and shape using statistically based clustering and machine learning methods.Parameter Optimization: Thorough first-principles analysis of work flow using models and simulation to optimize analysis and instrument parameters for maximum analysis speed and precision.Applications: steel inclusions, flyash, medical wear debris -
Senior Imaging AlgorithmistCellomics 2001 - 2006I worked as an imaging algorithmist creating new image based bioassays. My role was to work with instrumentation engineers, biologists, marketing, manufacturing, and customer support personnel to develop new assays and implement them as C++ plug-ins on Cellomics' instrument platforms.Assays developed include:Cell Analysis Tool: General-purpose bioassay used to study general cell functions such as receptor internalization and cytotoxicity.Extended Neurite Outgrowth: Identify neuronal cells in a mixed culture, quantify morphological changes in the neurons and their neurites, and identify compounds that affect these processes. In addition, the bioassay can distinguish up to 2 subpopulations of neuronal cells based on the neurotransmitter they secrete.Neuronal Explorer: Extremely powerful neurite outgrowth bioassay that has the capability of untangling crossing neurites, measuring their lengths and assigning the results to the correct neuronal cell.Synaptogenesis: Bioassay designed to quantitatively characterize the development of synapses between neurons.Spot Detector: General-purpose tool that detects and characterizes spots.Morphology Explorer: Comprehensive cell morphology tool used to characterize cell size, shape, as well as texture. Cyto-Skeleton Rearrangement: Assay designed to study cytoskeletal changes involving tubulin and actin proteins. Well Reader: “Smart” version of the standard transmission measurements (eliminates the need for blanks traditionally used to determine the background signal.) Designed as a “bridge” application to introduce high-content analysis to users of traditional well reader technology.
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Engineer: Energy Technology R&DNational Energy Technology Laboratory 1990 - 2001I worked as a principal investigator, generating proposals (internal), doing research, and publishing results. Image analysis was a key research tool.Image Analysis/Physics of Complex Materials: -Microscope and Image Analysis Laboratory: Responsible for specification and purchase of optical and electron microscopes, video camera, frame grabbers, image processing software.-Image-Based Analysis: Used Hele-Shaw Cell experimental apparatus for the measurement of fluid flow in porous media with applications in CO2 sequestration. Developed automated data acquisition system and automated image analysis method to quantitatively describe the complexity of image flow patterns.-Heat Transfer Properties: Used thin disk heater instrument to study heat transport in porous materials, including methane clathrates. Transient method with automated control and data acquisition system.Image Analysis/Stereology/Simulation:-Quantitative Characterization: Implemented stereologic methods using Optimas image analysis software to characterize the 3D microstructures of porous materials from cross-sectional images.-Error Analysis: In-depth analysis of uncertainties related to material properties measured using image analysis and stereology. -Monte Carlo Simulation: Developed models in C++ to simulate the formation of random porous materials. Used simulated materials to validate image analysis methods.Imaging 3D Surfaces: Developed image deblurring method to convert a focus series of images into a 3D surfaceImage Montaging: Developed application to assemble image montages, extending image field of view while maintaining resolution. -
Postdoctoral Research AssociateNational Energy Technology Laboratory 1987 - 1990I worked on research projects in the area of two-phase flow. The first project was a study on the use of electric fields to enhance the dispersion, and hence the combustion efficiency, of powdered coal in premixed burners. Experimental system included a pre-mixed burner, powder injection system, two-channel laser Doppler velocimeter, multi-dimensional translation stage for automated scanning of flow field.The second project was the study of particle-wall collisions in particle-laden flows through heat exchanger tube banks. Experimental system comprised a wind tunnel, banks of transparent tubes, particle injection system, pulsed laser sheet illumination optics, video image capture with frame grabber and acquisition software, and automated two-axis stage for scanning flow field. Image analysis was a key research tool.
Everett Ramer Skills
Everett Ramer Education Details
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Engineering (Bs/Phd Nuclear Engineering) -
Ms Nuclear Engineering
Frequently Asked Questions about Everett Ramer
What company does Everett Ramer work for?
Everett Ramer works for Maison De L'amitie - Montréal
What is Everett Ramer's role at the current company?
Everett Ramer's current role is ESL Teacher.
What is Everett Ramer's email address?
Everett Ramer's email address is ev****@****ero.net
What is Everett Ramer's direct phone number?
Everett Ramer's direct phone number is (302) 831*****
What schools did Everett Ramer attend?
Everett Ramer attended Kansas State University, University Of Wisconsin-Madison.
What skills is Everett Ramer known for?
Everett Ramer has skills like Matlab, Microscopy, Characterization, Physics, R&d, Cell, Scanning Electron Microscopy, Spectroscopy, Image Analysis, Image Processing, Simulations, C++.
Who are Everett Ramer's colleagues?
Everett Ramer's colleagues are Annie Duchesne, Maison De L'amitié De Montréal, Mounia Derragui, Sarah Cunningham, Gerry Del Guercio, Lilibeth Mena Dominguez, Jeeun Park.
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