Service Engineer
Desired Candidate Profile
Must be interested in travelling, passion to learn on radio therapy and radiology machines, career oriented. Communication must be good Hindi, Eng is a must.
Job Description
Includes travelling oftenly, Interest in the same field, handling Radiology and radiotherapy machices, Mostly qualified in Dip-Electronics
Keywords: Willing to travel, knowledge of servicing of instruments, good communication skill
Company Profile
Panacea Medical Technologies is a professionally run company committed to deliver the best value medical equipments including oncology. The company strives to develop manufacture and service medical machines employing the best technologies.
This is a preview of Fresher Biomedical Service Engineer Required in Bangalore.
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Recent Advances in Biomedical Imaging and Signal Analysis
M. Unser Proceedings of the Eighteenth European Signal Processing Conference (EUSIPCO’10), Ålborg, Denmark, August 23-27, 2010, EURASIP Fellow inaugural lecture.
Wavelets have the remarkable property of providing sparse representations of a wide variety of “natural” images. They have been applied successfully to biomedical image analysis and processing since the early 1990s.
In the first part of this talk, we explain how one can exploit the sparsifying property of wavelets to design more effective algorithms for image denoising and reconstruction, both in terms of quality and computational performance. This is achieved within a variational framework by imposing some ?1-type regularization in the wavelet domain, which favors sparse solutions. We discuss some corresponding iterative skrinkage-thresholding algorithms (ISTA) for sparse signal recovery and introduce a multi-level variant for greater computational efficiency. We illustrate the method with two concrete imaging examples: the deconvolution of 3-D fluorescence micrographs, and the reconstruction of magnetic resonance images from arbitrary (non-uniform) k-space trajectories.
In the second part, we show how to design new wavelet bases that are better matched to the directional characteristics of images. We introduce a general operator-based framework for the construction of steerable wavelets in any number of dimensions. This approach gives access to a broad class of steerable wavelets that are self-reversible and linearly parameterized by a matrix of shaping coefficients; it extends upon Simoncelli’s steerable pyramid by providing much greater wavelet diversity. The basic version of the transform (higher-order Riesz wavelets) extracts the partial derivatives of order N of the signal (e.g., gradient or Hessian). We also introduce a signal-adapted design, which yields a PCA-like tight wavelet frame. We illustrate the capabilities of these new steerable wavelets for image analysis and processing (denoising).
Slide of the presentation (PDF 17.3 Mb)
Company Name : Praxis
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Location:
MUMBAI , Maharashtra
Job Profile:
Trouble-shooting, repair & maintenance of Medical Equipments in the Hospital and maintaining purchase, Insurance, AMC and all other activities of leading biomedical team.Co-ordination in Installation of CT scan, MRI, PET CT, CR, Cathlab, Theater Light and X-ray, Ultrasound scan & Echo cardiogram and other hospital equipments
Functional Area : Bio Tech, R&D, Scientist
This is a preview of Job Oppurtunity For Biomedical Engineer In Mumbai.
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The biomedical industry at present is already facing a dearth of quality engineers and this is bound to aggravate further with the expected boom in the industry. At the same time there are many engineers who pass out and are unable to identify the right / job career.
CIBE was conceived as a solution to the above-mentioned situation by training, molding and guiding the young students through a job oriented course in such a way as launch them onto a career in Biomedical engineering
Many of the CT / MRI Service engineers, now attached with multi-nationals credit their growth to this institute.
This is a preview of Biomedical Engineering Job oriented training @ CURA Healthcare, Chennai.
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The project will be concerned with the use of ultrasound to generate images for clinical and research use and with the extraction of quantitative data from these images. The fellowship is partly funded by the strategic initiative at KU-LIFE, CHANCE and will utilize chemometric analyses as part of its research methodology. Ultrasound images from an ongoing research project involving eels are available and further experiments will require further imaging by the Fellow in this species. In addition the PhD Fellow will be expected to identify suitable clinical patients and collect data form them at the Department´s Small Animal Hospital and perform subsequent analysis. The aim being to describe relevant clinical or physiological parameters. The research work will be based primarily at the Small Animal Hospital, however some of the research image collection may be done by the Fellow at an external research farm. In addition to the duties described below, the PhD fellow will be expected to contribute to the clinical and teaching activities of the Department of Small Animal Clinical Sciences. The project will provide opportunities to develop existing skills in general veterinary diagnostic imaging using digital radiography, CT, MRI, scintigraphy and in particular ultrasound. Training in image analysis and statistical analysis techniques will be an integral party of the fellowship. Principal supervision on the project will be provided by the Department of Small Animal Clinical Sciences with additional supervision provided by the CHANCE initiative.
This is a preview of PhD Biomedical Fellowships 2011 @ University of Copenhagen.
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Medical imaging refers to the techniques and processes used to create images of the human body (or parts thereof) for clinical purposes (medical procedures seeking to reveal, diagnose or examine disease) or medical science (including the study of normal anatomy and function). As a discipline and in its widest sense, it is part of biological imaging and incorporates radiology (in the wider sense), radiological sciences, endoscopy, (medical) thermography, medical photography and microscopy (e.g. for human pathological investigations). Measurement and recording techniques which are not primarily designed to produce images, such as electroencephalography (EEG) and magnetoencephalography (MEG) and others, but which produce data susceptible to be represented as maps (i.e. containing positional information), can be seen as forms of medical imaging.
This is a preview of An Introduction To Medical Imaging Modalities For Biomedical Beginners.
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