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Magnetoencephalography Meg Jobs (NOW HIRING)

... magnetoencephalography (MEG) environment. * Assist children, adolescents, and adults receiving a MEG or MRI examinations; assist staff as they prepare patients for a brain imaging studies; alert the ...

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Magnetoencephalography Meg information

What are the typical challenges faced by magnetoencephalography (MEG) technologists during data acquisition and analysis?

MEG technologists often encounter challenges such as minimizing artifacts from patient movement, ensuring proper sensor placement, and maintaining a quiet environment to prevent electromagnetic interference. Additionally, interpreting complex neuroimaging data requires strong analytical skills and close collaboration with neuroscientists and clinicians. Staying updated with evolving MEG software and hardware is essential, as is clear communication with patients to ensure accurate and comfortable data collection.

What is the difference between Magnetoencephalography Meg vs EEG Technician?

AspectMagnetoencephalography MegEEG Technician
CredentialsSpecialized training in MEG technology, often requiring certification or advanced courseworkCertification in EEG technology, such as EEG technician certification
Work EnvironmentHospitals, research labs, specialized neuroimaging centersHospitals, clinics, outpatient facilities
Industry UsageNeuroscience research, clinical diagnostics for brain activityNeurological diagnostics, epilepsy monitoring

Magnetoencephalography Meg specialists focus on advanced brain imaging using MEG technology, often in research or specialized clinical settings, requiring specific training. EEG Technicians perform routine brain activity recordings in clinical environments, with different certification requirements. Both roles are vital in neurodiagnostics but differ in scope, environment, and technical complexity.

What is a magnetoencephalography (MEG) technologist?

A magnetoencephalography (MEG) technologist is a specialized healthcare professional who operates MEG machines to record and analyze the magnetic fields produced by brain activity. These recordings help doctors diagnose and treat neurological conditions such as epilepsy and brain tumors. MEG technologists prepare patients, ensure accurate data collection, and often assist in interpreting the results alongside neurologists or neuroscientists. Their role is crucial in providing non-invasive brain mapping for both clinical and research purposes.

What are the key skills and qualifications needed to thrive as a magnetoencephalography (MEG) technologist?

To thrive as a Magnetoencephalography (MEG) Technologist, you need a strong background in neurophysiology, medical imaging, and a relevant degree such as in neuroscience, biomedical engineering, or a related field. Familiarity with MEG systems, neuroimaging analysis software (like MATLAB or MNE-Python), and sometimes certification in neurodiagnostic technology is typically required. Attention to detail, problem-solving abilities, and effective communication are vital soft skills for managing patients and collaborating with multidisciplinary teams. These skills are crucial for ensuring accurate data collection, patient safety, and the successful interpretation of complex brain imaging results.
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Assistant/Associate Professor - Program in Memory Longevity, Peter O'Donnell Jr. Brain Institute [Re

UT Southwestern Medical Center

Dallas, TX • On-site

Full-time

Posted 2 days ago

New


UT Southwestern rating

7.9

Company rating: 7.9 out of 10

Based on 152 frontline employees who took The Breakroom Quiz

109th of 887 rated healthcare providers


Job description

Description
Faculty Position - Program in Memory Longevity
Peter O'Donnell Jr. Brain Institute | UT Southwestern Medical Center
The Program in Memory Longevity, led by Attila Losonczy, MD, PhD, in the Peter O'Donnell Jr. Brain Institute (OBI) and the Department of Neuroscience at the University of Texas Southwestern Medical Center in Dallas, seeks applications for a tenure-track faculty position at the Assistant or Associate Professor level. This search aims to advance our understanding of memory and its disruption in aging and disease.
AREAS OF RECRUITMENT
We seek exceptional experimentalists using innovative cellular, molecular, or genetic approaches to investigate memory mechanisms in the mammalian brain. Applicants whose research connects synaptic biology to learning and memory, or to aging- or Alzheimer's-related memory dysfunction, are of particular interest.
ABOUT THE PROGRAM
The Program in Memory Longevity is a signature initiative of the O'Donnell Brain Institute focused on understanding and protecting memory across the lifespan. Anchored by a deeply integrative and collaborative approach, the program aims to define the cellular and circuit mechanisms of memory and how they are perturbed in aging and neurodegenerative disease. New faculty will join a growing community of investigators across disciplines, working at the forefront of memory research.
RESOURCES AND ENVIRONMENT
Faculty hired into the Program in Memory Longevity will join OBI as OBI Scholars, fully embedded in the O'Donnell Brain Institute, with access to:
  • Generous start-up packages and laboratory space in the new O'Donnell Biomedical Research Building
  • Advanced imaging and data analysis resources, including two-photon and light-sheet microscopy, STED, spatial transcriptomics (Xenium and Merscope), cryo-EM, and high-performance computing
  • Human neuroscience infrastructure, including academic neurosurgeons providing access to human brain recordings and tissue, magnetoencephalography (MEG), high-density EEG, and focused ultrasound for blood-brain barrier modulation and lesioning
  • Extensive cross-campus collaboration, spanning more than a dozen departments and centers, including Neuroscience, Cell Biology, Neurology, Neurosurgery, Psychiatry, and the Center for Alzheimer's and Neurodegenerative Diseases
  • OBI programs supporting high-risk/high-reward neuroscience (Visionary Neuroscience Program), trainee development (Sprouts Program, Neural Scientist Training Program, Travel Grant Program), and multidisciplinary Research Interest Groups.

UT Southwestern ranks among the top academic medical centers globally and is home to a vibrant, collegial, and collaborative scientific community. The O'Donnell Brain Institute was created to integrate neuroscience discovery and clinical care, with a strong emphasis on supporting foundational and translational research.
Qualifications
Qualification:
Candidates must hold a Ph.D., M.D., or M.D./Ph.D. in neuroscience, engineering, computer science, biology, physics, or a related discipline. A record of research excellence and a compelling vision for future work are essential. Clinical faculty must be eligible for a Texas medical license.
Application Instructions
Application Instructions:
Please submit the follwing documents for consideration:
  1. Curriculum Vitae
  2. Cover Letter briefly describing your research area and interest in the Program in Memory Longevity
  3. Two-page research statement (past accomplishments and future plans)
  4. Three letters of recommendation

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