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Applied Human Neuroanatomy
Unrestricted Use
CC BY
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This 155-page manual is comprised of two types of learning activities: 1) free response fill-in-the blank questions focused of the facts and principles of neuroanatomy and neurophysiology that underpin the neurologic examination and specifically developed exercises that demonstrate how the facts and principles are related to the particular tests and procedures that comprise the neurologic examination. Free response questions form the bulk of the Neuroscience Review section of each chapter and are intended as a review of information previously or concurrently being learned regarding the structure, function and organization of the nervous system. Some questions focus on anatomical or physiological facts and relationships that help explain why certain techniques are performed as they are, such as why non-nociceptive tactile stimuli are required in order to activate nerve impulse transmission in the lemniscal system. Other questions are intended to revisit facts and concepts that are needed to properly interpret the elicited findings. 2) The Application Exercises of each chapter are designed to demonstrate how neuroanatomical and neurophysiological information is used in the design of particular clinical tests of neurologic function. The application exercises are also intended to help users learn how to perform and become comfortable with the various clinical maneuvers and tests that comprise the routine neurologic examination. An important outcome of performing these exercises is that, as a member of a learning group, each individual has the opportunity to experience the neurologic examination from the point of view of the subject (patient)—an experience that arguably provides insight and understanding that can be gained in no other way.

Subject:
Anatomy/Physiology
Life Science
Material Type:
Activity/Lab
Assessment
Student Guide
Textbook
Provider:
Virginia Tech
Provider Set:
VTech Works
Author:
Mcnamara John P
Nolan Michael F
Date Added:
01/23/2023
Children’s health - Risks to brain development from exposure to environmental chemicals
Only Sharing Permitted
CC BY-NC-ND
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A presentation with Professor Philippe Grandjean about the dangers of chemical interference with the developing brain. This presentation, “Children’s health - Risks to brain development from exposure to environmental chemicals”, presented on 6th November, 2019, meeting of the French High Council for Public Health (Haut Conseil de la Santé Publique, HCSP), at the Ministry for Solidarity and Health in Paris.

Subject:
Applied Science
Health, Medicine and Nursing
Material Type:
Lecture
Author:
Professor Philippe Grandjean
Date Added:
11/18/2019
Introduction to Neuroscience
Conditional Remix & Share Permitted
CC BY-NC-SA
Rating
0.0 stars

The course will span modern neuroscience from molecular neurobiology to perception and cognition, including the following major topics: anatomy and development of the brain; cell biology of neurons and glia; ion channels and electrical signaling; synaptic transmission, integration, and chemical systems of the brain; sensory systems, from transduction to perception; motor systems; and higher brain functions dealing with memory, language, and affective disorders.

Subject:
Biology
Life Science
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
Corey, David
Date Added:
09/01/2005
Multiple sclerosis may change how the brain processes sensory information
Unrestricted Use
CC BY
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0.0 stars

This resource is a video abstract of a research paper created by Research Square on behalf of its authors. It provides a synopsis that's easy to understand, and can be used to introduce the topics it covers to students, researchers, and the general public. The video's transcript is also provided in full, with a portion provided below for preview:

"Scientists have uncovered new information on how sensory processing can change in multiple sclerosis, or MS. Their findings could open novel avenues for understanding and treating the disease. People with MS typically experience deficits in their ability to smell and taste, abnormal temperature processing, and heightened sensations of pain or fatigue. But there’s no clear neurocognitive mechanism to explain such diverse symptoms. A new report in the journal Human Brain Mapping suggests these changes may stem from a problem with interoception. Interoception is a lesser-known skill that helps people feel signals originating from inside of the body – such as the heart beating or the digestive system signaling hunger. Many of the sensory processing issues that characterize MS are associated with brain pathways related to interoception. This link prompted researchers to examine how these pathways are affected in the context of the disease..."

The rest of the transcript, along with a link to the research itself, is available on the resource itself.

Subject:
Anatomy/Physiology
Applied Science
Health, Medicine and Nursing
Life Science
Material Type:
Diagram/Illustration
Reading
Provider:
Research Square
Provider Set:
Video Bytes
Date Added:
09/20/2019
The Neural Basis of Visual Object Recognition in Monkeys and Humans
Conditional Remix & Share Permitted
CC BY-NC-SA
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Understanding the brain's remarkable ability for visual object recognition is one of the greatest challenges of brain research. The goal of this course is to provide an overview of key issues of object representation and to survey data from primate physiology and human fMRI that bear on those issues. Topics include the computational problems of object representation, the nature of object representations in the brain, the tolerance and selectivity of those representations, and the effects of attention and learning.

Subject:
Applied Science
Biology
Health, Medicine and Nursing
Life Science
Physical Science
Psychology
Social Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
DiCarlo, James
Kanwisher, Nancy
Date Added:
02/01/2005
An Online Lab Manual for Neurophysiology
Unrestricted Use
CC BY
Rating
0.0 stars

This lab manual is a series of illustrated, printed lab handouts for my neurophysiology course. It provides videos of procedures, color diagrams, large photographs, and links to supplementary layers of information that go far beyond what was feasible in a printed manual. Each lab module is self-contained and they are intended for use without restriction by colleagues at other colleges. I hope it will encourage others to take similar steps in their own courses, and I hope also that sharing these self-published materials will contribute to an increasing trend of sharing online resources within the neuroscience teaching community.

Subject:
Biology
Life Science
Material Type:
Activity/Lab
Provider:
Smith College
Author:
Richard F. Olivo
Date Added:
03/25/2020
Scene Understanding Symposium
Conditional Remix & Share Permitted
CC BY-NC-SA
Rating
0.0 stars

What are the circuits, mechanisms and representations that permit the recognition of a visual scene from just one glance? In this one-day seminar on Scene Understanding, speakers from a variety of disciplines - neurophysiology, cognitive neuroscience, visual cognition, computational neuroscience and computer vision - will address a range of topics related to scene recognition, including natural image categorization, contextual effects on object recognition, and the role of attention in scene understanding and visual art. The goal is to encourage exchanges between researchers of all fields of brain sciences in the burgeoning field of scene understanding.

Subject:
Biology
Life Science
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
Oliva, Aude
Date Added:
02/01/2006
Systems Neuroscience Lab
Conditional Remix & Share Permitted
CC BY-NC-SA
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0.0 stars

Systems Neuroscience Laboratory consists of a series of laboratories designed to give students experience with basic techniques for conducting systems neuroscience research. It includes sessions on anatomical, neurophysiological, and data acquisition and analysis techniques, and the ways these techniques are used to study nervous system function. Training is provided in the art of scientific writing with feedback designed to improve writing skills. Assignments include weekly preparation for lab sessions, two major research reports and a series of basic computer programming tutorials (MATLAB). The class involves the use of experimental animals. Enrollment is limited.

Subject:
Biology
Life Science
Physical Science
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
DiCarlo, James
Tye, Kay
Date Added:
02/01/2013