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Pathology And Pathophysiology courses 30

Learn Pathology And Pathophysiology online: university courses, full YouTube courses, and courses with free certificates, from the IITs, MIT, Harvard, Google, Microsoft and more.

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MIT OpenCourseWare

Parkinson's Disease Workshop

Parkinson’s disease (PD) is a chronic, progressive, degenerative disease of the brain that produces movement disorders and deficits in executive functions, working memory, visuospatial functions, and internal control of attention. It is named after James Parkinson (1755-1824), the English neurologi…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

A Clinical Approach to the Human Brain

This course is designed to provide an understanding of how the human brain works in health and disease, and is intended for both the Brain and Cognitive Sciences major and the non-Brain and Cognitive Sciences major. Knowledge of how the human brain works is important for all citizens, and the lesso…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Musculoskeletal Pathophysiology

This course covers the growth, development and structure of normal bone and joints, the biomechanics of bone connective tissues, and their response to stress, calcium and phosphate homeostasis. Additional topics include regulation by parathyroid hormone and vitamin D, the pathogenesis of metabolic…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Brain Structure and Its Origins

This course provides an outline of vertebrate functional neuroanatomy, aided by studies of comparative neuroanatomy and evolution, and by studies of brain development. Topics include early steps to a central nervous system, basic patterns of brain and spinal cord connections, regional development a…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Laboratory on the Physiology, Acoustics, and Perception of Speech

The course focuses on experimental investigations of speech processes. Topics include: measurement of articulatory movements, measurements of pressures and airflows in speech production, computer-aided waveform analysis and spectral analysis of speech, synthesis of speech, perception and discrimina…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Gastroenterology

The most recent knowledge of the anatomy, physiology, biochemistry, biophysics, and bioengineering of the gastrointestinal tract and the associated pancreatic, liver and biliary tract systems is presented and discussed. Gross and microscopic pathology and the clinical aspects of important gastroent…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Special Topics: Genetics, Neurobiology, and Pathophysiology of Psychiatric Disorders

An opportunity for graduate study of advanced subjects in Brain and Cognitive Sciences not included in other subject listings. The key topics covered in this course are Bipolar Disorder, Psychosis, Schizophrenia, Genetics of Psychiatric Disorder, DISC1, Ca++ Signaling, Neurogenesis and Depression,…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Biological Engineering Design

This course illustrates how knowledge and principles of biology, biochemistry, and engineering are integrated to create new products for societal benefit. It uses a case study format to examine recently developed products of pharmaceutical and biotechnology industries: how a product evolves from in…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Tissue Engineering and Organ Regeneration

This course presents the fundamentals of tissue engineering (TE) and organ regeneration (OR). Emphasis is on clinical translation and the development of workable medical devices. Topics include factors that prevent the spontaneous regeneration of tissues/organs in the adult (following traumatic inj…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Biomaterials-Tissue Interactions

The goal of this course is to teach the principles of materials science, chemical and mechanical engineering, and cell biology underlying the use of materials for the development of implantable and injectable devices.

  • MIT
  • Self-paced
  • Free course
  • Advanced

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