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Quick Facts

Medium Of InstructionsMode Of LearningMode Of Delivery
EnglishSelf StudyVideo and Text Based

Course Overview

The course offered by the platform of edX provides amazing information about the different processes related to the brain. Multi-Scale Brain by edX has been created in partnership with EPFL. Candidates can study in the program online mode only. Students who are willing to study in this course can avail themselves of this course at no extra cost. The duration of The Multi-Scale Brain program is 7 weeks. Participants can manage their schedule easily while pursuing this Multi-Scale Brain online course as this course is a self-paced learning course. Each week learners need to spend 4-6 hours to achieve the required knowledge. 

The certification is available after the curriculum is completed. Candidates can achieve the verified certification after paying the fees according to the guidelines given by the platform. Aspirants will learn about the concepts related to the subject of life sciences and biology. Participants may gain valuable practical exposure to being successful in the area. The Multi-Scale Brain certification syllabus offered here is an advanced-level programme. Candidates can learn at their own pace but with limited access if they have selected the audit mode. If the candidates have chosen the verified track, they will be able to receive unlimited access to the course materials.

The Highlights

  • Digital learning course
  • Certified course
  • In association with EPFL
  • The course duration of 7 weeks
  • 4-6 hours time investment required each week
  • Verified certification available after paying the fees
  • Advanced level course
  • Discount available
  • Shareable certificates

Programme Offerings

  • discussions
  • assignments
  • Course materials
  • Modules

Courses and Certificate Fees

Certificate Availability
no

Eligibility Criteria

Education

Students who are keenly interested in pursuing The Multi-Scale Brain certification course should have information about subjects such as life sciences and biology.
Candidates should have knowledge in one of the following programming languages: C/C++, Java, MATLAB, R, Python [preferred].
Basic concepts clearance about the ordinary differential equations and their numerical solution is required for pursuing The Multi-Scale Brain program.

Certification Qualifying Details

Students who want to achieve verified certification for The Multi-Scale Brain program should be able to complete all the modules, assignments, and course materials. Candidates must pay Multi-Scale Brain fees for gaining the verified certification.

What you will learn

Knowledge of genetics

After completing The Multi-Scale Brain certification course participants will achieve information on-

  • Candidates can gain valuable information on how one can use brain atlases and will be covered under The Multi-Scale Brain program.
  • Participants may achieve insights on modeling tools will be taught.
  • Aspirants will be able to learn about the ways to classify neurons under The Multi-Scale Brain program.
  • The program can help the students to study cell morphology and function.
  • Candidates may learn about how to explain and contrast different techniques for modeling, visualization, and mapping of synaptic fields, single cells, larger circuits of neurons, and long range interactions between cortical areas.
  • Students will learn about the concepts of genetic mapping of the mouse brain 
  • Candidates may achieve insights on navigating gene expression data.
  • Students will learn about multi-scale connectivity.
  • Learners may gain valuable knowledge on reconstructing microcircuitry.
  • Aspirants can learn concepts related to multi-scale modeling.
  • Students will learn techniques and skills related to the function as well as the structure of the whole brain

Who it is for

The Multi-Scale Brain online course is highly suitable for-

  • Candidates who want to pursue the area of life sciences and biology professionally.
  • Professionals who want development in the area where they are currently working.
  • People who want to explore new careers and opportunities.

Admission Details

Students should follow the below-given guidelines for getting admission 

Step 1: Candidates who are interested in pursuing this course should click the below mentioned, https://www.edx.org/course/the-multi-scale-brain

Step 2: Students will now reach the course website 

Step 3: When the candidates will reach the website they can witness the option of ‘enrol’.

Step 4: Candidates should click on the option of ‘enrol’.

Step 5: Students can now reach the dashboard.

Step 6: Aspirants may click on the option ‘upgrade to verified’.

Step 7: Learners will be able to choose the payment method for paying the fees.

Step 8: Once the fees are paid by the candidate they can avail the content.

The Syllabus

  • Introduction to the course, Sean Hill
  • Introduction to the Allen Institute for Brain Science data and tools, Terri Gilbert
  • Human Brain Atlasing, Danilo Bzdok
  • Graded quiz 1

  • Using whole-brain and single-cell gene expression to identify and characterize cell types, Vilas Menon
  • Genetic dissection of neural circuits, Trygve Bakken

  • Accessing mouse gene expression data, Terri Gilbert
  • Navigating the human gene expression data, Terri Gilbert
  • Peer-graded assignment gene expression data

  • Synaptic Mapping with Array Tomography, Forrest Collman
  • Mesoscale mapping, Jack Waters
  • The connectivity atlas, Terri Gilbert
  • Graded assignment mouse connectivity

  • Blue Brain, Sean Hill
  • Cell types and modeling, Werner von Geit & Elisabetta Iavarone
  • Graded assignment modeling
  • Building bio-physiologically constrained models of large-scale phenomena in the brain, Alain Destexhe
  • Graded quiz 2

  • Computational properties of human cortical microcircuits Huib Mansvelder
  • Modeling microcircuits, Michael Reimann
  • Graded quiz 3

  • Whole-brain morpho-functional imaging: connecting a single neuron to the whole brain, Francesco Pavone
  • Functional physiology of the mouse virtual cortex, Saskia de Vries
  • Brain observatory data sets, Terri Gilbert
  • Peer-graded homework
  • Graded quiz 4

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