Undergraduate study

Undergraduate 

Neuroscience BSc/MSci

Neuroscience 3B BIOL4235

  • Academic Session: 2026-27
  • School: School of Psychology and Neuroscience
  • Credits: 60
  • Level: Level 4 (SCQF level 10)
  • Typically Offered: Semester 2
  • Available to Visiting Students: Yes
  • Collaborative Online International Learning: No
  • Curriculum For Life: No

Short Description

In this course, you will explore the development of the central nervous system from early embryological stages into adulthood, learn about the senses, cognition, and the most recent developments in experimental neuroscience laboratory techniques and how these are applied to experimental design in neuroscience. Neuroscience 3A & 3B build on the Level 2 Life Sciences courses, developing an in-depth understanding of the structure and function of the Central Nervous System, underpinned by a programme of laboratory practicals and discussion of current research and clinical implications.

Timetable

This course will consist of five teaching blocks, each consisting of approximately 12 one-hour lectures and supporting labs and workshops, lasting 2-3 hours in most cases. Five one-hour tutorials sessions and sessions on scientific skills and graduate attributes will also run throughout the semester. The timetable will vary week to week to accommodate staff and resource availability and meet the educational needs of the block.

Excluded Courses

None

Assessment

The course will be assessed by means of a 3-hour examination (50%) in the spring diet and in-course assessment (50%) consisting of a research report (20%), a poster assignment (10%) and a literature review (20%). 

Main Assessment In: April/May

Course Aims

The aims of the course are:

■ To provide a broad-based knowledge and understanding of the central nervous system;

■ To develop an understanding of basic practical skills relevant to neuroscience-focused laboratory techniques;

■ To develop skills relating to the systematic acquisition and analysis of factual information and data;

■ To develop the ability to solve problems and to critically analyse, interpret and discuss factual information and data;

■ To provide opportunities to practise and improve written and oral communication skills.

Intended Learning Outcomes of Course

By the end of this course, students will be able to:

■ explain the central facts and the experimental basis of modern Neuroscience, including neurodevelopment, advancements in neuropharmacology and pathology of brain disorders;

■ appraise the use of modern technologies for the study of neuroscience, including molecular techniques;

■ demonstrate an understanding of practical skills in fundamental anatomical techniques including dissection, histology, research skills and molecular methods;

■ communicate experimental, interpretative and ethical aspects of science, using oral presentations, written work and information technology;

■ plan an experiment and apply appropriate methods to analyse experimental data;

■ solve problems of a numerical or logical nature using statistics where appropriate;

■ identify and critically evaluate relevant scientific literature.

Minimum Requirement for Award of Credits

No exceptions