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PS3107 Introduction to Psychophysiology Assignment Sample NUI Galway Ireland

PS3107 Introduction to Psychophysiology module aims to provide students with an understanding of the physiological basis of behaviour. The module will cover topics such as the nervous system, sensory and motor processes, endocrine system, stress, and motivation. In addition, the course will also cover research methods in psychophysiology and ethical issues in conducting human research.

This module introduces students to the field of psychophysiology and its associated research methods. The module will provide students with an understanding of the relationship between psychological processes and physiological signals. In addition, students will learn about the major psychophysiological methods used in research.

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In this section, we are describing some assigned tasks. These are:

Assignment Activity 1: Describe the most current and widely used psychophysiological methods.

The most current and widely used psychophysiological methods are Electroencephalography (EEG), Event-related potentials (ERPs), Magnetoencephalography (MEG), Functional magnetic resonance imaging (fMRI), Near-infrared spectroscopy (NIRS), and Transcranial magnetic stimulation (TMS).

  • EEG: Electroencephalography is a technique that measures the electrical activity of the brain. It is non-invasive and can be used to study both normal and abnormal brain activity.

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  • GSR: Galvanic skin response is a method of measuring the electrical conductance of the skin. It is often used to measure stress levels.
  • ERPs: Event-related potentials refer to changes in the electrical activity of the brain in response to specific events. They can be used to study cognitive processes such as attention, memory, and language.
  • MEG: Magnetoencephalography is a technique that measures magnetic fields produced by the brain. It is non-invasive and can provide high temporal resolution data about brain activity.
  • fMRI: Functional magnetic resonance imaging is a technique that uses magnetic fields and radio waves to measure brain activity. It is non-invasive and can provide high spatial resolution data about brain activity.
  • NIRS: Near-infrared spectroscopy is a technique that uses light to measure brain activity. It is non-invasive and can be used to study both normal and abnormal brain activity.
  • TMS: Transcranial magnetic stimulation is a technique that uses magnetic fields to stimulate the brain. It is non-invasive and can be used to study both normal and abnormal brain activity.

Assignment Activity 2: Understand the theory behind each psychophysiological method.

The theory behind each psychophysiological method is based on the principle that mental activity is associated with changes in brain activity. These methods allow researchers to measure these changes and study the relationship between mental activity and brain activity.

EEG: The theory behind EEG is based on the principle that electrical activity in the brain produces magnetic fields. This method measures these fields and uses them to study brain activity.

GSR: The theory behind GSR is based on the principle that changes in skin conductance are associated with changes in an emotional state. This method measures skin conductance and uses it to study emotions.

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ERPs: The theory behind ERPs is based on the principle that changes in brain activity are associated with specific events. This method measures these changes and uses them to study cognitive processes.

MEG: The theory behind MEG is based on the principle that changes in magnetic fields are associated with changes in brain activity. This method measures these changes and uses them to study brain activity.

fMRI: The theory behind fMRI is based on the principle that changes in blood oxygenation are associated with changes in brain activity. This method measures these changes and uses them to study brain activity.

NIRS: The theory behind NIRS is based on the principle that changes in blood oxygenation are associated with changes in brain activity. This method measures these changes and uses them to study brain activity.

TMS: The theory behind TMS is based on the principle that changes in magnetic fields are associated with changes in brain activity. This method stimulates the brain with magnetic fields and uses this stimulation to study brain activity.

Assignment Activity 3: Identify correct applications of each psychophysiological method.

There are a variety of psychophysiological methods, each with its own set of applications. Some of the most common methods are:

  • Electroencephalography (EEG): Measures electrical activity in the brain
  • Electrocardiography (ECG): measures electrical activity in the heart
  • Galvanic skin response (GSR): Measures changes in skin conductance
  • Electromyography (EMG): Measures electrical activity in muscles
  • Functional magnetic resonance imaging (fMRI): Measures changes in blood oxygenation
  • Near-infrared spectroscopy (NIRS): Measures changes in blood oxygenation
  • Transcranial magnetic stimulation (TMS): Stimulates the brain with magnetic fields

Each of these methods has a different set of applications. For example, EEG can be used to study epilepsy, sleep disorders, and attention deficit hyperactivity disorder (ADHD). ECG can be used to study heart disease, arrhythmias, and hypertension.

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Assignment Activity 4: Recognise the specific strengths and weaknesses of each method (and have developed a good ability to critique the same).

Each psychophysiological method has its specific strengths and weaknesses. For example,

  • EEG is a very sensitive method that can measure changes in brain activity with great accuracy. However, it is also limited by its low spatial resolution, which means that it cannot be used to study specific brain regions.
  • fMRI, on the other hand, has high spatial resolution but is limited by its low temporal resolution, which means that it cannot be used to study changes in brain activity that occur over short periods.
  • NIRS is a relatively new method that has the advantage of being non-invasive, but it is also limited by its low spatial and temporal resolution.
  • TMS is a very powerful method that can be used to study a wide range of cognitive processes, but it is also limited by its potential to cause side effects such as headaches and dizziness.

Assignment Activity 5: At a very basic level, gain experience of what psychophysiological data ‘looks’ like, both in its raw state and for use in analyses.

Psychophysiological data can take many different forms, depending on the method used to collect it. For example, EEG data is typically represented as a series of waveforms, while fMRI data is typically represented as a set of images. NIRS data is typically represented as a series of waveforms or images, and TMS data is typically represented as a series of waveforms.

When psychophysiological data is used for analyses, it is typically processed and analyzed using specialized software. This software can be used to measure various aspects of the data, such as the amplitude, frequency, and duration of the waveforms. It can also be used to create images that show the location and intensity of the magnetic fields.

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