CCMAS Course Search
Browse BRIDGE's courses under the National Universities Commission's Core Curriculum Minimum Academic Standards (CCMAS) — Nigeria's unified benchmark curriculum for every accredited program. Search by course title, code, faculty or programme to see full descriptions, learning outlines and credit-hour loads.
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NUT 405
2 Unit(s) (LH 30)
At the end of this course, students should be able to: 1. assess the nutritional status of a community-anthropometry, clinical signs, vital statistics, ecological factors, food consumption, and morbidity, mortality bioch...
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Conceptual framework of causes of malnutrition. Nutritional problems of public health importance
in Nigeria. Principles of Nutrition Epidemiology. Socio-economic effect of nutritional problems.
Effect of malnutrition on physical and mental development. Interventions to improve health and
nutritional status of people such as Micronutrient deficiencies control (fortification,
supplementation, and dietary diversification), child survival strategies, and Essential Nutrition
actions, nutrition sensitive and nutrition specific interventions. Food sanitation and safety.
Environment and nutrition. Development of primary health care and nutrition in Nigeria. Nutrition
and Infection. Nutrition and HIV/AIDS. Maternal and child nutrition including breastfeeding and
child spacing. Management of acute malnutrition (CMAM, SAM).
HIM 513
2 Unit(s) (LH 30)
At the end of the course, the students should be able to: 1. mark out with distinctness the history of public relations, public relation process and research; 2. explain communication media in public relations, state the...
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Definition of public relations, the history of public relations public relations process, public
relations research, communication media in public relations, functions of public relations officer,
objectives of employee communications, communication methods, publicity, crisis management
and resolution, evaluation techniques of public relations, public relations financing.
HAM 225
2 Unit(s) (LH 30)
At the end of the course, the student should be able to: 1. discuss roles of public relations unit in healthcare setting; 2. demonstrate effective and efficient Inter and Intra departmental relationship; and 3. promote t...
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Dominant paradigms and theories that have informed the study of public relations and continue
to shape analysis and practice in the field. Concept of public relations. Roles of public relation
unit in the hospital. Inter and intra departmental relationship in the hospital. Public relation
strategies. Roles of hospital managers in public relations and corporate social responsibility.
PHA 409
2 Unit(s) (LH 15; PH 45)
1 institution need this
At the end of the course, students should be able to: 1. explain the most commonly used quantitative models in pharmacology; and 2. use biostatistics in the design, collection, summarisation, analysis and interpretation...
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Introduction: Drug – receptor interaction; affinity and [intrinsic activity; occupancy theory; Rate
Theory; Drug receptor interactions; law of mass action, enzyme-substrate interaction. dose-
response relationship – Graphical and Derivation of receptor affinity PD2; Competitive Antagonism.
The Gaddum-Schild Equation for Affinity constant of competitive antagonists; Non-competitive
antagonism, Partial agonist; Competitive non-competitive antagonism. Pharmacodynamic
prediction from pharmacokinetic data (one compartment model). Receptor desensitisation,
Mechanisms of Post-receptor transduction. Introduction to Biostatistics, Normal distribution, Mean
probit transformation, standard Deviation and standard Error. T-tests paired and unpaired, chi-
square Test, Analysis of variance, Poisson Distribution.
Physiology and Pharmacology courses are the minor and major courses in a BSc
Pharmacology programme worldwide. Students must therefore be well grounded in
them upon graduation to be able to pursue a successful career.
Physiology provides the theoretical basis of normal body function while
pharmacology explains how drugs and chemicals exert correction in situations of
altered physiology. These two courses transverse all organs/systems of the human
body and span 200 to 400 Levels of the BSc Pharmacology programme.
RAD 447
2 Unit(s) (LH 30)
At the end of this course,the students should be able to: 1. determine the type of nuclide, radio pharmaceuticals and quality tests for various radio- nuclide imaging procedures and calculate administered dose; 2. descri...
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Basic principles, Decay schemes of Radionuclide production, cyclotron design and performance,
radiopharmaceuticals, impurity levels. Equipment for nuclear medicine generators, procedures,
contamination monitoring. Radioisotope image, gamma camera electronics, uniformity correction,
dead time performance factors – collimators, shielding requirements, internal dosimetry. Disposal
of radioactive waste. Planar imaging, PET, SPECT-PET-CT- principles of operation, procedures,
dosimeter and image analysis. Designs of MR scanners: Open, closed systems. Superconductors,
Permanent magnets, Resistive magnets. Cooling mechanisms, Nitrogen, Helium and many others.
Oxygen levels. Oxygen gauges and meters, Oxygen displacement by helium. Loss of
superconductivity. Quench, Shielding systems, The Faraday’s cage. Strength of Magnets. Magnet
homogeneity. Shimming, Characteristics of the main magnet Strength of the field produced. Tesla
(T). Gauss. Magnets in clinical use and in research. Parameters, image quality and trades off:
SNR, Slice Thickness FOV, Matrix, NEX, Pixels and voxels. Slice thickness, slice Gap. Noise, Partial
volumes. FOV, Matrix, Number of excitations, Acquisition time. TR, TE, Receive bandwidth. Spatial
Encoding and Image Formation: The homogenous magnetic field, Behaviour of protons in the
magnetic field, Protons and Lamour frequency, Slice direction, Phase direction and Frequency
direction, Slice encoding gradient, Slice select gradient, Use of varying bandwidth, Modifying the
steepness of the gradient, Gradient fields, Frequency encoding, Phase encoding, K – Space filling,
Fourier transformation. Techniques --- Central Nervous System: Coil selection, Immobilisation
devises, Ear defenders, Aids for claustrophobic patients—mirror glasses, eye shields, Artefact
considerations, Use of saturation bands, Flow compensation, Indications for MRI in the brain and
spines, Parameters and, image quality considerations, Patient positioning, Important landmarks
and reference points, Protocol selection, Essential and complementary sequences, Image
weighting for particular, indications, Thick and thin slices, High resolution slices, Contrast
enhancement, Introduction to diffusion weighted imaging.
RAD 301
2 Unit(s) (LH 15; PH 45)
At the end of this course, the students should be able to: 1. demonstrate clarity in communicating the biological basis of radiation protection; 2. describe international standards and practices for safety in all applica...
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Cell theory and genetic apparatus, radiation chemistry, effect of radiation on DNA molecules,
amino acid, protein and many others, cellular damages, survival curves. Theories of Biological
effects of radiation, short and long term effect (stochastic and non-stochastic, radio sensitivity
and Modifiers, post irradiation clinic events, organ pathology syndromes, evidence from Hiroshima
and Nagasaki. Target theory and lethal Dose. Measurement of radiation and their
units/instrumentation, units of radiation measurement. Role of International Committee on
Radiological protection, Radiation dosimetry and instrumentation. The purpose and scope of
radiation protection. Systems of dose limitation. Radiological design and materials, Personnel
monitoring.
RAD 381
2 Unit(s) (LH 15; PH 45)
At the end of this course, the students should be able to: 1. relate the anatomy of the various parts of the body learnt with the appearances on radiographs for both plain and contrast studies; 2. identify and differenti...
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Conventional and contrast Radiographic Anatomy of the system. Anatomy applied to ultrasound
and nuclear medicine. Surface anatomy and cross- sectional anatomy. Identification and
recognition of normal and pathological changes in anatomical structures and physiological
processes. Basic manifestations and presentations of various pathological conditions and diseases
entities on radiographs, ultrasound, CT and MR images covering the major organs and systems
of the body.
RAD 321
2 Unit(s) (LH 15; PH 45)
At the end of this course, the students should be able to: 1. describe electrical supply requirements for various types of x-ray tubes and instruments for controlling and monitoring these parameters in the production of...
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Mains supply, Basic Principles of Generators including Falling load generators and frequency
multipliers. Control and stabilising equipment. High tension circuits, Meters, Switches and circuit
breakers.
RAD 421
2 Unit(s) (LH 30)
At the end of this course, the students should be able to: 1. identify specialised x-ray equipment for imaging soft tissue and dynamic studies for gastrointestinal, vascular and gynaecological studies; 2. describe the pr...
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The X-ray tube, types, construction and operation. high tension cables, tube stands, production,
effects and control of scattered radiation. General principles of grids, coordinators and beam
centering devices, portable and mobile X-ray equipment. Special Equipment – Tomographic
Equipment, Fluoroscopic Equipment, Dental Equipment, Equipment for Neuroradiography,
accident and emergency equipment, Image Intensifiers, Rapid series Equipment. Dedicated
mammography Equipment.
RAD 521
2 Unit(s) (LH 15; PH 45)
At the end of this course, the students should be able to: 1. define the hardware and software requirements of a DSA; 2. describe the principles and operation of a DSA system; 3. identify its peculiarities in application...
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Digital computed radiography. Basic principles of Equipment for modern imaging modalities, care
and maintenance of equipment. Digital fluorography system and components, Dedicated and
adapted units and Computer and Digitisation requirements, Digital subtraction angiography(DSA),
Road-mapping and quantitative information extraction. Importance of quality assurance in
Radiology. Type testing acceptance testing and on-going quality Assurance on the following:
Image producers, image processors, image receptors, U/S; image reject analysis.
Management/Evaluation of quality Assurance programmes.