455-0049/01 – Biocybernetics (BKY)

Gurantor departmentDepartment of Measurement and ControlCredits4
Subject guarantorMgr. Petr TiefenbachSubject version guarantorMgr. Petr Tiefenbach
Study levelundergraduate or graduateRequirementChoice-compulsory
YearSemestersummer
Study languageCzech
Year of introduction1992/1993Year of cancellation2002/2003
Intended for the facultiesFEIIntended for study typesMaster
Instruction secured by
LoginNameTuitorTeacher giving lectures
PEN72 prof. Ing. Marek Penhaker, Ph.D.
TIE30 Mgr. Petr Tiefenbach
Extent of instruction for forms of study
Form of studyWay of compl.Extent
Full-time Credit and Examination 2+2

Subject aims expressed by acquired skills and competences

The aim of this object is study principle of genesis, transfer, processing and retention information in vital systems. As well as modeling and simulation of biological systems. Their study of control method on physiological and pathological terms. The student aquired during this course information about the origin of genesis, transformation , evaluation and presevation of information in live systems. The object with its elignment fits into branch of measurements and control techniques in biomedicine. The aquiered knowledge and skill creates the basic knowledge of biomedicine engineering. The student aquired during this course information about the origin of genesis, transformation , evaluation and presevation of information in live systems. The object with its elignment fits into branch of measurements and control techniques in biomedicine. The aquiered knowledge and skill creates the basic knowledge of biomedicine engineering.

Teaching methods

Summary

The aim of this object is study principle of genesis, transfer, processing and retention information in vital systems. As well as modeling and simulation of biological systems. Their study of control method on physiological and pathological terms. The student aquired during this course information about the origin of genesis, transformation , evaluation and presevation of information in live systems. The object with its elignment fits into branch of measurements and control techniques in biomedicine. The aquiered knowledge and skill creates the basic knowledge of biomedicine engineering. The basis forms a cell, biological membrans, biothermodynamic and biophysical chemistry. The study of biological systems features is orientaited on neurophysiologie, neurological, respiratory, locomotive and vascular systems, heart action, genetical information, sensoric systems and compensation of organ functions.

Compulsory literature:

Samson Wright: Klinická fyziologie Praha 1987. Stefan Silbernagl, Agamemnom Despopoulos: Atlas fyziologie člověka. Praha 1984. Wiliam F. Canong: Přehled lékařské fyziologie. Praha 1976. Hrazdíra, I.: Biofyzika. Praha, Avicenum 1990. Nečas, O.: Biologie. Praha, Avicenum 1982. Dvořák - Maršík - Andrej: Biotermodynamika. Praha, Akademia, 1985.

Recommended literature:

Tiefenbach,P: Biocybernetics,Sylabus on WWW pages of department,2002

Way of continuous check of knowledge in the course of semester

Verification of study: Two tests and Gift-over of semestral work. Conditions for credit: On the whole maximum 20 points and minimum - 10 points.

E-learning

Other requirements

Prerequisities

Subject has no prerequisities.

Co-requisities

Subject has no co-requisities.

Subject syllabus:

Lectures: Physiological principles. Energy and life processes. Structure organisms in live nature. Cell, microscopic and submicroscopic structure. Fundamental processes biological membrane I., Structure and function. Chemical potential. Equilibrium condition in heterogeneous system biological membrane II., Diaphragmal ionic channels. Transmitter systems for transport ion over membrane Biotermodynamic I., Introduction into thermodynamic. Thermodynamic of live system, entropy Biotermodynamic II., Structural thermodynamic. Thermodynamic biological evolution Neurophysiology. Conveyance and working information in biological system. Nervous, hormonal and humoral level their steerage Nervous system. Structure of the nervous system, chances of steerage on single level. Central system nervous. Nervous fibre, substitution diagram and quadratic diffusion shock Genic information. Transmission genic information abreast bioinformatics macromolecule. Heart. Activity heart and meaning regulation gadgetry at stress Blood-vessel system. Meaning blood-vessel bed for circulation, chances of and meaning his regulation. Breathing system. Steerage activities breathing system. Capacity as pulmonary and her regulation in extreme conditions Kinetic syste. Structure among electric irritation and mechanical responses of muscular cell. Biomechanics of kinetic system Sensorial systems. Physiochemical principles sensuous sensation. Forms, mechanism. sensorical capacity as of the nervous system. Biological tenet sensuous sensation and chances of his erosion Organ compensations. Compensation and support capacity as viscus. Compensation capacity as kidneys, heart and pulmonary. External stimulator and implanting Exercises: Fundamental constructs, setting account from revolting literature Laboratories: Transport mechanism of matters over biological membrane. Illustrative instance. Setting semestral work. Membrans tension and diaphragmal currents, method metering and analyses. Simulation chemical and biological action. Fundamental thermodynamic of biological phenomenon, application structural thermodynamic. Test n.1. Instance of backward bindings in organism with demonstration of their meaning for physiological activity. Visitation at medical psychology. Psychological test with evaluation and demonstration methodist and medical psychology. Visitation of laboratory with demonstration frame of transmission genic information. Genetics man. Demonstration of endurance test in functional laboratory Cardiopulmunal diagnostics. Demonstration of gadgetry regulation , response affecting circulation on physical stress. Objectivism as well perfused circumference limbs by the help of laser fotoplethysmography with demonstration changes blood flow depending on changes outdoor environment (cold, warmth). Demonstration of investigation capacity as pulmonary and changes quiescent ventilation of the lungs on choice outer stimuli. Visitation on technical orthopaedic. Myoelectric prosthodontics, metering muscular potential. Demonstration acoustic percept and his sensation, regulation and quantifier. Recite engaged account. Hemodyalisys, hemofitration, homeoperfusion. Extra-corporeal circulation of blood. Insulindosing machine. Cardiostimulation and defibrillation. Test n. 2.

Conditions for subject completion

Full-time form (validity from: 1960/1961 Summer semester)
Task nameType of taskMax. number of points
(act. for subtasks)
Min. number of pointsMax. počet pokusů
Exercises evaluation and Examination Credit and Examination 100 (145) 51 3
        Examination Examination 100  0 3
        Exercises evaluation Credit 45  0 3
Mandatory attendence participation:

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Conditions for subject completion and attendance at the exercises within ISP:

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Occurrence in study plans

Academic yearProgrammeBranch/spec.Spec.ZaměřeníFormStudy language Tut. centreYearWSType of duty
2002/2003 (M2612) Electrical Engineering and Computer Science (2601T004) Measurement and Control Engineering P Czech Ostrava Choice-compulsory study plan
2002/2003 (M2612) Electrical Engineering and Computer Science (2612T018) Electronics and Communication Technology P Czech Ostrava Choice-compulsory study plan
2002/2003 (M2612) Electrical Engineering and Computer Science (2642T004) Electrical Machines, Apparatus and Drives (10) Elektrické stroje a přístroje P Czech Ostrava Choice-compulsory study plan
2002/2003 (M2612) Electrical Engineering and Computer Science (2642T004) Electrical Machines, Apparatus and Drives (20) Elektrické pohony a výkonová elektronika P Czech Ostrava Choice-compulsory study plan
2002/2003 (M2612) Electrical Engineering and Computer Science (3902T023) Computer Science P Czech Ostrava Choice-compulsory study plan
2002/2003 (M2612) Electrical Engineering and Computer Science (3907T001) Electrical Power Engineering P Czech Ostrava Choice-compulsory study plan
2002/2003 (M2612) Electrical Engineering and Computer Science (2601T004) Measurement and Control Engineering P Czech Ostrava 4 Optional study plan
2001/2002 (M2612) Electrical Engineering and Computer Science (2601T004) Measurement and Control Engineering P Czech Ostrava Choice-compulsory study plan
2001/2002 (M2612) Electrical Engineering and Computer Science (2612T018) Electronics and Communication Technology P Czech Ostrava Choice-compulsory study plan
2001/2002 (M2612) Electrical Engineering and Computer Science (2642T004) Electrical Machines, Apparatus and Drives (10) Elektrické stroje a přístroje P Czech Ostrava Choice-compulsory study plan
2001/2002 (M2612) Electrical Engineering and Computer Science (2642T004) Electrical Machines, Apparatus and Drives (20) Elektrické pohony a výkonová elektronika P Czech Ostrava Choice-compulsory study plan
2001/2002 (M2612) Electrical Engineering and Computer Science (3902T023) Computer Science P Czech Ostrava Choice-compulsory study plan
2001/2002 (M2612) Electrical Engineering and Computer Science (3907T001) Electrical Power Engineering P Czech Ostrava Choice-compulsory study plan
2000/2001 (M2612) Electrical Engineering and Computer Science (2601T004) Measurement and Control Engineering (10) Měřící a řídící technika P Czech Ostrava 5 Optional study plan
2000/2001 (M2612) Electrical Engineering and Computer Science (2601T004) Measurement and Control Engineering (20) Řídící a informační systémy P Czech Ostrava 5 Optional study plan
2000/2001 (M2612) Electrical Engineering and Computer Science (2601T004) Measurement and Control Engineering (30) Měřící a řídící technika v biomedicíně P Czech Ostrava 5 Optional study plan
2000/2001 (M2612) Electrical Engineering and Computer Science (2601T004) Measurement and Control Engineering (40) Automatizované systémy řízení P Czech Ostrava 5 Optional study plan

Occurrence in special blocks

Block nameAcademic yearForm of studyStudy language YearWSType of blockBlock owner

Assessment of instruction

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