SIMULATION Flashcards

1
Q

can simulate what (5)

A
  1. internal organs
  2. apparatus
  3. surgical operations
  4. human bx
  5. medical devices
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2
Q

why simulate (3)

A
  1. analysis
  2. predict disease & treatment
  3. training
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3
Q

flowchart: what’s between modeling & simulatio (2)

A
  1. 3D gemoetric models

2. mechanical / physical characteristics

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4
Q

different data sources for 3D geometric models (4)

A
  1. medical imaging
  2. 3D scanning
  3. motion capture
  4. predefined models
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5
Q

how to generate 3D geometric model (2)

A
  1. image procesing software tools

2. 3d modelling systems

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6
Q

customized CAD systems made of

A
  1. medical devices

2. environment

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7
Q

simulation models & software tools (4)

A
  1. finite element method
  2. computational fluid dynamics
  3. multibody simulation (virtual humans)
  4. virtual reality
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8
Q

finite element method example

A

design medical device (prosthesis)

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9
Q

computational fluid dynamics example

A

cardiovascular disease

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10
Q

virtual human example

A

locomotor apparatus

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11
Q

What is finite element analysis

A

numerical method that simplifies complex engineering and mathematical numbers, dividing problems into smaller elements

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12
Q

3 steps of finite element method

A
  1. preprocessing
  2. numerical analysis (solver)
  3. post processing
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13
Q

preprocessing tasks (3)

A
  1. discretization / mesh generation
  2. material properties
  3. boundary conditions
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14
Q

post processing task (2)

A
  1. graphical visualization

2. interpretation

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15
Q

pros of finite element method: (2)

A
  1. basic tool for risk management

2. reduce development time cost

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16
Q

cons of finite element method (4)

A
  1. only an approximation
  2. ~accuracy & precison
  3. expensive
  4. need high skill
17
Q

COMPUTATIONAL FLUID DYNAMICS

what field is it in

A

mechanical engineering

18
Q

What is used in CFD

A

computer based simulation

19
Q

what does it analyze (3)

A
  1. fluid flow
  2. heat transfer
  3. associated phenomenon
20
Q

3 steps of computational fluid dynamics

A
  1. preprocessing
  2. numerical analysis (solver)
  3. post processing
21
Q

preprocessing tasks (3)

A
  1. geometry of region
  2. mesh generation
  3. fluid properties: boundary conditions
22
Q

result of CFD (5)

A
  1. see performance of body fluids
  2. predict behavior of blood circulation
  3. lower postoperative comlications
  4. better surgical procedures
  5. more efficient / less destructive equipment
23
Q

what is VR

A

high end user computer interface

24
Q

VR involves what (2)

A
  1. real time simulation & interactions

2. uses multiple sensory chanels

25
Q

what does VR create

A

elusions and emotions thru human sensory channels

26
Q

VR equipment (2)

A
  1. visualization (headgear)

2. tactile & hand tracking

27
Q

VR tactile technology (4)

A
  1. leap motion device
  2. intel gesture camera
  3. duo3D device
  4. microsoft kinect V2
28
Q

VR applications (10)

A
  1. procedure visualization
  2. computer assisted surgery
  3. therapy VR
  4. therapy VR
  5. phobias
  6. education
  7. see anatomical structures
  8. individual patient anatomy
  9. image guided surgery
  10. planning radiation therapy
29
Q

VR in surgery (4)

A
  1. training
  2. planning
  3. rehearsal
  4. delivery
30
Q

eg VR training

A

educating surgeons

31
Q

eg VR planing

A

visualizing individual anatomy model

32
Q

eg VR rehearsal

A

rehearse complex surgical procedure

33
Q

advantages of VR delivery (4)

A
  1. increase speed & accuracy of surgical procedures
  2. reduce patient trauma & stress
  3. assist surgeons during surgical procedures
  4. training in medicine