SlideShare une entreprise Scribd logo
1  sur  22
Design and Analysis of
Human knee and cartilage
Name of student Guided by
Neeraj Jat Prof. K. Nema
Shaunak Chandwadkar
Ketul Shah
Amey Vaidya
Sridutt Gokul
1
Outline
• Objective
• Introduction
• Theoretical Background
• Modeling details
• Results and Discussion
• Conclusion & Future scope
Objective
• To study stress and deformation phenomena of a human knee
cartilage subjected to displacement and velocity applied in a form of
impact
• Determining cartilage properties and modelling its response
• Comparison of Reaction Force obtained from different simulation
software and experimental data to justify our model
• Provide pathway for further experiments for making Artificial
cartilage.
Introduction
• Cartilage is a fine viscoelastic rubbery tissue which acts as a cushion
between the bones and the joints. People with cartilage damage
commonly experience joint pain , stiffness and swelling
• Causes of cartilage damage:
• Direct blow: If a joint receives a heavy impact
• Wear and tear: A joint that experience a long period of stress
• Lack of movement : Long hours sitting due to nature of job etc.
• Current treatments available:
• Knee replacement
• Knee prosthesis
Statistical Survey and Motivation
• Bone: The femur, or thigh bone, is the longest, heaviest, and
strongest bone in the entire human body
• The cartilage has the thickest layer between these two bones
• Most of the injuries occur to the Knee
and hence it is chosen for modelling and
analysis
Theoretical Background
Modelling Details
Modelling
• Mimics (Materialise’s Interactive Medical Image Control System)
• Easily and quickly create accurate 3D models from imaging data
• Accurately measures in 2D and 3D
• Exports 3D models to 3matic to optimize the mesh for FEA
Modelling Details
Slicing femur bone from the big geometry
Extrusion of cartilage over bone surface
Creating virtual cells using virtual topology for simplifying geometry
Modelling Details
2D 3D
Mesh size for cartilage: 0.1 mm
Mesh size for Bone: 1mm (finer meshing)
Mesh size for sphere: 0.3 mm
Mesh type: Quad
Tested for: Static condition
Between cartilage and bone: Bonded
Between cartilage and sphere: Bonded
Fixed support: Bone
Simply supported: Cartilage
Analysis load: Via sphere displacement
0.05 mm total displacement.
Mesh size for cartilage: 1 mm
Mesh size for Bone: 3mm (finer meshing)
Mesh size for sphere: 0.5 mm
Mesh Type: Tetrahedrons
Tested for: Static condition and Explicit
Between cartilage and bone: Bonded
Between cartilage and sphere: Bonded
Fixed support: Bone
Analysis load-static: Via sphere
displacement
Analysis load-dynamic: velocity.
0.05 mm/s velocity
Theoretical Background
Determination of Material properties of bone and cartilage
Material Properties of Bone
Young's Modulus 12600-19400 Mpa
Poission's Ratio 0.3-0.39
Shear Modulus 4850-5700Mpa
Operating Temerature 25 C
Density 1800 kg / m^3
Material Type Solid
Tensile Strength 50- 135 Mpa
Compressive Strength (-50) to (-250 )Mpa
shear Strength 65 Mpa
Material Properties of Cartilage
Young's Modulus: 0.06-0.020 Mpa
Poission's ratio: 0.45-0.49
Shear Modulus: 0.020 MPa
Temperature: 25 C
Density 1100 kg/m^3
Permiability 10^-15 to 10^-16 m^4/N
Material Type ViscoElastic (Porous)
Material Properties Of Steel
Young's Modulus 180 to 200GPa
Poission's ratio 0.23 to 0.29
Shear modulus 75 to 85 Gpa
Yield strength 250 Mpa
Ultimate Tensile Strength 550 Mpa
Density 7800 kg/m^3
Modelling 2D and 3D
Modelling knee- static
Modelling knee-explicit
Experimental Setup
• The Biomomentum’s Mach one machine was used to carry
out the experiments.
• Cartilage Sample: Bovine articular cartilage sample.
• Indentation velocity: 0.0025 mm/s
• Indentation Depth: 0.05 mm
• Sphere radius: 2.5 mm
• Sample dimensions: 1 cm x 1 cm x 1 cm, with cartilage
thickness of 1m
Eq Stress 2D and 3D Total Deformation
Results & Discussion
Total deformation and force reaction (Static)
Results & Discussion
Results & Discussion
Equivalent stress and total deformation (Explicit)
Force reaction for 2D and experimental
-0.00005
0
0.00005
0.0001
0.00015
0.0002
0.00025
0.0003
0.00035
0.0004
0 1 2 3 4 5 6 7
Force Reaction (Y) [N]
-0.05
0
0.05
0.1
0.15
0.2
0.25
0.3
0.35
0 10 20 30 40 50 60 70 80
Chart Title
Series1 Series2 Series3 Series4
Results & Discussion
Force reaction for 3D knee-static and experimental
-0.05
0
0.05
0.1
0.15
0.2
0.25
0.3
0.35
0 10 20 30 40 50 60 70 80
Chart Title
Series1 Series2 Series3 Series4
Results & Discussion
-0.05
0
0.05
0.1
0.15
0.2
0.25
0.3
0.35
0 10 20 30 40 50 60 70 80
Force reaction 3D Knee static
Force reaction for 3D knee-explicit and experimental
-0.05
0
0.05
0.1
0.15
0.2
0.25
0.3
0.35
0 10 20 30 40 50 60 70 80
Chart Title
Series1 Series2 Series3 Series4
Results & Discussion
-1.00E-01
0.00E+00
1.00E-01
2.00E-01
3.00E-01
4.00E-01
5.00E-01
0 0.2 0.4 0.6 0.8 1 1.2 1.4 1.6 1.8 2
Force Reaction - 3D Knee ansys -Expilicit
Force reactions LS dyna vs Experimental
•
0.00E+00
5.00E-07
1.00E-06
1.50E-06
2.00E-06
2.50E-06
3.00E-06
3.50E-06
4.00E-06
4.50E-06
5.00E-06
0 200 400 600 800 1000 1200
ReactionForce
Time
Force Reaction ls-dyna Explicit
Results & Discussion
Conclusion
• The force reaction graph of all analysis shows the behaviour matches
the experimental behaviour of the cartilage.
• Although not exactly as the cartilage, however as Cartilage is a Visco-
Elastic Bio material. And impossible to replicate, The results obtained
are pretty good as expected.
• This study can be further utilized to take a step towards in attempt of
making an artificial cartilage, Solving all the problems mentioned in
the introduction part of the project.

Contenu connexe

Tendances

Bone grafts 2006
Bone grafts 2006Bone grafts 2006
Bone grafts 2006shaheen_d32
 
Final Paper - Biodegradable Bone Cement
Final Paper - Biodegradable Bone CementFinal Paper - Biodegradable Bone Cement
Final Paper - Biodegradable Bone CementShreyas Sriram
 
Pediatric musculoskeletal nurs 3340 spring 2017
Pediatric musculoskeletal nurs 3340 spring 2017Pediatric musculoskeletal nurs 3340 spring 2017
Pediatric musculoskeletal nurs 3340 spring 2017Shepard Joy
 
Pediatric musculoskeletal nurs 3340 fall 2017
Pediatric musculoskeletal nurs 3340 fall 2017Pediatric musculoskeletal nurs 3340 fall 2017
Pediatric musculoskeletal nurs 3340 fall 2017Shepard Joy
 
Aula14 leitura a biomechanical perspective on bone quality
Aula14 leitura a biomechanical perspective on bone qualityAula14 leitura a biomechanical perspective on bone quality
Aula14 leitura a biomechanical perspective on bone qualityRodolfo Labex
 
Post-traumatic Osteoarthritis 2019
Post-traumatic Osteoarthritis 2019Post-traumatic Osteoarthritis 2019
Post-traumatic Osteoarthritis 2019Guojie Lian
 
FINITE ELEMENT ANALYSIS OF FEMORAL INTRAMEDULLARY NAILING
FINITE ELEMENT ANALYSIS OF FEMORAL INTRAMEDULLARY NAILINGFINITE ELEMENT ANALYSIS OF FEMORAL INTRAMEDULLARY NAILING
FINITE ELEMENT ANALYSIS OF FEMORAL INTRAMEDULLARY NAILINGJournal For Research
 
Role of primary stability for osseointegration
Role of primary stability for osseointegrationRole of primary stability for osseointegration
Role of primary stability for osseointegrationAsmita Sodhi
 
Unit 7 Adult Health Nursing
Unit 7  Adult Health NursingUnit 7  Adult Health Nursing
Unit 7 Adult Health Nursingsherkamalshah
 
presentation at Hosp Sultanah Bahiyah
presentation at Hosp Sultanah Bahiyah presentation at Hosp Sultanah Bahiyah
presentation at Hosp Sultanah Bahiyah Adlynn Mazlan
 
Implant stability the password
Implant stability the password Implant stability the password
Implant stability the password Asmita Sodhi
 
Primary stability a predictable parameter
Primary stability a predictable parameter Primary stability a predictable parameter
Primary stability a predictable parameter Asmita Sodhi
 
Implant stability1
Implant stability1Implant stability1
Implant stability1Asmita Sodhi
 
Spinal Fusion: For Athlete’s Better Spine Health
Spinal Fusion: For Athlete’s Better Spine HealthSpinal Fusion: For Athlete’s Better Spine Health
Spinal Fusion: For Athlete’s Better Spine HealthAnne_Stage
 
Templates and loading of implants/ orthodontics courses
Templates and loading of implants/ orthodontics coursesTemplates and loading of implants/ orthodontics courses
Templates and loading of implants/ orthodontics coursesIndian dental academy
 
Global Hospitals Patient CD
Global Hospitals Patient CDGlobal Hospitals Patient CD
Global Hospitals Patient CDlogan9900
 
Benzel_Mechanical characterization of a viscoelastic disc for lumbar TDR
Benzel_Mechanical characterization of a viscoelastic disc for lumbar TDRBenzel_Mechanical characterization of a viscoelastic disc for lumbar TDR
Benzel_Mechanical characterization of a viscoelastic disc for lumbar TDRJames Kuras
 

Tendances (20)

Miniscrew
Miniscrew Miniscrew
Miniscrew
 
Bone grafts 2006
Bone grafts 2006Bone grafts 2006
Bone grafts 2006
 
Final Paper - Biodegradable Bone Cement
Final Paper - Biodegradable Bone CementFinal Paper - Biodegradable Bone Cement
Final Paper - Biodegradable Bone Cement
 
Pediatric musculoskeletal nurs 3340 spring 2017
Pediatric musculoskeletal nurs 3340 spring 2017Pediatric musculoskeletal nurs 3340 spring 2017
Pediatric musculoskeletal nurs 3340 spring 2017
 
Tissue response with new changes
Tissue response with new changesTissue response with new changes
Tissue response with new changes
 
Pediatric musculoskeletal nurs 3340 fall 2017
Pediatric musculoskeletal nurs 3340 fall 2017Pediatric musculoskeletal nurs 3340 fall 2017
Pediatric musculoskeletal nurs 3340 fall 2017
 
IE447FinalPaper
IE447FinalPaperIE447FinalPaper
IE447FinalPaper
 
Aula14 leitura a biomechanical perspective on bone quality
Aula14 leitura a biomechanical perspective on bone qualityAula14 leitura a biomechanical perspective on bone quality
Aula14 leitura a biomechanical perspective on bone quality
 
Post-traumatic Osteoarthritis 2019
Post-traumatic Osteoarthritis 2019Post-traumatic Osteoarthritis 2019
Post-traumatic Osteoarthritis 2019
 
FINITE ELEMENT ANALYSIS OF FEMORAL INTRAMEDULLARY NAILING
FINITE ELEMENT ANALYSIS OF FEMORAL INTRAMEDULLARY NAILINGFINITE ELEMENT ANALYSIS OF FEMORAL INTRAMEDULLARY NAILING
FINITE ELEMENT ANALYSIS OF FEMORAL INTRAMEDULLARY NAILING
 
Role of primary stability for osseointegration
Role of primary stability for osseointegrationRole of primary stability for osseointegration
Role of primary stability for osseointegration
 
Unit 7 Adult Health Nursing
Unit 7  Adult Health NursingUnit 7  Adult Health Nursing
Unit 7 Adult Health Nursing
 
presentation at Hosp Sultanah Bahiyah
presentation at Hosp Sultanah Bahiyah presentation at Hosp Sultanah Bahiyah
presentation at Hosp Sultanah Bahiyah
 
Implant stability the password
Implant stability the password Implant stability the password
Implant stability the password
 
Primary stability a predictable parameter
Primary stability a predictable parameter Primary stability a predictable parameter
Primary stability a predictable parameter
 
Implant stability1
Implant stability1Implant stability1
Implant stability1
 
Spinal Fusion: For Athlete’s Better Spine Health
Spinal Fusion: For Athlete’s Better Spine HealthSpinal Fusion: For Athlete’s Better Spine Health
Spinal Fusion: For Athlete’s Better Spine Health
 
Templates and loading of implants/ orthodontics courses
Templates and loading of implants/ orthodontics coursesTemplates and loading of implants/ orthodontics courses
Templates and loading of implants/ orthodontics courses
 
Global Hospitals Patient CD
Global Hospitals Patient CDGlobal Hospitals Patient CD
Global Hospitals Patient CD
 
Benzel_Mechanical characterization of a viscoelastic disc for lumbar TDR
Benzel_Mechanical characterization of a viscoelastic disc for lumbar TDRBenzel_Mechanical characterization of a viscoelastic disc for lumbar TDR
Benzel_Mechanical characterization of a viscoelastic disc for lumbar TDR
 

Similaire à Human knee analysis ppt

0be3slidesonline97[1]
0be3slidesonline97[1]0be3slidesonline97[1]
0be3slidesonline97[1]Qayoom Sahito
 
Arthroscopic cuff repair
Arthroscopic cuff repairArthroscopic cuff repair
Arthroscopic cuff repairorthoprince
 
Biomaterials in orthopaedics & trauma
Biomaterials  in orthopaedics & traumaBiomaterials  in orthopaedics & trauma
Biomaterials in orthopaedics & traumaZahid Askar
 
Total Hip Replacement Implant Designing and its Computational Analysis using ...
Total Hip Replacement Implant Designing and its Computational Analysis using ...Total Hip Replacement Implant Designing and its Computational Analysis using ...
Total Hip Replacement Implant Designing and its Computational Analysis using ...IRJET Journal
 
Finit element in prosthodontics /certified fixed orthodontic courses by India...
Finit element in prosthodontics /certified fixed orthodontic courses by India...Finit element in prosthodontics /certified fixed orthodontic courses by India...
Finit element in prosthodontics /certified fixed orthodontic courses by India...Indian dental academy
 
Hybrid Porous Hip Implant.pptx
Hybrid Porous Hip Implant.pptxHybrid Porous Hip Implant.pptx
Hybrid Porous Hip Implant.pptxAARTISINGH606287
 
Biomechanical testing of clavicle fx devices
Biomechanical testing of clavicle fx devicesBiomechanical testing of clavicle fx devices
Biomechanical testing of clavicle fx devicesLisa Benson
 
Custom endoprotesi - Progettazione personalizzata Protesi di caviglia
Custom endoprotesi - Progettazione personalizzata Protesi di cavigliaCustom endoprotesi - Progettazione personalizzata Protesi di caviglia
Custom endoprotesi - Progettazione personalizzata Protesi di cavigliaConfindustria Emilia-Romagna Ricerca
 
International Journal of Engineering Research and Development
International Journal of Engineering Research and DevelopmentInternational Journal of Engineering Research and Development
International Journal of Engineering Research and DevelopmentIJERD Editor
 
Hip bone prostheses
Hip bone prosthesesHip bone prostheses
Hip bone prosthesesManav Shah
 
WilliamLAI - From Rigid to Soft
WilliamLAI - From Rigid to SoftWilliamLAI - From Rigid to Soft
WilliamLAI - From Rigid to SoftWilliam Lai, PhD
 
5230003.ppt
5230003.ppt5230003.ppt
5230003.pptHage9
 
Pediatric injury biomechanics
Pediatric injury biomechanics Pediatric injury biomechanics
Pediatric injury biomechanics Julio Duart
 
SD_Group12_Midterm_Presentation
SD_Group12_Midterm_PresentationSD_Group12_Midterm_Presentation
SD_Group12_Midterm_PresentationTyler Grubb
 
WRASASgDGGS DDGBLFAfbJKCfaiGFBKsIgsdJBIGDSKJ
WRASASgDGGS DDGBLFAfbJKCfaiGFBKsIgsdJBIGDSKJWRASASgDGGS DDGBLFAfbJKCfaiGFBKsIgsdJBIGDSKJ
WRASASgDGGS DDGBLFAfbJKCfaiGFBKsIgsdJBIGDSKJJohn Ajish
 

Similaire à Human knee analysis ppt (20)

0be3slidesonline97[1]
0be3slidesonline97[1]0be3slidesonline97[1]
0be3slidesonline97[1]
 
Arthroscopic cuff repair
Arthroscopic cuff repairArthroscopic cuff repair
Arthroscopic cuff repair
 
Surface treatment
Surface treatmentSurface treatment
Surface treatment
 
Biomaterials in orthopaedics & trauma
Biomaterials  in orthopaedics & traumaBiomaterials  in orthopaedics & trauma
Biomaterials in orthopaedics & trauma
 
abm final presentation
abm final presentationabm final presentation
abm final presentation
 
Total Hip Replacement Implant Designing and its Computational Analysis using ...
Total Hip Replacement Implant Designing and its Computational Analysis using ...Total Hip Replacement Implant Designing and its Computational Analysis using ...
Total Hip Replacement Implant Designing and its Computational Analysis using ...
 
Finit element in prosthodontics /certified fixed orthodontic courses by India...
Finit element in prosthodontics /certified fixed orthodontic courses by India...Finit element in prosthodontics /certified fixed orthodontic courses by India...
Finit element in prosthodontics /certified fixed orthodontic courses by India...
 
Hybrid Porous Hip Implant.pptx
Hybrid Porous Hip Implant.pptxHybrid Porous Hip Implant.pptx
Hybrid Porous Hip Implant.pptx
 
Hard tissue replacent
Hard tissue replacentHard tissue replacent
Hard tissue replacent
 
Biomechanical testing of clavicle fx devices
Biomechanical testing of clavicle fx devicesBiomechanical testing of clavicle fx devices
Biomechanical testing of clavicle fx devices
 
Custom endoprotesi - Progettazione personalizzata Protesi di caviglia
Custom endoprotesi - Progettazione personalizzata Protesi di cavigliaCustom endoprotesi - Progettazione personalizzata Protesi di caviglia
Custom endoprotesi - Progettazione personalizzata Protesi di caviglia
 
International Journal of Engineering Research and Development
International Journal of Engineering Research and DevelopmentInternational Journal of Engineering Research and Development
International Journal of Engineering Research and Development
 
Aseptic loosening in tka
Aseptic loosening in tkaAseptic loosening in tka
Aseptic loosening in tka
 
Hip bone prostheses
Hip bone prosthesesHip bone prostheses
Hip bone prostheses
 
WilliamLAI - From Rigid to Soft
WilliamLAI - From Rigid to SoftWilliamLAI - From Rigid to Soft
WilliamLAI - From Rigid to Soft
 
5230003.ppt
5230003.ppt5230003.ppt
5230003.ppt
 
Implant anatomy, materials and the digital world
Implant anatomy, materials and the digital worldImplant anatomy, materials and the digital world
Implant anatomy, materials and the digital world
 
Pediatric injury biomechanics
Pediatric injury biomechanics Pediatric injury biomechanics
Pediatric injury biomechanics
 
SD_Group12_Midterm_Presentation
SD_Group12_Midterm_PresentationSD_Group12_Midterm_Presentation
SD_Group12_Midterm_Presentation
 
WRASASgDGGS DDGBLFAfbJKCfaiGFBKsIgsdJBIGDSKJ
WRASASgDGGS DDGBLFAfbJKCfaiGFBKsIgsdJBIGDSKJWRASASgDGGS DDGBLFAfbJKCfaiGFBKsIgsdJBIGDSKJ
WRASASgDGGS DDGBLFAfbJKCfaiGFBKsIgsdJBIGDSKJ
 

Dernier

Moment Distribution Method For Btech Civil
Moment Distribution Method For Btech CivilMoment Distribution Method For Btech Civil
Moment Distribution Method For Btech CivilVinayVitekari
 
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLEGEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLEselvakumar948
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadhamedmustafa094
 
School management system project Report.pdf
School management system project Report.pdfSchool management system project Report.pdf
School management system project Report.pdfKamal Acharya
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesMayuraD1
 
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...Amil baba
 
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxOrlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxMuhammadAsimMuhammad6
 
A Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityA Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityMorshed Ahmed Rahath
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...drmkjayanthikannan
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapRishantSharmaFr
 
AIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsAIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsvanyagupta248
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayEpec Engineered Technologies
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXssuser89054b
 
PE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiesPE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiessarkmank1
 
Computer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to ComputersComputer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to ComputersMairaAshraf6
 
Employee leave management system project.
Employee leave management system project.Employee leave management system project.
Employee leave management system project.Kamal Acharya
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network DevicesChandrakantDivate1
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTbhaskargani46
 

Dernier (20)

Moment Distribution Method For Btech Civil
Moment Distribution Method For Btech CivilMoment Distribution Method For Btech Civil
Moment Distribution Method For Btech Civil
 
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLEGEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal load
 
School management system project Report.pdf
School management system project Report.pdfSchool management system project Report.pdf
School management system project Report.pdf
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakes
 
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
 
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxOrlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
 
A Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityA Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna Municipality
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leap
 
AIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsAIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech students
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
 
PE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiesPE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and properties
 
Computer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to ComputersComputer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to Computers
 
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
 
Employee leave management system project.
Employee leave management system project.Employee leave management system project.
Employee leave management system project.
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network Devices
 
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced LoadsFEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPT
 

Human knee analysis ppt

  • 1. Design and Analysis of Human knee and cartilage Name of student Guided by Neeraj Jat Prof. K. Nema Shaunak Chandwadkar Ketul Shah Amey Vaidya Sridutt Gokul 1
  • 2. Outline • Objective • Introduction • Theoretical Background • Modeling details • Results and Discussion • Conclusion & Future scope
  • 3. Objective • To study stress and deformation phenomena of a human knee cartilage subjected to displacement and velocity applied in a form of impact • Determining cartilage properties and modelling its response • Comparison of Reaction Force obtained from different simulation software and experimental data to justify our model • Provide pathway for further experiments for making Artificial cartilage.
  • 4. Introduction • Cartilage is a fine viscoelastic rubbery tissue which acts as a cushion between the bones and the joints. People with cartilage damage commonly experience joint pain , stiffness and swelling • Causes of cartilage damage: • Direct blow: If a joint receives a heavy impact • Wear and tear: A joint that experience a long period of stress • Lack of movement : Long hours sitting due to nature of job etc. • Current treatments available: • Knee replacement • Knee prosthesis Statistical Survey and Motivation
  • 5. • Bone: The femur, or thigh bone, is the longest, heaviest, and strongest bone in the entire human body • The cartilage has the thickest layer between these two bones • Most of the injuries occur to the Knee and hence it is chosen for modelling and analysis Theoretical Background
  • 6. Modelling Details Modelling • Mimics (Materialise’s Interactive Medical Image Control System) • Easily and quickly create accurate 3D models from imaging data • Accurately measures in 2D and 3D • Exports 3D models to 3matic to optimize the mesh for FEA
  • 7. Modelling Details Slicing femur bone from the big geometry Extrusion of cartilage over bone surface Creating virtual cells using virtual topology for simplifying geometry
  • 8. Modelling Details 2D 3D Mesh size for cartilage: 0.1 mm Mesh size for Bone: 1mm (finer meshing) Mesh size for sphere: 0.3 mm Mesh type: Quad Tested for: Static condition Between cartilage and bone: Bonded Between cartilage and sphere: Bonded Fixed support: Bone Simply supported: Cartilage Analysis load: Via sphere displacement 0.05 mm total displacement. Mesh size for cartilage: 1 mm Mesh size for Bone: 3mm (finer meshing) Mesh size for sphere: 0.5 mm Mesh Type: Tetrahedrons Tested for: Static condition and Explicit Between cartilage and bone: Bonded Between cartilage and sphere: Bonded Fixed support: Bone Analysis load-static: Via sphere displacement Analysis load-dynamic: velocity. 0.05 mm/s velocity
  • 9. Theoretical Background Determination of Material properties of bone and cartilage Material Properties of Bone Young's Modulus 12600-19400 Mpa Poission's Ratio 0.3-0.39 Shear Modulus 4850-5700Mpa Operating Temerature 25 C Density 1800 kg / m^3 Material Type Solid Tensile Strength 50- 135 Mpa Compressive Strength (-50) to (-250 )Mpa shear Strength 65 Mpa Material Properties of Cartilage Young's Modulus: 0.06-0.020 Mpa Poission's ratio: 0.45-0.49 Shear Modulus: 0.020 MPa Temperature: 25 C Density 1100 kg/m^3 Permiability 10^-15 to 10^-16 m^4/N Material Type ViscoElastic (Porous) Material Properties Of Steel Young's Modulus 180 to 200GPa Poission's ratio 0.23 to 0.29 Shear modulus 75 to 85 Gpa Yield strength 250 Mpa Ultimate Tensile Strength 550 Mpa Density 7800 kg/m^3
  • 13. Experimental Setup • The Biomomentum’s Mach one machine was used to carry out the experiments. • Cartilage Sample: Bovine articular cartilage sample. • Indentation velocity: 0.0025 mm/s • Indentation Depth: 0.05 mm • Sphere radius: 2.5 mm • Sample dimensions: 1 cm x 1 cm x 1 cm, with cartilage thickness of 1m
  • 14.
  • 15. Eq Stress 2D and 3D Total Deformation Results & Discussion
  • 16. Total deformation and force reaction (Static) Results & Discussion
  • 17. Results & Discussion Equivalent stress and total deformation (Explicit)
  • 18. Force reaction for 2D and experimental -0.00005 0 0.00005 0.0001 0.00015 0.0002 0.00025 0.0003 0.00035 0.0004 0 1 2 3 4 5 6 7 Force Reaction (Y) [N] -0.05 0 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0 10 20 30 40 50 60 70 80 Chart Title Series1 Series2 Series3 Series4 Results & Discussion
  • 19. Force reaction for 3D knee-static and experimental -0.05 0 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0 10 20 30 40 50 60 70 80 Chart Title Series1 Series2 Series3 Series4 Results & Discussion -0.05 0 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0 10 20 30 40 50 60 70 80 Force reaction 3D Knee static
  • 20. Force reaction for 3D knee-explicit and experimental -0.05 0 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0 10 20 30 40 50 60 70 80 Chart Title Series1 Series2 Series3 Series4 Results & Discussion -1.00E-01 0.00E+00 1.00E-01 2.00E-01 3.00E-01 4.00E-01 5.00E-01 0 0.2 0.4 0.6 0.8 1 1.2 1.4 1.6 1.8 2 Force Reaction - 3D Knee ansys -Expilicit
  • 21. Force reactions LS dyna vs Experimental • 0.00E+00 5.00E-07 1.00E-06 1.50E-06 2.00E-06 2.50E-06 3.00E-06 3.50E-06 4.00E-06 4.50E-06 5.00E-06 0 200 400 600 800 1000 1200 ReactionForce Time Force Reaction ls-dyna Explicit Results & Discussion
  • 22. Conclusion • The force reaction graph of all analysis shows the behaviour matches the experimental behaviour of the cartilage. • Although not exactly as the cartilage, however as Cartilage is a Visco- Elastic Bio material. And impossible to replicate, The results obtained are pretty good as expected. • This study can be further utilized to take a step towards in attempt of making an artificial cartilage, Solving all the problems mentioned in the introduction part of the project.