Design, Fabrication and Characterization of 3D-printed ABS and PLA Scaffolds Potentially for Tissue Engineering DOI

Md. Rahatuzzaman,

Minar Mahmud,

Sazedur Rahman

et al.

SSRN Electronic Journal, Journal Year: 2023, Volume and Issue: unknown

Published: Jan. 1, 2023

Rapid prototyping is a vital manufacturing method for fabricating tissue engineering scaffolds. Bone scaffolds possess high level of porosity to promote cell attachment, spreading, and differentiation considering appropriate biomechanical properties. Optimization various requirements parameters often requires extensive experimental work. This study aims design simulate 3D-printed PLA ABS with two lay-down patterns potentially bone also distinguishing the mechanical The CAD-based were designed simulated finite element analysis (FEA) determine 3D printing technology has made it possible produce that have tailored properties like strength, nutrient transport, biological growth. comparison between indicates scaffold holds higher potential being used in regeneration.

Language: Английский

Design of bone scaffolds with calcium phosphate and its derivatives by 3D printing: A review DOI

Seyedeh Farnaz Darghiasi,

Ashkan Farazin,

Hanieh Sadat Ghazali

et al.

Journal of the mechanical behavior of biomedical materials/Journal of mechanical behavior of biomedical materials, Journal Year: 2024, Volume and Issue: 151, P. 106391 - 106391

Published: Jan. 9, 2024

Language: Английский

Citations

20

PEEK-based 3D printing: a paradigm shift in implant revolution for healthcare DOI

Senthil Maharaj Kennedy,

Raghav GR,

R. Robert

et al.

Polymer-Plastics Technology and Materials, Journal Year: 2024, Volume and Issue: 63(6), P. 680 - 702

Published: Jan. 10, 2024

The emergence of Polyether Ether Ketone (PEEK) in implant fabrication is a sign the revolution healthcare that has been sparked by convergence 3D printing technology and advanced materials. This review paper investigates multifaceted impact PEEK on changing manufacturing landscape. explores significance fabrication, critical function printing, as leading material through thorough analysis PEEK's exceptional biocompatibility, mechanical properties, adaptability. It various PEEK-based applications dental, orthopedic, spinal, cranial, cardiovascular, emerging domains, supported real-world case studies success stories. also discusses difficulties, developments, sustainability issues related to printing. revolutionary highlighted this paper, which charts future directions provides insights into how patient care paradigm implantology.

Language: Английский

Citations

16

Advances in Smart Hybrid Scaffolds: A Strategic Approach for Regenerative Clinical Applications DOI Creative Commons
Ahsan Riaz Khan,

Amol D. Gholap,

Navdeep Singh Grewal

et al.

Engineered Regeneration, Journal Year: 2025, Volume and Issue: unknown

Published: March 1, 2025

Language: Английский

Citations

1

Advancements and prospects of polymer-based hybrid composites for bone plate applications DOI

Senthil Maharaj Kennedy,

A. Vasanthanathan,

Jeen Robert RB

et al.

Polymer-Plastics Technology and Materials, Journal Year: 2023, Volume and Issue: 63(1), P. 68 - 87

Published: Nov. 1, 2023

This review aims to provide a comprehensive analysis of the current research in field orthopedic bone plates exploring various reinforcements used polymer-based hybrid composites, discussing their mechanical properties and impact on composite performance. The article further delves into matrix materials utilized composites. Fabrication techniques employed for producing composites are discussed. performance including tensile strength, flexural fracture toughness, is reviewed assess suitability plate applications. Finally, clinical outcomes examined gauge efficacy real-world scenarios.

Language: Английский

Citations

22

A novel carbon‐flax bioepoxy hybrid composite bone plate with enhanced bio‐mechanical performance DOI

Senthil Maharaj Kennedy,

V. Arunachalam,

A. S. Kannan

et al.

Materialwissenschaft und Werkstofftechnik, Journal Year: 2024, Volume and Issue: 55(4), P. 508 - 517

Published: April 1, 2024

Abstract This study aimed to pioneer a transformative approach in orthopedic implant design by developing and analyzing groundbreaking carbon‐flax reinforced bioepoxy hybrid composite bone plate. The primary objectives of the present research were enhance bio‐mechanical performance implants explore potential applications novel material for implants. Hybrid plate was fabricated mimicking human with soft inner core rigid outer coating. Mechanical properties obtained through characterization studies as per ASTM standards. plates tested test standard results correlated finite element simulations. maximum stress value experiments biomechanical four‐point bending tests 331.74 MPa, corresponding strain 0.0337. equivalent values from simulation line findings experiments. current signifies paradigm shift technology. offers remarkable applications, promising safer more durable solutions patients need repair or replacement.

Language: Английский

Citations

7

Impact of mechanical engineering innovations in biomedical advancements DOI

Senthil Maharaj Kennedy,

A. Vasanthanathan,

R. Robert

et al.

In vitro models, Journal Year: 2024, Volume and Issue: 3(1), P. 5 - 18

Published: Jan. 25, 2024

Language: Английский

Citations

6

A complete overview of self-healing composites including its models in aeronautical systems DOI

R. Robert,

Joemax Agu M,

D. Rajeev

et al.

Polymer-Plastics Technology and Materials, Journal Year: 2024, Volume and Issue: 63(9), P. 1143 - 1174

Published: March 17, 2024

In adherence to component matrices, mixtures fall into three categories: polymeric, metallic, and ceramic. Microscopic cracks lead laminated substance failure, reducing reliability durability. Self-healing methods, exemplified by the latest advancements, mitigate breakdown extend lifespan without compromising functionality. Despite limited research on self-repair in various this study comprehensively covers all combination categories. Developed repair fractures, prevent abandonment, enhance building lifespan, self-healing exhibit promising potential. The article enlightens readers contemporary self-healer applications across industries, encompassing aeronautics automotive. It details recent developments, including micro-capsule encapsulated, fiber, vascular system constructions, alongside evaluation treatment strategies.

Language: Английский

Citations

6

Advancements in healthcare materials: unraveling the impact of processing techniques on biocompatibility and performance DOI
Alok Bihari Singh,

Chandni Khandelwal,

G.S. Dangayach

et al.

Polymer-Plastics Technology and Materials, Journal Year: 2024, Volume and Issue: 63(12), P. 1608 - 1644

Published: May 11, 2024

Cutting-edge materials have changed medical device and implant manufacturing. The processing of these affects their mechanical, physical, biological properties, impeding integration. This study looks at different ways to process healthcare materials, focusing on the specific needs such as biocompatibility, mechanical strength, corrosion resistance, stability, bioactivity. It divides methods into "ordinary" "edge-cutting." Each technique's benefits, shortcomings, current innovations, well its effects material, are also examined. examines how parameters affect product quality. To incorporate comprehensive review methods, selected literature for is evaluated according study's goals. assessment emphasizes quality assurance regulatory compliance throughout production. stresses need assurance, characterization, testing devices implants. Processes polishing, etching, coatings improve biocompatibility reduce infection risk, findings. concluded that cutting-edge additive manufacturing electrospinning provide exact control over material composition, structure, porosity, making them ideal many clinical applications.

Language: Английский

Citations

5

Transforming Healthcare: A Review of Additive Manufacturing Applications in the Healthcare Sector DOI Creative Commons
Alok Bihari Singh

Published: Sept. 10, 2024

Language: Английский

Citations

4

Transformative applications of additive manufacturing in biomedical engineering: bioprinting to surgical innovations DOI

Senthil Maharaj Kennedy,

K. Amudhan,

Jerold John Britto J

et al.

Journal of Medical Engineering & Technology, Journal Year: 2024, Volume and Issue: 48(4), P. 151 - 168

Published: May 18, 2024

This paper delves into the diverse applications and transformative impact of additive manufacturing (AM) in biomedical engineering. A detailed analysis various AM technologies showcases their distinct capabilities specific within medical field. Special emphasis is placed on bioprinting organs tissues, a revolutionary area where has potential to revolutionize organ transplantation regenerative medicine by fabricating functional tissues organs. The review further explores customization implants prosthetics, demonstrating how tailored devices enhance patient comfort performance. Additionally, utility surgical planning examined, highlighting printed models contribute increased precision, reduced operating times, minimized complications. discussion extends 3D printing instruments, showcasing these bespoke tools can improve outcomes. Moreover, integration drug delivery systems, including development innovative drug-loaded implants, underscores its therapeutic efficacy reduce side effects. It also addresses personalized prosthetic regulatory frameworks, biocompatibility concerns, future global health sustainable practices.

Language: Английский

Citations

4