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Bio-Engineered Meniscus for Tissue Engineering

Bio-Engineered Meniscus for Tissue Engineering PDF Author: Azran Azhim
Publisher:
ISBN:
Category : Electronic books
Languages : en
Pages : 0

Book Description
Meniscus plays fundamental roles in the knee mechanisms and functions. It acts as a shock absorber where it enables even distribution of forces, and also lubricates knee joints. Meniscal injuries could result to the onset of degenerative osteoarthritis if proper treatments are delayed. To date, treatment of meniscal injuries are more towards conservative methods and surgical approach commonly known as meniscectomy. Attempts to develop scaffolds for meniscus implants from synthetic and biological sources have been done in the recent years. This approach involves a multidisciplinary study known as tissue engineering and regenerative medicine. It involves the combination of three crucial aspects; the choice of chondrogenic/stem cells, bioscaffolds and favourable environmental factors such as growth factors. This chapter discusses and highlights on the currently available meniscal scaffolds that have been explored before. Focus is also directed on the potential of decellularized extracellular matrix (ECM), prepared through sonication treatment that produced scaffolds which mimics natural meniscus. The evaluation of decellularized scaffolds was portrayed through recellularization using cells namely chondrocytes, fibrochondrocytes and stem cells in order to regenerate new functional tissue. In short, this chapter serves as a representation of current approaches aiming in bio-engineering the meniscal scaffolds as meniscus tissue replacement.

Bio-Engineered Meniscus for Tissue Engineering

Bio-Engineered Meniscus for Tissue Engineering PDF Author: Azran Azhim
Publisher:
ISBN:
Category : Electronic books
Languages : en
Pages : 0

Book Description
Meniscus plays fundamental roles in the knee mechanisms and functions. It acts as a shock absorber where it enables even distribution of forces, and also lubricates knee joints. Meniscal injuries could result to the onset of degenerative osteoarthritis if proper treatments are delayed. To date, treatment of meniscal injuries are more towards conservative methods and surgical approach commonly known as meniscectomy. Attempts to develop scaffolds for meniscus implants from synthetic and biological sources have been done in the recent years. This approach involves a multidisciplinary study known as tissue engineering and regenerative medicine. It involves the combination of three crucial aspects; the choice of chondrogenic/stem cells, bioscaffolds and favourable environmental factors such as growth factors. This chapter discusses and highlights on the currently available meniscal scaffolds that have been explored before. Focus is also directed on the potential of decellularized extracellular matrix (ECM), prepared through sonication treatment that produced scaffolds which mimics natural meniscus. The evaluation of decellularized scaffolds was portrayed through recellularization using cells namely chondrocytes, fibrochondrocytes and stem cells in order to regenerate new functional tissue. In short, this chapter serves as a representation of current approaches aiming in bio-engineering the meniscal scaffolds as meniscus tissue replacement.

Engineering the Knee Meniscus

Engineering the Knee Meniscus PDF Author: Kyriacos A. Athanasiou
Publisher: Morgan & Claypool Publishers
ISBN: 1598298720
Category : Electronic books
Languages : en
Pages : 98

Book Description
The knee meniscus was once thought to be a vestigial tissue, but is now known to be instrumental in imparting stability, shock absorption, load transmission, and stress distribution within the knee joint. Unfortunately, most damage to the meniscus cannot be effectively healed by the body. Meniscus tissue engineering offers a possible solution to this problem by striving to create replacement tissue that may be implanted into a defect site. With a strong focus on structure-function relationships, this book details the essential anatomical, biochemical, and mechanical aspects of this versatile tissue and reviews current meniscus tissue engineering strategies and repair techniques. We have written this text such that undergraduate students, graduate students, and researchers will find it useful as a first foray into tissue engineering, a cohesive study of the meniscus, or a reference for meniscus engineering specifications. Table of Contents: Structure-Function Relationships of the Knee Meniscus / Pathophysiology and the Need for Tissue Engineering / Tissue Engineering of the Knee Meniscus / Current Therapies and Future Directions

Sports Injuries

Sports Injuries PDF Author: Mahmut Nedim Doral
Publisher: Springer Nature
ISBN: 3642365698
Category : Medical
Languages : en
Pages : 3295

Book Description
Sports Injuries: Prevention, Diagnosis, Treatment and Rehabilitation covers the whole field of sports injuries and is an up-to-date guide for the diagnosis and treatment of the full range of sports injuries. The work pays detailed attention to biomechanics and injury prevention, examines the emerging treatment role of current strategies and evaluates sports injuries of each part of musculoskeletal system. In addition, pediatric sports injuries, extreme sports injuries, the role of physiotherapy, and future developments are extensively discussed. All those who are involved in the care of patients with sports injuries will find this textbook to be an invaluable, comprehensive, and up-to-date reference.

Building Tissues

Building Tissues PDF Author: Joseph W. Freeman
Publisher: CRC Press
ISBN: 0429768737
Category : Medical
Languages : en
Pages : 342

Book Description
Tissue engineering uniquely applies concepts and techniques from biology and engineering in order to heal or produce new tissues after disease or traumatic injury. A successful tissue engineer must have knowledge of cellular biology, cell signaling, extracellular matrix development, and tissue structure and integrate it with the application of stresses and strains, mass transfer, mechanical properties, and heat transfer. In order to train the next generation of successful tissue engineers, this text gives the reader a background in both the engineering and biology associated with tissue engineering. In reading this text, students will learn about these two different areas of study and how they can be integrated with one another to understand tissues in the human body and solve biomedical problems. Students will be introduced to definitions of engineering concepts, the practical use of stress-strain relationships, material strength, mass transfer, and heat transfer. Through examples and problems, students will apply engineering equations to medical and biomedical situations including actual tissue engineering problems. Students will be introduced to a variety of cell and tissue types and be given the background information necessary to apply the use of cells to the growth and development of new tissues. Students will learn how to select the proper material for the replacement of a particular tissue and why it is important to know about the mechanical properties and degradability of a material prior to implantation. Students will learn how the application of force, material selection, and changes in temperature can positively or negatively affect cell behavior and tissue development. Tissue structure will be described and students will learn about the direct relationship between the structure of a tissue and its properties.

The Meniscus

The Meniscus PDF Author: Philippe Beaufils
Publisher: Springer Science & Business Media
ISBN: 3642024505
Category : Medical
Languages : en
Pages : 397

Book Description
This guide focuses on the normal meniscal mechanism, body and function. Meniscal pathology and therapy are depicted in detail, followed by a presentation of long-term experience of meniscal transplantation and a look into the future of meniscal surgery.

Functional Tissue Engineering

Functional Tissue Engineering PDF Author: Farshid Guilak
Publisher: Springer Science & Business Media
ISBN: 9780387955537
Category : Science
Languages : en
Pages : 456

Book Description
-Softcover reprint of a successful hardcover reference (370 copies sold) -Price to be accessible to the rapidly increasing population of students and investigators in the field of tissue engineering -Chapters written by well-known researchers discuss issues in functional tissue engineering as well as provide guidelines and a summary of the current state of technology

Meniscus Tissue Engineering

Meniscus Tissue Engineering PDF Author: Eric Leonardus Winfriedus Mulder
Publisher:
ISBN: 9789088916212
Category :
Languages : en
Pages : 147

Book Description


Tissue Engineering in Musculoskeletal Clinical Practice

Tissue Engineering in Musculoskeletal Clinical Practice PDF Author: Linda Jo Sandell
Publisher: American Academy of Orthopedic Surgeons
ISBN:
Category : Medical
Languages : en
Pages : 450

Book Description
When will tissue-engineered materials be ready for the OR? How will they be introduced into clinics? What's available in the field now? Tissue Engineering answers these questions and brings insight into the potential for tissue engineering as a biological solution to the critical need for human tissues in orthopaedic surgery. This book is a compilation of the proceedings of the Tissue Engineering in Musculoskeletal Clinical Practice workshop held in Santa Fe, NM in January 2003. It is written by orthopaedic surgeons for practical application. Tissue Engineering addresses the present and future direction of the clinical, scientific and business aspects of the development and application of tissue engineered materials in orthopaedic surgery. Sections address clinical and marketing challenges, methodologies used in the construction of tissue engineered materials, as well as tissue engineering of bone, cartilage, ligament, tendon, meniscus, invertebral disk and muscle

The Menisci

The Menisci PDF Author: Robert F. LaPrade
Publisher: Springer
ISBN: 3662537923
Category : Medical
Languages : en
Pages : 198

Book Description
This book is a comprehensive journey through the pathogenesis and treatment of meniscal pathology. It details the elements that are necessary to properly understand, diagnose, and treat meniscal tears, ranging from vertical tears to radial tears and root avulsions. Treatment techniques are thoroughly described and illustrated, with presentation of the latest evidence on outcomes. The algorithmic treatment of meniscal tears has undergone a rapid transformation. We have progressed from the initial treatments involving removal of the meniscus using an open technique, to the performance of partial meniscectomies and complex meniscal repairs by means of an arthroscopic technique. The current treatment goal is to maintain the biology and mechanical integrity of this vital knee structure, an aim too often disregarded by past generations of surgeons. An explosion of new knowledge, coupled with advances in arthroscopic and surgical technology, has paved the way for wider application of approaches that help to preserve the meniscus, in the hope of preventing or delaying the development of knee arthritis. This book will have utility for all clinicians who treat meniscal lesions and will serve as a valuable resource for years to come.

Magnetic Resonance Imaging in Tissue Engineering

Magnetic Resonance Imaging in Tissue Engineering PDF Author: Mrignayani Kotecha
Publisher: John Wiley & Sons
ISBN: 1119193230
Category : Technology & Engineering
Languages : en
Pages : 485

Book Description
Magnetic Resonance Imaging in Tissue Engineering provides a unique overview of the field of non-invasive MRI assessment of tissue engineering and regenerative medicine Establish a dialogue between the tissue-engineering scientists and imaging experts and serves as a guide for tissue engineers and biomaterial developers alike Provides comprehensive details of magnetic resonance imaging (MRI) techniques used to assess a variety of engineered and regenerating tissues and organs Covers cell-based therapies, engineered cartilage, bone, meniscus, tendon, ligaments, cardiovascular, liver and bladder tissue engineering and regeneration assessed by MRI Includes a chapter on oxygen imaging method that predominantly is used for assessing hypoxia in solid tumors for improving radiation therapy but has the ability to provide information on design strategies and cellular viability in tissue engineering regenerative medicine