Download Regenerative Engineering of Musculoskeletal Tissues and by Syam Nukavarapu, Joseph Freeman, Cato Laurencin MD PhD PDF

By Syam Nukavarapu, Joseph Freeman, Cato Laurencin MD PhD

Repair and regeneration of musculoskeletal tissues is producing colossal curiosity in the biomedical group. hence, those are the main researched tissues from the regeneration perspective. Regenerative Engineering of Musculoskeletal Tissues and Interfaces offers info at the basics, development and up to date advancements regarding the fix and regeneration of musculoskeletal tissues and interfaces. This entire assessment appears to be like at person tissues in addition to tissue interfaces. Early chapters hide a number of basics of biomaterials and scaffolds, different types of cells, progress components, and mechanical forces, relocating directly to talk about tissue-engineering concepts for bone, tendon, ligament, cartilage, meniscus, and muscle, in addition to development and advances in tissue vascularization and nerve innervation of the person tissues. ultimate chapters current details on musculoskeletal tissue interfaces.

  • Comprehensive evaluate of the fix and regeneration of musculoskeletal person tissues and tissue interfaces
  • Presents fresh advancements, basics and growth within the box of engineering tissues
  • Reviews development and advances in tissue vascularization and innervation

Show description

By Syam Nukavarapu, Joseph Freeman, Cato Laurencin MD PhD

Repair and regeneration of musculoskeletal tissues is producing colossal curiosity in the biomedical group. hence, those are the main researched tissues from the regeneration perspective. Regenerative Engineering of Musculoskeletal Tissues and Interfaces offers info at the basics, development and up to date advancements regarding the fix and regeneration of musculoskeletal tissues and interfaces. This entire assessment appears to be like at person tissues in addition to tissue interfaces. Early chapters hide a number of basics of biomaterials and scaffolds, different types of cells, progress components, and mechanical forces, relocating directly to talk about tissue-engineering concepts for bone, tendon, ligament, cartilage, meniscus, and muscle, in addition to development and advances in tissue vascularization and nerve innervation of the person tissues. ultimate chapters current details on musculoskeletal tissue interfaces.

  • Comprehensive evaluate of the fix and regeneration of musculoskeletal person tissues and tissue interfaces
  • Presents fresh advancements, basics and growth within the box of engineering tissues
  • Reviews development and advances in tissue vascularization and innervation

Show description

Read or Download Regenerative Engineering of Musculoskeletal Tissues and Interfaces PDF

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Extra resources for Regenerative Engineering of Musculoskeletal Tissues and Interfaces

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2003). Circulating endothelial progenitor cells, vascular function, and cardiovascular risk. The New England Journal of Medicine, 348, 593–600. 1056/NEJMoa022287 published online EpubFeb 13. Hornicek, F. , Gebhardt, M. , Tomford, W. , Sorger, J. , Menzner, J. , et al. (2001). Factors affecting nonunion of the allograft-host junction. Clinical Orthopaedics and Related Research, 382, 87–98 published online EpubJan. Horwitz, E. , & Keating, A. (2000). Nonhematopoietic mesenchymal stem cells: what are they?

Robey, P. G. (2011). In vivo bone formation by progeny of human embryonic stem cells. Stem Cells and Development, 20, 269–287. 0501 published online EpubFeb. Kuznetsov, S. , Huang, K. , Marshall, G. , Robey, P. , & Mankani, M. H. (2008). Long-term stable canine mandibular augmentation using autologous bone marrow stromal cells and hydroxyapatite/tricalcium phosphate. Biomaterials, 29, 4211–4216. 013 published online EpubNov. Kuznetsov, S. , Mankani, M. , & Robey, P. G. (2001). Circulating skeletal stem cells.

Laurencin, C. T. (2007). Biomimetic tissue-engineered anterior cruciate ligament replacement. Proceedings of the National Academy of Sciences of the United States of America, 104, 3049–3054. , et al. (2012). Synthesis of biodegradable and electroactive tetraaniline grafted poly(ester amide) copolymers for bone tissue engineering. Biomacromolecules, 13, 2881–2889. , & Barbier, O. (2007). Bone allografts – what they can offer and what they cannot. Journal of Bone and Joint Surgery-British Volume, 89B, 574.

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