Udvidet returret til d. 31. januar 2025

Joint and Bone - Ahmed El-Hashash - Bog

Bag om Joint and Bone

Joint and Bone: From Bench to Bedside, Volume Three, the latest release in the Stem Cell Innovation in Health and Disease series, is a timely and fascinating collection of information and new discoveries that provides a contemporary snapshot album from the fast-moving field of regenerative medicine and stem cell therapeutics. This new volume addresses the molecular players underlying iPSC formation, maintenance, and expansion and differentiation, bringing chapters that describe cutting-edge research for understanding stem cell functions in joint and bone diseases, and for developing methods to bring stem cells from bench to bedside. Each chapter includes insights ranging from the use of mouse and human organoid cultures, genetic editing in vitro and in vivo, and human iPSCs to study stem cell functions and model joint and bone diseases.

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  • Sprog:
  • Ukendt
  • ISBN:
  • 9780323919388
  • Indbinding:
  • Paperback
  • Sideantal:
  • 246
  • Udgivet:
  • 2. februar 2023
  • Størrelse:
  • 234x19x190 mm.
  • Vægt:
  • 534 g.
  • Ukendt - mangler pt..

Normalpris

  • BLACK NOVEMBER

Medlemspris

Prøv i 30 dage for 45 kr.
Herefter fra 79 kr./md. Ingen binding.

Beskrivelse af Joint and Bone

Joint and Bone: From Bench to Bedside, Volume Three, the latest release in the Stem Cell Innovation in Health and Disease series, is a timely and fascinating collection of information and new discoveries that provides a contemporary snapshot album from the fast-moving field of regenerative medicine and stem cell therapeutics. This new volume addresses the molecular players underlying iPSC formation, maintenance, and expansion and differentiation, bringing chapters that describe cutting-edge research for understanding stem cell functions in joint and bone diseases, and for developing methods to bring stem cells from bench to bedside. Each chapter includes insights ranging from the use of mouse and human organoid cultures, genetic editing in vitro and in vivo, and human iPSCs to study stem cell functions and model joint and bone diseases.

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