当社グループは 3,000 以上の世界的なカンファレンスシリーズ 米国、ヨーロッパ、世界中で毎年イベントが開催されます。 1,000 のより科学的な学会からの支援を受けたアジア および 700 以上の オープン アクセスを発行ジャーナルには 50,000 人以上の著名人が掲載されており、科学者が編集委員として名高い
。オープンアクセスジャーナルはより多くの読者と引用を獲得
700 ジャーナル と 15,000,000 人の読者 各ジャーナルは 25,000 人以上の読者を獲得
Liu Wang, Yehia Mashad
The identification of neural stem cells (NSCs), which have the capacity for self-renewal and differentiation into a wide range of neural lineages, offers hope for the future treatment of brain neurological disorders like stroke/cerebral ischemia, traumatic brain injury, and neurodegenerative diseases. However, due to tissue inflammation or blood-brain barrier, only a few numbers of NSCs were able to survive or reproduce. To direct stem cell destiny and behaviour for nerve regeneration, a suitable culture environment that closely resembles the natural NSC niche must be created. When creating functionalized scaffolds, which could be used as more than just delivery systems, it is important to take into account the topology, mechanical characteristics, bioactive chemicals, and their spatial and temporal presentations of the NSC niche. Axon growth at the site of the injured brain, support endogenous or exogenous cells proliferation, migration, and homing, and stimulate particular cellular responses at the molecular level. This review aims to describe the many types of biomaterial.