blastema的音標為[?blɑ?st?m?],基本翻譯為“成胚組織;產生新細胞的部分”,速記技巧為“blast + stem 胚芽”。
Blastema這個詞的詞源可以追溯到希臘語,意為“生長點”或“生長器官”。它的變化形式包括復數形式blastemata和過去式、過去分詞形式blastematized。相關單詞包括:
1. Blastemal:形容詞,意為與生長點或生長器官有關的。
2. Blastematous:形容詞,意為顯示出或顯示出生長點的。
3. Blastogenesis:意為“組織或器官的再生或形成”,源自希臘語中的“blasto”(生長)和“genesis”(形成)。
4. Blastomere:意為“胚胎中的原始細胞”,源自希臘語中的“blasto”(生長)和“meros”(部分)。
5. Blastodermic:形容詞,意為顯示出或顯示出胚層的。
6. Blastocyst:意為“胚胎囊胚”,源自希臘語中的“blasto”(生長)和“sistos”(球)。
7. Blastocystic:形容詞,意為與囊胚有關的。
8. Blastomycetous:形容詞,用于描述與真菌生長有關的生物體。
9. Blastophore:意為“支持纖毛蟲體的基底部分”,源自希臘語中的“blasto”(生長)和“phore”(攜帶)。
Blastema這個詞在生物學中常用于描述一個組織或器官的再生中心,它能夠產生新的細胞以修復或替換受損的組織。這個詞的使用也反映了生物學領域對希臘語詞源的廣泛應用。以上就是關于Blastema的一些相關信息。
常用短語:
1. blastema tissue 原始組織
2. blastema growth 原始組織生長
3. blastema development 原始組織發育
4. blastema formation 原始組織形成
5. blastema cell 原始組織細胞
6. blastema tissue culture 原始組織培養
7. blastema cell transplantation 原始組織細胞移植
雙語例句:
1. The blastema tissue of the fish embryo grew rapidly and formed a new organ. (魚胚胎的原始組織生長迅速,形成了一個新的器官。)
2. The blastema cells of the mouse limb regained their ability to differentiate after transplantation. (小鼠肢體原始組織的細胞在移植后恢復了分化能力。)
3. The blastema growth of the plant stem is controlled by environmental factors. (植物莖的原始組織生長受到環境因素的影響。)
4. The blastema development of the animal embryo depends on the genetic program. (動物胚胎的原始組織發育依賴于遺傳程序。)
5. The blastema formation of the human skin is related to wound healing and tissue repair. (人類皮膚的原始組織形成與傷口愈合和組織修復有關。)
6. The blastema cell is a highly specialized cell type that can differentiate into various types of tissue cells. (原始組織細胞是一種高度特化的細胞類型,能夠分化成各種類型的組織細胞。)
7. The transplantation of blastema cell transplantation can be used to treat some diseases, such as Parkinson"s disease and spinal cord injury. (原始組織細胞移植可以被用于治療一些疾病,如帕金森病和脊髓損傷。)
英文小作文:
Blastema: The Key to Regeneration
Blastema, a specialized tissue that lies at the core of tissue growth and repair, plays a crucial role in the process of regeneration. From the formation of new organs in fish embryos to the growth and differentiation of limb cells in mice, blastema cells are responsible for the remarkable ability of organisms to recover from injury and disease. In humans, the transplantation of blastema cells has shown potential in the treatment of diseases such as Parkinson"s disease and spinal cord injury, offering hope for a new era of regenerative medicine. Understanding the biology of blastema and harnessing its potential will undoubtedly lead to a better understanding of human health and disease, and pave the way for new treatment options for patients in need.