The process of
vitrification is widely used in cryopreservation to preserve living cells and tissues by converting them into a glass-like state.
玻璃化过程在生物低温保存中被广泛应用,通过将生物细胞和组织转化为玻璃态来实现保存。
Vitrification technology has significantly improved the survival rates of embryos during in vitro fertilization procedures.
玻璃化技术极大地提高了体外受精过程中胚胎的存活率。
In archaeology,
vitrification can occur naturally when pottery or other materials are subjected to intense heat, turning them into a glassy substance.
在考古学中,当陶器或其他材料受到极高温度时会发生自然的玻璃化现象,将其转变为玻璃状物质。
This innovative technique of
vitrification allows long-term storage of seeds without losing their viability.
这种创新的玻璃化技术使得种子能够在长期储存后仍保持生命力。
The ancient city walls showed signs of
vitrification, indicating they had been exposed to extreme temperatures during a past conflict.
古代城墙显示出玻璃化的迹象,表明它们曾在过去的冲突中遭受过极端高温。
Vitrification is also employed for nuclear waste immobilization to safely store radioactive materials.
玻璃化也被用于固化核废料,以安全储存放射性材料。
Researchers are exploring the use of
vitrification to create durable biological constructs for medical applications.
研究人员正在探索使用玻璃化技术创建可用于医学应用的耐用生物结构。
The rapid cooling involved in
vitrification prevents ice crystal formation, which could otherwise damage biological structures.
玻璃化过程中的快速冷却可防止冰晶形成,否则可能破坏生物结构。
Through
vitrification, organs and tissues can be preserved for extended periods before transplantation.
通过玻璃化技术,器官和组织可以在移植前进行长期保存。
Vitrification is crucial for the long-term storage of stem cells in biobanks for future therapeutic uses.
对于在生物库中为未来治疗用途而进行干细胞的长期存储来说,玻璃化技术至关重要。
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