開創 AI 原生類器官資訊學與電腦模擬方法,建構用於精準醫療與模型引導治療開發的類器官世界模型。



服務類器官經濟的智慧基礎設施
開創 AI 原生類器官資訊學與電腦模擬方法,建構用於精準醫療與模型引導治療開發的類器官世界模型。



問題空間
類器官導入存在風險且流程複雜
在規模化場景下尤其如此。


解決方案空間
化學、蛋白質和細胞都有各自的模擬引擎。類器官也應該擁有自己的模擬引擎。


由 OrganoidOS™ 驅動
作為驅動引擎與基礎設施層,OrganoidOS 支撐所有 OrganoBit 產品。
模組化平台,支持類器官分析、資料處理和資訊學挖掘,為全面的類器官資料管理提供基礎。

OrganoBit 新聞
了解類器官研究、監管突破和 OrganoBit 創新進展。
類器官科學進展
探索類器官研究的最新突破,從方法學創新到治療、疾病建模及更廣泛場景中的人體相關類器官應用。
Human cerebral organoids maintain integrity and viability after transport through mail
Human cerebral organoids are stem-cell derived three-dimensional (3D) tissue cultures used to advance our understanding of human neurodevelopment processes and neurological disorders. This study introduces a reliable method of transportation of live brain organoids to further collaboration amongst disciplines.
Generation of Individualized, Standardized, and Electrically Synchronized Human Midbrain Organoids
Organoids allow to model healthy and diseased human tissues and have applications in developmental biology, drug discovery, and cell therapy. Traditionally cultured in immersion/suspension, organoids face issues like lack of standardization.
Two roads diverged: Pathways toward harnessing intelligence in neural cell cultures
Interest in using in vitro neural cell cultures embodied within structured information landscapes has rapidly grown. Whether for biomedical, basic science, or information processing and intelligence applications, these systems hold significant potential.
我們的智慧基礎設施
綜合基礎設施結合精選資料、資訊學工具、先進機器學習模型和模擬引擎,為類器官研究與實驗設計提供動力。






