<p style="text-align:justify;text-justify:inter-ideograph;text-indent:25px"><span style="font-size:13px;font-family:'Times New Roman',serif;color:black">LEICA DMi8</span><span style="font-size:13px;font-family:宋体;color:black">(</span><span style="font-size:13px;font-family:'Times New Roman',serif;color:black">THUNDER Imager Cell Spinning Disk</span><span style="font-size:13px;font-family:宋体;color:black">)它融合了</span><span style="font-size:13px;font-family:'Times New Roman',serif;color:black">THUNDER Computational Clearing</span><span style="font-size:13px;font-family:宋体;color:black">技术和转盘共聚焦技术,旨在为</span><span style="font-size:13px;font-family:'Times New Roman',serif;color:black">3D</span><span style="font-size:13px;font-family:宋体;color:black">样本(如类器官、组织切片和活细胞)提供高速、高质量的荧光成像,适用于对活细胞、</span><span style="font-size:13px;font-family:'Times New Roman',serif;color:black">3D</span><span style="font-size:13px;font-family:宋体;color:black">细胞培养、大脑类器官、斑马鱼和厚组织样本(如大鼠大脑)</span> <span style="font-size:13px;font-family:宋体;color:black">等进行高灵敏度、多维度的动态观测。</span></p><p style="text-align:justify;text-justify:inter-ideograph;text-indent:25px"><span style="font-size:13px;font-family:宋体;color:black">应用领域:细胞动力学研究:如细胞分裂、迁移、囊泡运输、细胞器互作等快速动态过程。神经科学:观察神经元形态发育、突触形成、以及快速的钙离子信号传导。发育生物学:追踪胚胎或类器官的早期发育和分化过程。药物筛选与药理学:在活细胞水平实时监测药物对细胞形态、增殖或信号通路的影响。感染与免疫学:实时观察病原体(如病毒、细菌)与宿主免疫细胞(如</span><span style="font-size:13px;font-family:'Times New Roman',serif;color:black">T</span><span style="font-size:13px;font-family:宋体;color:black">细胞)之间的相互作用。</span></p><p style="text-indent:25px"><span style="font-size:13px;font-family:'Times New Roman',serif;color:black"> </span></p><p><br/></p>