Mertz Jerome
Boston University, Department of Biomedical Engineering, 44 Cummington Street, Boston, Massachusetts 02215, USA.
Curr Opin Neurobiol. 2004 Oct;14(5):610-6. doi: 10.1016/j.conb.2004.08.013.
Nonlinear microscopy, a general term that embraces any microscopy technique based on nonlinear optics, is further establishing itself as an important tool in neurobiology. Recent advances in labels, labeling techniques, and the use of native or genetically encoded contrast agents have bolstered the capacity of nonlinear microscopes to image the structure and function of not just single cells but of entire networks of cells. Along with novel strategies to image over exceptionally long durations and with increased depth penetration in living brains, these advances are opening new opportunities in neurobiology that were previously unavailable.
非线性显微镜是一个涵盖基于非线性光学的任何显微镜技术的通用术语,它正进一步确立自己作为神经生物学中一种重要工具的地位。标记、标记技术以及天然或基因编码造影剂的使用方面的最新进展,增强了非线性显微镜不仅对单个细胞,而且对整个细胞网络的结构和功能进行成像的能力。随着在超长持续时间内成像以及在活体大脑中增加深度穿透的新策略的出现,这些进展正在为神经生物学带来以前无法获得的新机遇。