Advanced Photonics Research Institute, Gwangju Institute of Science and Technology, Gwangju 61005, Korea.
Department of Mechanical Engineering, Dankook University, Yongin 16890, Korea.
Sensors (Basel). 2021 Feb 23;21(4):1533. doi: 10.3390/s21041533.
In this study, two-photon laser scanning microscopy (TPLSM) based on the internet of things (IoT) is proposed as a remote research equipment sharing system, which enables the remote sharing economy. IoT modules, where data are transmitted to and received from the remote users in the web service via IoT, instead of a data acquisition (DAQ) system embedded in the conventional TPLSM, are installed in the IoT-based TPLSM (IoT-TPLSM). The performance for each IoT module is evaluated independently, and it is confirmed that it works well even in a personal computer-free environment. In addition, a message queuing telemetry transport (MQTT) protocol is applied to the DAQ interface in the web service, and a graphic user interface for enabling the remote users to operate IoT-TPLSM remotely is also designed and implemented. For the image acquisition demonstration, the stained cellular images and the autofluorescent tissue images are obtained in IoT-TPLSM. Lastly, it is confirmed that the comparable performance is provided with the conventional TPLSM by evaluating the imaging conditions and qualities of the three-dimensional image stacks processed in IoT-TPLSM.
在这项研究中,我们提出了一种基于物联网(IoT)的双光子激光扫描显微镜(TPLSM),作为一种远程研究设备共享系统,实现远程共享经济。物联网模块安装在基于物联网的 TPLSM(IoT-TPLSM)中,这些模块通过物联网将数据传输到远程用户,并从远程用户接收数据,而不是传统 TPLSM 中嵌入的数据采集(DAQ)系统。我们独立评估了每个物联网模块的性能,并确认即使在没有个人计算机的环境下,它们也能正常工作。此外,我们还在网络服务中的 DAQ 接口应用了消息队列遥测传输(MQTT)协议,并设计和实现了一个图形用户界面,使远程用户能够远程操作 IoT-TPLSM。在图像采集演示中,我们在 IoT-TPLSM 中获得了染色细胞图像和自发荧光组织图像。最后,通过评估在 IoT-TPLSM 中处理的三维图像堆栈的成像条件和质量,我们确认提供了与传统 TPLSM 相当的性能。