Matches in SemOpenAlex for { <https://semopenalex.org/work/W4304143698> ?p ?o ?g. }
- W4304143698 abstract "During tumor resection, doctors use intraoperative biopsies to determine the tumor margin. However, the pathological procedures of traditional diagnostic methods, such as imprint cytology and frozen section analysis, are complicated and time-consuming. As this is not conducive to surgeries, their applications are limited to a large extent. Therefore, novel fast microscopy imaging technologies with resolutions comparable to those of pathological tissue sections are necessary. Stimulated Raman scattering (SRS), photoacoustic microscopy (PAM), multiphoton microscopy (MPM), and optical coherence microscopy (OCM) exhibit the advantages of high spatial resolution, large imaging depth, avoiding damage to biological tissues, label-free detection, and the availability of biochemical information of tissues. Additionally, they are superior to intraoperative biopsies owing to their fast imaging speeds. Therefore, they possess broad application prospects in tumor resection surgeries and the diagnosis of other diseases. This study briefly introduces the basic principles, structural characteristics, advantages and disadvantages, and the existing research status of SRS, PAM, MPM, and OCM in biomedicine. Furthermore, we propose a multi-mode hybrid detection technology that can be used for surgeries. The combination of the proposed technology with deep learning-based artificial intelligence can form the basis for intraoperative diagnosis in the future." @default.
- W4304143698 created "2022-10-11" @default.
- W4304143698 creator A5008802795 @default.
- W4304143698 creator A5024149322 @default.
- W4304143698 creator A5043714082 @default.
- W4304143698 creator A5060145891 @default.
- W4304143698 creator A5066590014 @default.
- W4304143698 creator A5069086232 @default.
- W4304143698 creator A5077952878 @default.
- W4304143698 creator A5086878627 @default.
- W4304143698 date "2022-10-10" @default.
- W4304143698 modified "2023-10-18" @default.
- W4304143698 title "Analysis of intraoperative microscopy imaging techniques and their future applications" @default.
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