"/>

人人草人人-欧美一区二区三区精品-中文字幕91-日韩精品影视-黄色高清网站-国产这里只有精品-玖玖在线资源-bl无遮挡高h动漫-欧美一区2区-亚洲日本成人-杨幂一区二区国产精品-久久伊人婷婷-日本不卡一-日本成人a-一卡二卡在线视频

New tissue-imaging technology could enable real-time diagnostics

Source: Xinhua    2018-06-21 05:37:13

CHICAGO, June 20 (Xinhua) -- A new microscope system that uses tailored pulses of light to image with multiple wavelengths can image living tissue in real time and in molecular detail, without any chemicals or dyes, according to researchers at the University of Illinois (UI).

The simultaneous label-free autofluorescence multi-harmonic (SLAM) microscopy differs from standard tissue pathology in several ways: it is used on living tissue inside a living being, giving it the potential to be used for clinical diagnosis or to guide surgery in the operating room; it uses no dyes or chemicals, only light.

Meanwhile, SLAM microscopy simultaneously collects multiple contrasts from cells and tissues, capturing molecular-level details and dynamics such as metabolism.

In the study, UI researchers looked at mammary tumors in rats, along with the surrounding tissue environment. Thanks to the simultaneous data, they were able to observe the range of dynamics as the tumors progressed and how different processes interacted.

The researchers saw that the cells near the tumor had differences in metabolism and morphology, indicating that the cells had been recruited by the cancer.

In addition, they observed surrounding tissues creating infrastructure to support the tumor, such as collagen and blood vessels. They also saw communication between the tumor cells and the surrounding cells in the form of vesicles, tiny transport packages released by cells and absorbed by other cells.

"Previous work has shown that tumor cells release vesicles to lure the surrounding cells to support them," said UI graduate student Sixian You, first author of the research. "Then the cells that have been recruited release their own vesicles to go back to the tumor. It's a vicious cycle. It's very different from the activity we see in our control samples with healthy tissue."

"SLAM allows us to have a comprehensive picture of this ever-evolving tumor microenvironment at subcellular, molecular and metabolic levels in living animals and human tissue. Monitoring that process can help us better understand cancer progression, and in the future could lead to better diagnosis of how advanced a tumor is, and better therapeutic approaches aimed at halting the progression," said You.

This technology may open the possibility of complementing, or even replacing, standard histopathology processing, which is time- and labor-intensive and can only be done on removed, fixed, dead tissue, said study leader Stephen Boppart, a UI professor of bioengineering and electrical and computer engineering.

In the next step, UI researchers will use SLAM microscopy to compare healthy tissue and cancer tissue in both rats and humans, focusing particularly on vesicle activity and how it relates to cancer aggressiveness. They are also working to make portable versions of the SLAM microscope that could be used clinically.

The research, released on UI website Wednesday, has been published in the journal Nature Communications.

Editor: yan
Related News
Xinhuanet

New tissue-imaging technology could enable real-time diagnostics

Source: Xinhua 2018-06-21 05:37:13

CHICAGO, June 20 (Xinhua) -- A new microscope system that uses tailored pulses of light to image with multiple wavelengths can image living tissue in real time and in molecular detail, without any chemicals or dyes, according to researchers at the University of Illinois (UI).

The simultaneous label-free autofluorescence multi-harmonic (SLAM) microscopy differs from standard tissue pathology in several ways: it is used on living tissue inside a living being, giving it the potential to be used for clinical diagnosis or to guide surgery in the operating room; it uses no dyes or chemicals, only light.

Meanwhile, SLAM microscopy simultaneously collects multiple contrasts from cells and tissues, capturing molecular-level details and dynamics such as metabolism.

In the study, UI researchers looked at mammary tumors in rats, along with the surrounding tissue environment. Thanks to the simultaneous data, they were able to observe the range of dynamics as the tumors progressed and how different processes interacted.

The researchers saw that the cells near the tumor had differences in metabolism and morphology, indicating that the cells had been recruited by the cancer.

In addition, they observed surrounding tissues creating infrastructure to support the tumor, such as collagen and blood vessels. They also saw communication between the tumor cells and the surrounding cells in the form of vesicles, tiny transport packages released by cells and absorbed by other cells.

"Previous work has shown that tumor cells release vesicles to lure the surrounding cells to support them," said UI graduate student Sixian You, first author of the research. "Then the cells that have been recruited release their own vesicles to go back to the tumor. It's a vicious cycle. It's very different from the activity we see in our control samples with healthy tissue."

"SLAM allows us to have a comprehensive picture of this ever-evolving tumor microenvironment at subcellular, molecular and metabolic levels in living animals and human tissue. Monitoring that process can help us better understand cancer progression, and in the future could lead to better diagnosis of how advanced a tumor is, and better therapeutic approaches aimed at halting the progression," said You.

This technology may open the possibility of complementing, or even replacing, standard histopathology processing, which is time- and labor-intensive and can only be done on removed, fixed, dead tissue, said study leader Stephen Boppart, a UI professor of bioengineering and electrical and computer engineering.

In the next step, UI researchers will use SLAM microscopy to compare healthy tissue and cancer tissue in both rats and humans, focusing particularly on vesicle activity and how it relates to cancer aggressiveness. They are also working to make portable versions of the SLAM microscope that could be used clinically.

The research, released on UI website Wednesday, has been published in the journal Nature Communications.

[Editor: huaxia]
010020070750000000000000011105521372689471
主站蜘蛛池模板: 91性色 | 亚洲少妇18p | 在线欧美日韩国产 | 亚洲一区h | 国产在线第二页 | av色综合 | 国产女同在线观看 | 久久免费资源 | 欧美高清成人 | 麻豆传媒在线视频 | 亚洲国产无码精品 | 欲涩漫入口免费网站 | 久久亚洲婷婷 | 99草在线视频 | 一区二区三区 中文字幕 | 亚洲综合中文 | 2019国产精品 | 激情文学久久 | 狠狠干b| 看日本黄色录像 | 色婷婷久久 | 影音先锋毛片 | 麻豆成人在线观看 | 国内自拍视频在线播放 | 亚洲经典一区二区 | 91在线视频观看 | 69色堂| 欧美视频一二三区 | 亚洲欧美国产一区二区 | aaa在线视频 | 毛片毛片毛片毛片毛片毛片毛片 | 日韩欧美有码 | 男人的天堂av网 | 国产精品一区二区三区久久 | 日韩一级免费毛片 | 国产性猛交╳xxx乱大交 | 天天操夜夜操狠狠操 | 国产伦精品一区二区三区照片 | 欧美与黑人午夜性猛交久久久 | 亚洲在线影院 | 色人人| 免费中文视频 | 奇米第四色777| 制服丝袜亚洲色图 | 一级性毛片| 国产精品人人做人人爽人人添 | 电影《走路上学》免费 | 91人妻一区二区三区 | 精品无码人妻一区二区三区品 | 韩国成人免费视频 | 国产成人精品久久二区二区91 | 日本一区二区三区免费观看 | 69中国xxxxxxxxx96| 国产成人三级在线播放 | 国产精品三级电影 | 亚洲成年人在线 | 亚洲在线播放 | 涩涩资源站 | 人妻精品无码一区二区 | 久久久久久久综合 | 91色国产| 欧美黄色大片网站 | 日本免费黄色小视频 | 毛片国产精品 | 亚洲砖区区免费 | 永久免费av网站 | 成 人 黄 色 片 在线播放 | 黑人超碰 | 精品一区二区久久久久久久网站 | 另类av在线 | 久久发布国产伦子伦精品 | 风韵多水的老熟妇 | www狠狠干 | 操三八男人的天堂 | 国产卡一卡二卡三无线乱码新区 | 男生操女生在线观看 | 激情av| 久热这里只有精品6 | 草草视频网站 | 在线观看亚洲精品 | 日韩欧美在线不卡 | 国产麻豆精品一区二区 | 日韩在线观看免费网站 | 免费黄色在线看 | 亚洲午夜一区二区 | 韩国中文字幕 | 久久国色| 双性娇喘浑圆奶水h男男漫画 | 日韩久久久久 | 长篇高h乱肉辣文 | 少妇一级1淫片 | 密臀av| 一区二区三区日韩精品 | 高清18麻豆 | 影音先锋在线视频观看 | 国产伦精品一区二区三 | 香蕉av网 | 欧美色就是色 | 国产亚洲精品码 |