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杨正瓴
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2011-08-17,“中医的现代实证研究”课题建议
http://blog.sciencenet.cn/blog-107667-476442.html
2015-11-27 15:33
http://blog.sciencenet.cn/blog-107667-476442.html
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杨正瓴
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[1] Ultrafast ultrasound localization microscopy for deep super-resolution vascular imaging
Claudia Errico, Juliette Pierre, Sophie Pezet, Yann Desailly, Zsolt Lenkei, Olivier Couture & Mickael Tanter
AffiliationsCorresponding author
Nature 527, 499–502 (26 November 2015) doi:10.1038/nature16066
http://www.nature.com/nature/journal/v527/n7579/full/nature16066.html
[2] Imaging techniques: Super-resolution ultrasound
Ben Cox & Paul Beard
AffiliationsCorresponding author
Nature 527, 451–452 (26 November 2015) doi:10.1038/527451a
Published online 25 November 2015
http://www.nature.com/nature/journal/v527/n7579/full/527451a.html
Claudia Errico, Juliette Pierre, Sophie Pezet, Yann Desailly, Zsolt Lenkei, Olivier Couture & Mickael Tanter
AffiliationsCorresponding author
Nature 527, 499–502 (26 November 2015) doi:10.1038/nature16066
http://www.nature.com/nature/journal/v527/n7579/full/nature16066.html
[2] Imaging techniques: Super-resolution ultrasound
Ben Cox & Paul Beard
AffiliationsCorresponding author
Nature 527, 451–452 (26 November 2015) doi:10.1038/527451a
Published online 25 November 2015
http://www.nature.com/nature/journal/v527/n7579/full/527451a.html
11-27 15:54
杨正瓴
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建议利用成像空间分辨率明显低于0.1毫米的现代成像仪器,进行“全息穴的存在性”判定实验。
首选的是“活体超声显微成像技术ultrasound localization microscopy”[6,7],其次是“超高分辨率荧光显微成像 super-resolved fluorescence microscopy”[8],还可能有“功能性磁共振成像(fMRI,functional magnetic resonance imaging)”等可以进行活体高空间分辨率检测的现代成像设备。
以“活体超声显微成像技术”为例:“用活体动物脑作为材料,利用这种超快超声成像技术能获得组织结构和血管的显微成像,分辨率可以达到微米尺度,深度可以达到表面10毫米以下,成像速度也非常快,动物大脑大概几十秒就可以全部成像完成。”[7,8] 因此,有可能通过这些现代成像手段进行全息穴存在性的判决实验。
对第二掌骨侧、足部等全息穴,对病灶对应的全息穴的功能或组织变化,按照疾病的产生、消失等全过程,进行成像。有可能科学地判断全息穴是否客观存在。
参考文献:
[1] Fractals. Encyclopedia of Mathematic [DB/OL].
http://www.encyclopediaofmath.org/index.php?title=Fractals&oldid=31801
[2] Abstraction of actual infinity. N.M. Nagornyi (originator), Encyclopedia of Mathematics [DB/OL].
http://www.encyclopediaofmath.org/index.php?title=Abstraction_of_actual_infinity&oldid=13232
[3] 中国大百科全书•数学[M],“公理集合论”条目. 北京:中国大百科全书出版社,1988
[4] Set theory. Encyclopedia of Mathematics [DB/OL].
http://www.encyclopediaofmath.org/index.php?title=Set_theory&oldid=35219
[5] 邹承鲁回应张颖清事件 争论背后的学术鸿沟[N]. 竞报.
http://tech.sina.com.cn/d/2005-11-28/0839776402.shtml
http://tech.enorth.com.cn/system/2005/11/28/001174942.shtml
[6] 孙学军,2015-11-26,《自然》:活体超声显微成像技术突破 [DB/OL].
http://blog.sciencenet.cn/blog-41174-938856.html
[7] Claudia Errico, Juliette Pierre, Sophie Pezet, et al. Ultrafast ultrasound localization microscopy for deep super-resolution vascular imaging [J]. Nature, 2015, 527(7579): 499-502
http://www.nature.com/nature/journal/v527/n7579/full/nature16066.html
[8] The Nobel Prize in Chemistry 2014 was awarded jointly to Eric Betzig, Stefan W. Hell and William E. Moerner "for the development of super-resolved fluorescence microscopy" [DB/OL].
http://www.nobelprize.org/nobel_prizes/chemistry/laureates/2014/
首选的是“活体超声显微成像技术ultrasound localization microscopy”[6,7],其次是“超高分辨率荧光显微成像 super-resolved fluorescence microscopy”[8],还可能有“功能性磁共振成像(fMRI,functional magnetic resonance imaging)”等可以进行活体高空间分辨率检测的现代成像设备。
以“活体超声显微成像技术”为例:“用活体动物脑作为材料,利用这种超快超声成像技术能获得组织结构和血管的显微成像,分辨率可以达到微米尺度,深度可以达到表面10毫米以下,成像速度也非常快,动物大脑大概几十秒就可以全部成像完成。”[7,8] 因此,有可能通过这些现代成像手段进行全息穴存在性的判决实验。
对第二掌骨侧、足部等全息穴,对病灶对应的全息穴的功能或组织变化,按照疾病的产生、消失等全过程,进行成像。有可能科学地判断全息穴是否客观存在。
参考文献:
[1] Fractals. Encyclopedia of Mathematic [DB/OL].
http://www.encyclopediaofmath.org/index.php?title=Fractals&oldid=31801
[2] Abstraction of actual infinity. N.M. Nagornyi (originator), Encyclopedia of Mathematics [DB/OL].
http://www.encyclopediaofmath.org/index.php?title=Abstraction_of_actual_infinity&oldid=13232
[3] 中国大百科全书•数学[M],“公理集合论”条目. 北京:中国大百科全书出版社,1988
[4] Set theory. Encyclopedia of Mathematics [DB/OL].
http://www.encyclopediaofmath.org/index.php?title=Set_theory&oldid=35219
[5] 邹承鲁回应张颖清事件 争论背后的学术鸿沟[N]. 竞报.
http://tech.sina.com.cn/d/2005-11-28/0839776402.shtml
http://tech.enorth.com.cn/system/2005/11/28/001174942.shtml
[6] 孙学军,2015-11-26,《自然》:活体超声显微成像技术突破 [DB/OL].
http://blog.sciencenet.cn/blog-41174-938856.html
[7] Claudia Errico, Juliette Pierre, Sophie Pezet, et al. Ultrafast ultrasound localization microscopy for deep super-resolution vascular imaging [J]. Nature, 2015, 527(7579): 499-502
http://www.nature.com/nature/journal/v527/n7579/full/nature16066.html
[8] The Nobel Prize in Chemistry 2014 was awarded jointly to Eric Betzig, Stefan W. Hell and William E. Moerner "for the development of super-resolved fluorescence microscopy" [DB/OL].
http://www.nobelprize.org/nobel_prizes/chemistry/laureates/2014/
01-31 22:15