The original version of this article contained an error in author names,which was incorrectly given as‘MelvinKhee-Shing Leow’,the correct name of the author is Melvin Khee-Shing Leow and the initials should be Leow ...
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The original version of this article contained an error in author names,which was incorrectly given as‘MelvinKhee-Shing Leow’,the correct name of the author is Melvin Khee-Shing Leow and the initials should be Leow *** error has now been corrected in the HTML and PDF versions of the article.
Anima-free and mechanistic understanding and prediction of human body responses is the ultimate goal of alternatives to animal *** human cell-based assays are its fundamental but existing assays do not always have hig...
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Anima-free and mechanistic understanding and prediction of human body responses is the ultimate goal of alternatives to animal *** human cell-based assays are its fundamental but existing assays do not always have high physiological *** solve one of the most serious problems in current plate-based culture systems,we used oxygen-permeable silicone membrane that enables direct oxygen supply to the cells and their in vivo-like aerobic respiration as opposed to the dominancy of anaerobic respiration in plastic *** also enables in vivo-like complete 3 D hierarchical cocultures of liver parenchymal and non-parenchymal cells at the bottom surfaces of the *** microenvironments such as mechanical stimulations or continuous perfusion of culture medium may be beneficial and be realized by organ-on-a-chip ***/organs-on-a-chip technologies may be a key to this because they enables finding of unknown organ-to-organ *** such better physiologically-relevant cell-based assays are emerging but we have to keep in mind that they will never be built up to a complete human ***,integration of such advanced cell-based assays with various omics and numerical methods arerequired in better understanding of human body responses and in quantitative in vitro-in vivo extrapolation.
In recent years, the field of neuroscience has gone through rapid experimental advances and a significant increase in the use of quantitative and computational methods. This growth has created a need for clearer analy...
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Brain surface registration is an important tool for characterizing cortical anatomical variations and understanding their roles in normal cortical development and psychiatric diseases. However, surface registration re...
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This paper deals with development of effective Intelligent Control teaching environment using Challenge Based Learning (CBL) at Mechatronics Department of Politeknik Elektronika Negeri Surabaya (PENS). CBL is one of p...
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The spectral dispersion of ultrashort pulses allows the simultaneous focusing of light in both space and time,which creates socalled spatiotemporal *** space–time coupling may be combined with the existing holographi...
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The spectral dispersion of ultrashort pulses allows the simultaneous focusing of light in both space and time,which creates socalled spatiotemporal *** space–time coupling may be combined with the existing holographic techniques to give a further dimension of control when generating focal light *** the present study,it is shown that a phase-only hologram placed in the pupil plane of an objective and illuminated by a spatially chirped ultrashort pulse can be used to generate threedimensional arrays of spatio-temporally focused *** exploiting the pulse front tilt generated at focus when applying simultaneous spatial and temporal focusing(SSTF),it is possible to overlap neighboring foci in time to create a smooth intensity *** resulting light field displays a high level of axial confinement,with experimental demonstrations given through two-photon microscopy and the non-linear laser fabrication of glass.
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