Fluorescent quantum dots (QDs) are powerful multipurpose interfaces of nanotechnology providing long-term and multicolor imaging of cellular and molecular interactions. The application of QDs in living organisms is just beginning to be explored, and zebrafish embryos may be suitable vertebrate model organisms for intravital imaging with QDs. To investigate their potential in skin research, we used QDs as microangiography contrast agents and attempted to visualize the cardiovascular system in zebrafish. We also attempted to find the pathway relationship between the cardiovascular system and the nerve network using QDs together with the transgenic zebrafish line. Quantum Dot QD605, which reveals green color under the fluorescent microscope, w...
The field of axon guidance is taking advantage of the powerful genetic and imaging tools that are no...
Owing to its optical clarity and rapid rate of development, the zebrafish embryo is an ideal model s...
The photostability and narrow emission spectra of non-organic quantum dot fluorophores (QDs) make th...
Recently, inorganic fluorescent contrast agents composed of semiconductor materials have been introd...
Zebrafish has rapidly evolved as a powerful vertebrate model organism for studying human diseases. H...
AbstractIn this study we describe a model system that allows continuous in vivo observation of the v...
Understanding on the mechanisms of vascular branching morphogenesis has become a subject of enormous...
We describe a novel approach to study tumour progression and vasculature development in vivo via glo...
This chapter introduces some of the techniques that can be used for intravital, noninvasive, time la...
The zebrafish (Danio rerio) has become one of the major animal models for in vivo examination of sen...
Over the past decade, the zebrafish has become an increasingly popular animal model for the study of...
Enhancement of hydrophilicity and functionalization of CdTe QDs (Quantum Dots) via surface modificat...
Abstract Background Semiconductor quantum dots (QDs) hold increasing potential for cellular imaging ...
Sialic acid-conjugated nanocarriers have emerged as attractive biomarkers with promising biomedical ...
A central goal of Neuroscience is to understand how the brain processes sensory stimuli and generate...
The field of axon guidance is taking advantage of the powerful genetic and imaging tools that are no...
Owing to its optical clarity and rapid rate of development, the zebrafish embryo is an ideal model s...
The photostability and narrow emission spectra of non-organic quantum dot fluorophores (QDs) make th...
Recently, inorganic fluorescent contrast agents composed of semiconductor materials have been introd...
Zebrafish has rapidly evolved as a powerful vertebrate model organism for studying human diseases. H...
AbstractIn this study we describe a model system that allows continuous in vivo observation of the v...
Understanding on the mechanisms of vascular branching morphogenesis has become a subject of enormous...
We describe a novel approach to study tumour progression and vasculature development in vivo via glo...
This chapter introduces some of the techniques that can be used for intravital, noninvasive, time la...
The zebrafish (Danio rerio) has become one of the major animal models for in vivo examination of sen...
Over the past decade, the zebrafish has become an increasingly popular animal model for the study of...
Enhancement of hydrophilicity and functionalization of CdTe QDs (Quantum Dots) via surface modificat...
Abstract Background Semiconductor quantum dots (QDs) hold increasing potential for cellular imaging ...
Sialic acid-conjugated nanocarriers have emerged as attractive biomarkers with promising biomedical ...
A central goal of Neuroscience is to understand how the brain processes sensory stimuli and generate...
The field of axon guidance is taking advantage of the powerful genetic and imaging tools that are no...
Owing to its optical clarity and rapid rate of development, the zebrafish embryo is an ideal model s...
The photostability and narrow emission spectra of non-organic quantum dot fluorophores (QDs) make th...