tFUS其它应用
Overproduction technology can be used to regulate and stimulate the physiological state of cells. Cells subjected to low-intensity overproduction treatment showed a significant reduction in cell cycle, accelerated proliferation rate, and significantly increased degree of cell differentiation, as well as changes in cellular protein and small molecule expression levels. In addition, precise treatment can be achieved by regulating the permeability of cell membranes through ultrasound, promoting the rapid transport of drugs and genes.
Overproduction technology can be used to regulate and stimulate the physiological state of cells. Cells subjected to low-intensity overproduction treatment showed a significant reduction in cell cycle, accelerated proliferation rate, and significantly increased degree of cell differentiation, as well as changes in cellular protein and small molecule expression levels. In addition, precise treatment can be achieved by regulating the permeability of cell membranes through ultrasound, promoting the rapid transport of drugs and genes.
Overproduction technology can be used to regulate and stimulate the physiological state of cells. Cells subjected to low-intensity overproduction treatment showed a significant reduction in cell cycle, accelerated proliferation rate, and significantly increased degree of cell differentiation, as well as changes in cellular protein and small molecule expression levels. In addition, precise treatment can be achieved by regulating the permeability of cell membranes through ultrasound, promoting the rapid transport of drugs and genes.
Overproduction technology can be used to regulate and stimulate the physiological state of cells. Cells subjected to low-intensity overproduction treatment showed a significant reduction in cell cycle, accelerated proliferation rate, and significantly increased degree of cell differentiation, as well as changes in cellular protein and small molecule expression levels. In addition, precise treatment can be achieved by regulating the permeability of cell membranes through ultrasound, promoting the rapid transport of drugs and genes.
Overproduction technology can be used to regulate and stimulate the physiological state of cells. Cells subjected to low-intensity overproduction treatment showed a significant reduction in cell cycle, accelerated proliferation rate, and significantly increased degree of cell differentiation, as well as changes in cellular protein and small molecule expression levels. In addition, precise treatment can be achieved by regulating the permeability of cell membranes through ultrasound, promoting the rapid transport of drugs and genes.
Overproduction technology can be used to regulate and stimulate the physiological state of cells. Cells subjected to low-intensity overproduction treatment showed a significant reduction in cell cycle, accelerated proliferation rate, and significantly increased degree of cell differentiation, as well as changes in cellular protein and small molecule expression levels. In addition, precise treatment can be achieved by regulating the permeability of cell membranes through ultrasound, promoting the rapid transport of drugs and genes.
Overproduction technology can be used to regulate and stimulate the physiological state of cells. Cells subjected to low-intensity overproduction treatment showed a significant reduction in cell cycle, accelerated proliferation rate, and significantly increased degree of cell differentiation, as well as changes in cellular protein and small molecule expression levels. In addition, precise treatment can be achieved by regulating the permeability of cell membranes through ultrasound, promoting the rapid transport of drugs and genes.
Overproduction technology can be used to regulate and stimulate the physiological state of cells. Cells subjected to low-intensity overproduction treatment showed a significant reduction in cell cycle, accelerated proliferation rate, and significantly increased degree of cell differentiation, as well as changes in cellular protein and small molecule expression levels. In addition, precise treatment can be achieved by regulating the permeability of cell membranes through ultrasound, promoting the rapid transport of drugs and genes.
The Green Valley Brain Tech Magnetic Resonance Guided Ultrasound Brain Neural Regulation System is a research product developed for the treatment and scientific research of refractory epilepsy, focusing on combined magnetic resonance imaging (MRI) technology. It can use MRI technology to visualize and monitor the treatment head and target location, skull surface, and intracranial tissue temperature during the treatment process through image reconstruction, acoustic radiation imaging, temperature imaging, and other methods.
The Green Valley Brain Tech Magnetic Resonance Guided Ultrasound Brain Neural Regulation System is a research product developed for the treatment and scientific research of refractory epilepsy, focusing on combined magnetic resonance imaging (MRI) technology. It can use MRI technology to visualize and monitor the treatment head and target location, skull surface, and intracranial tissue temperature during the treatment process through image reconstruction, acoustic radiation imaging, temperature imaging, and other methods.
The world's leading ultrasound transcranial focusing and manipulation technology
Animal ultrasound probes combined with ultrasound output stimulators can be used for animal neuroscience research. By adjusting the ultrasound stimulation parameters, the low-intensity ultrasound pulses output by the ultrasound probe can generate local thermal or mechanical effects in the animal brain, thereby stimulating or inhibiting the activity of specific neurons or neural circuits, and further studying their mechanisms of action in behavior, cognition, memory, and emotion.