tFUS其它应用


Wound healing

Ultrasound promotes healing by controlling inflammation and reducing bacteria on wounds, while increasing angiogenesis.

Thrombolysis

Utilizing the mechanical effect of ultrasound to disrupt the structure of blood clots, promoting their dissolution and clearance. In addition, it can also enhance the distribution and penetration of thrombolytic drugs in the target area, accelerating the thrombolysis process.

Bone repair

Ultrasound intervention in areas of bone fracture or damage can promote the proliferation and differentiation of bone cells, increase the release of growth factors, and accelerate bone tissue repair.

Pain relief

Low intensity ultrasound promotes the production of endogenous analgesic substances in cells, reduces sensory nerve excitability, relieves muscle spasms, and rapidly achieves analgesic effects.

Advanced focused phased array transducer technology

The first plug-in transducer, based on precise array design, precise single element spacing arrangement, advanced phase control, electronic control, and intelligent algorithms of computing machines, achieves efficient and stable operation of 128 channels, 256 channels, and 1024 channels.

• < 5%: The output difference between array elements is less than 5%, indicating high output consistency
• < 5%: 24-hour operation error<5%, long-term stable operation
• >75%:Electroacoustic conversion rate>75%, efficient energy conversion
• >30%:Effective penetration rate of sound is greater than 30%, resulting in inefficient energy loss


Parkinson's disease

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.

Disturbance of consciousness

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.

Multiple sclerosis

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.

Epilepsy

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.

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