A remote-controllable UAV-vehicle dual-purpose blood transport device
A remote control and transportation device technology, applied in the medical field, can solve the problems that blood cannot be stored, the blood status cannot be checked in real time, and the transportation temperature cannot be quickly adjusted, so as to ensure the use authority and reduce the weight.
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Embodiment 1
[0045] like figure 1 As shown, a remote-controlled UAV-vehicle dual-purpose blood transport device includes:
[0046] like Figure 14 As shown, a blood bag 27 for carrying blood is provided with a fixed opening 29 on the top of the blood bag 27, and a radio frequency tag 28 that can obtain blood information by scanning is pasted on the surface of the blood bag 27.
[0047] like figure 1 As shown, the transport box 1 is used to provide storage and transportation for the blood bag 27 carrying red blood cells, frozen plasma, and platelet blood. The top of the transport box 1 is provided with a first handle 7 that facilitates the transport of the transport box. Figure 7 As shown, the back side of the transport box 1 is provided with a ventilation net 19 for heat dissipation, a storage battery 44 for power supply and a charging port 43 for charging the storage battery 44, and the storage battery 44 is used for the ultraviolet germicidal lamp 12, the control unit, the first The ...
Embodiment 2
[0064] The difference between this embodiment and Embodiment 1 is that the transported blood type is plasma, and in the first step of the workflow, the storage temperature range is selected to be less than -18°C.
Embodiment 3
[0066] The difference between this embodiment and embodiment 1 is:
[0067] like Figure 10 , Figure 13 As shown, the transport box 1 also includes: a shock unit for providing shock storage for the blood bag 27 carrying the apheresis platelets, and a second temperature control unit for providing a suitable storage temperature for the blood bag 27 carrying the apheresis platelets ,like Figure 11As shown, the oscillating unit unit includes: a fixed block 24 connected to the top inner surface of the first holding chamber 26, the fixed block 24 is connected with an oscillating motor 25, and the output end of the oscillating motor 25 is longitudinally connected with a suspension and connected to the first holding chamber. The inner wall of 26 has a second holding chamber 38 with a shock space, and three blood holding drawers 14 that are suitable for the size of the second holding chamber 38 are also held in the second holding chamber 38, such as Figure 12 As shown, the second...
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