Energy processing system, energy control device and energy processing appliance
A technology for disposal systems and disposal appliances, which is applied to measuring devices, instruments, sensors, etc., and can solve problems such as the decline of coagulation performance and sealing performance
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no. 1 approach
[0032] refer to Figures 1 to 6D Next, a first embodiment of the present invention will be described.
[0033] figure 1 It is a figure which shows the energy treatment system (bipolar treatment system) 1 using the energy treatment instrument (bipolar treatment instrument) 2 of this embodiment. Such as figure 1 As shown, the energy treatment device (forceps treatment device) 2 has a long-side axis C. Here, one side in the direction along the long-side axis C is the front end side ( figure 1 Arrow C1 side), the side opposite to the front side is the base side ( figure 1 on the arrow C2 side).
[0034] The energy treatment instrument 2 has a housing 3 that can be held. The housing 3 includes: a housing body 5 extending along the longitudinal axis C; Set the extension in the direction in which the side axis C crosses. In addition, a handle (movable handle) 7 is rotatably attached to the housing 3, and when the handle 7 is rotated relative to the housing 3, the handle 7 is o...
no. 2 approach
[0075] Next, refer to Figure 7 to Figure 8CNext, a second embodiment of the present invention will be described. The second embodiment is an embodiment obtained by modifying the structure of the first embodiment as follows. In addition, the same code|symbol is attached|subjected to the same part as 1st Embodiment, and description of this part is abbreviate|omitted.
[0076] Figure 7 It is a flowchart showing processing in the energy control device 10 when energy is supplied from the energy control device 10 to the energy treatment instrument 2 in this embodiment. Such as Figure 7 As shown, in this embodiment as well in the first embodiment, when energy is supplied to the energy treatment instrument 2 to treat the grasped treatment target, the processes of steps S101 and S102 are performed. Then, when the output of the high-frequency electric energy (first electric energy) and the heat-generating electric energy (second electric energy) starts, the control unit 45 mainta...
no. 3 approach
[0113] Next, refer to Figure 12 to Figure 14 Next, a third embodiment of the present invention will be described. The third embodiment is an embodiment obtained by modifying the structure of the first embodiment as follows. In addition, the same code|symbol is attached|subjected to the same part as 1st Embodiment, and description of this part is abbreviate|omitted.
[0114] In the present embodiment, the energy treatment device 2 (end effector 15) does not provide the heating element 27, and the piezoelectric elements 51 (four in the present embodiment) serving as vibration generators are provided inside the casing 3. , to replace the heating element 27. Each piezoelectric element 51 is sandwiched between ultrasonic electrodes 52A, 52B. The piezoelectric element 51 and the ultrasonic electrodes 52A and 52B are attached to the base end portion of the vibration transmitting body 50 . The vibration transmitting body 50 extends from the inside of the case main body 5 through ...
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