A mechanically stimulated bioreactor system imitating a physiological environment
A bioreactor, a technology of imitating physiological environment, which is applied in the field of bioreactor system of imitating physiological environment mechanical stimulation
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Embodiment 1
[0035] Example 1——Case of implementation of pressure mode
[0036] Please refer to figure 1 with figure 2 , the simulated physiological environment mechanical stimulation type bioreactor system described in this embodiment includes CO 2Incubator 30, main body components, circulation flow components and control components.
[0037] The CO 2 The working environment of the incubator 30 is usually: 100% humidity, CO 2 The concentration is 5% and the temperature is 37°C.
[0038] The body part is placed in the CO 2 In the incubator 30, the main parts include an electric cylinder 1, a sealing cover 2, a motor frame 3, a dust cover 4, a connecting rod 5, a force sensor 6, an adapter plate 7, a fixing sleeve 10, a base 13, a fixing pin 16, two The rod 14, the culture chamber 12 and the loading member are secured.
[0039] The motor frame 3 is connected and fixed to the base 13 at the bottom through four upright support rods 8 to form the basic support of the main body componen...
Embodiment 2
[0048] Example 2——Pull mode implementation case
[0049] The system structure of this embodiment is basically the same as that of Embodiment 1, the difference lies in the loading component. see Figure 4 , the loading member of the present embodiment is a pull mode; its upper part includes a pull rod 18, a threaded chuck 19 and a through hole chuck 20, and the upper end of the pull rod 18 forms a rigid connection with the adapter plate 7 through a coupling 17, The threaded chuck 19 and the through-hole chuck 20 are installed on the lower end of the pull rod 18 stretching into the cultivation chamber 12, and are connected with the threaded chuck 19 through the through-hole chuck 20 with a screw, and the through-hole can be made by rotating the screw. Collet 20 cooperates with threaded collet 19 to clamp one end of the engineered tissue together; the lower part of the loading member includes a pull mode platform 22 and a lower end clamp 21 fixed on the pull mode platform 22, th...
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