The present disclosure provides a press-based fluidic transportation and diagnosis device. The press-based fluidic transportation and diagnosis device includes a top plate, a first reagent storage chamber, a second reagent storage chamber, a sample inflow chamber, a detection chamber, a port and a gas outlet hole. One end of the second reagent storage chamber is communicated with the first reagent storage chamber by a first flow path. The sample inflow chamber is communicated with the other end of the second reagent storage chamber by a second flow path. One end of the detection chamber is communicated with the sample inflow chamber by a third flow path. The port is used for accommodating a push-based driving unit, and the port is communicated with the other end of the detection chamber by a fourth flow path, and the gas outlet hole is communicated with the port by a fifth flow path. Accordingly, the present disclosure can make the sample and the test reagent mix and react through the push-based driving unit, so as to achieve the purpose of interpreting the test result quickly. |