Ultra-low field magnetic imaging device for living small animals
An ultra-low field, magnetic imaging technology, applied in the field of magnetic imaging, can solve problems such as inapplicability to large-sized and small animals, complex structure, etc., to reduce the impact of detection sensitivity, improve sensitivity, and expand the scope of application.
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Embodiment 1
[0032] A specific embodiment of the present invention discloses an ultra-low-field magnetic imaging device for living small animals, including a push unit 1 and a magnetometer unit 2, and the push unit 1 includes a scanning translation stage 11, a push rod 12 and a load Table 13; scanning displacement stage 11, push rod 12, and object stage 13 are connected in sequence; magnetometer unit 2 includes magnetic shielding 21, scanning channel 22, optical channel 23, atomic gas pool 24, laser light source and detector 25, scanning channel 22 runs through the side of the magnetic shield 21, the atomic gas pool 24 is arranged on one side of the scanning channel 22, an optical focusing lens 211 is arranged on the side close to the atomic gas pool 24 in the magnetic shield 21, and a single The side heating coil 212, the magnetic shield 21 is provided with a magnetic field balance coil 213, and the laser light source and detector (25) are arranged outside the magnetic shield (21) and loca...
Embodiment 2
[0045] On the basis of Embodiment 1, in the ultra-low field magnetic imaging device for living small animals in this embodiment, the stroke of the scanning stage 11 is set to 500 mm, the speed is 10 mm / s, and the positioning accuracy is 10 μm; the scanning channel 22 The diameter is 60mm; the internal central residual magnetic field of the five-layer magnetic shield 21 is less than 1nT; the material of the push rod 12 is glass, and the material of the stage 13 is plastic; the heating coil 212 maintains the internal temperature of the magnetic shield 21 at 37°C; The thermal vacuum tube 221 is a silver-plated double-layer glass vacuum tube; the atomic gas cell 24 is a glass bubble packaged with cesium atoms, and the size of the glass bubble is 1000 μl; the optical focusing lens 221 is a coated convex lens with a focal length of 50 mm.
[0046] In this embodiment, a 600pT square wave magnetic field is used to detect the magnetic field sensitivity of an ultra-low field magnetic ima...
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