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Small Animal Anesthesia Positioning Microinjection System
ZS-MV-HR series small animal anesthesia positioning microinjection system is specially designed for mice, rats and other small animals to provide isoflurane or sevoflurane and other anesthesia positioning microinjection systems, and is a portable anesthesia machine for inhalation anesthesia. Customers take it with them. ZS-MV-HR series small animal anesthesia positioning microinjection system is a simple and practical integrated instrument with integrated design.
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Small Animal Anesthesia Positioning Microinjection Imaging System
The small animal anesthesia positioning surgical imaging system is professionally used for real-time projection of enlarged field of vision during brain positioning or surgical experiments.
Single arm digital brain stereotactic instrument (wireless)
Stereotaxic apparatus, also known as stereotaxic apparatus, uses a three-degree coordinate system defined by signs or other reference points outside the skull to determine the position of certain neural structures under the cortex for non-direct exposure. Under the guidance of directional stimulation, destruction, drug injection, guided potential research. Stereotaxic apparatus for animal brain is an important research equipment in the fields of neuroanatomy, neurophysiology, neuropharmacology and neurosurgery. Animal model establishment, epilepsy animal model establishment, brain tumor model establishment, learning and memory, brain neural stem cell transplantation, cerebral ischemia and other research.
Fully automatic stereotaxic apparatus (electric motor)
The automatic brain stereotaxic instrument is a combination of the classic U-shaped frame design of Zhongshi Technology Company, customized motor and innovative software. It is a brand-new epoch-making product. The adjustment accuracy of the automatic brain stereotaxic instrument reaches the micron level. The fully automatic stereotaxic apparatus can control the displacement in three axis directions through the motor and computer.
One-arm Stereotaxic Apparatus
ZS-FD type brain stereotaxic apparatus, also known as brain fixation device (stereotaxic apparatus), uses a three-degree coordinate system specified by marks outside the skull or other reference points to determine the position of certain neural structures under the cortex so as to Directed stimulation, destruction, drug injection, and guided potential were studied under non-direct exposure.
Single-arm digital stereotaxic device
Stereotaxic apparatus, also known as stereotaxic apparatus, uses a three-degree coordinate system defined by signs or other reference points outside the skull to determine the position of certain neural structures under the cortex for non-direct exposure. Under the guidance of directional stimulation, destruction, drug injection, guided potential research.
Dual-arm digital stereotaxic device
Double-arm brain stereotactic instrument
Stereotaxic apparatus for large animal brain
Currently used stereotaxic instruments can be divided into two categories: 1. Rectilinear or Triplanar. It is composed of three imaginary three planes perpendicular to each other to form the space three-dimensional rectangular coordinates. A tiny structure deep in the brain can be located according to this coordinate system. When in use, the three-dimensional coordinate value of the electrode tip can be read out from the scale on the electrode moving frame. 2. Equatorial. It is composed of two arc beams at right angles to each other. It is made according to the principle of three-dimensional coordinates (Polar Coordinate). It can also specify the spatial position of its brain structure. It is now mostly used in human locators. This article focuses on the linear stereotaxic instrument. The basic design principles of stereotaxic are as follows.
Dog/Monkey Electromagnetic Compatibility Stereotaxic Device (customized)
The dog monkey magnetic resonance imaging localizer uses a three-dimensional coordinate system specified by markers or other reference points outside the skull to determine the position of the corresponding neural structures in the subcortical layer, so that it can be stimulated, destroyed, injected under non-direct exposure. Drugs, guided potential research, etc.