Customization of Micro-Drug Delivery System
Intracranial Temperature Monitoring and Micro-Drug Delivery Cannula
Temperature can never be ignored in both physical-chemical and biological experiments. Some experiments require extremely strict temperature control, while others need real-time temperature monitoring and regulation. The same applies to animal experiments, where an optimal temperature is essential—either excessively high or low temperatures can disrupt the experimental process. For this reason, our temperature monitoring system serves a critical purpose.
Zhaorui Precision Technology Co., Ltd. is deeply engaged in the field of animal experiment equipment and has always been committed to this industry with dedicated efforts. After multiple rounds of product improvement and upgrades by our R&D team, the final product has been successfully launched. Both the temperature control thermocouples and the materials used are carefully selected for optimal performance.
The most crucial features of an intracranial temperature controller are its monitoring accuracy and sensitivity. To meet this requirement, we have adopted high-precision sensors, enabling the product to display the real-time temperature of the target intracranial area and facilitating convenient recording and further operation for researchers. The controller is equipped with a built-in air layer that effectively isolates the influence of the device's own temperature on monitoring results.
Our intracranial temperature control system is lightweight yet sufficiently reliable and sturdy, allowing it to be perfectly fixed on the head of experimental animals. Its lightweight design offers dual benefits: easy fixation and minimized impact on the organism. It can be seamlessly integrated into animal experiments, and when combined with our micro-drug delivery cannula, it enables precise site-specific drug delivery experiments.
While temperature monitoring ultimately serves to support experimental procedures, the drug delivery system is the core component of the setup. Our micro-drug delivery cannula can directly reach the target administration site. Made of high-quality materials, it is stable and reliable. Compact in size yet highly accurate, the single-channel micro-drug delivery cannula can be customized according to the specific administration site required by customers. It truly embodies the concept of "small yet powerful" and is an indispensable tool for site-specific drug delivery.
The single-channel micro-drug delivery cannula supports multiple rounds of site-specific drug administration and shares a base with the temperature monitoring system, making the stability of the base particularly important. The cannula ensures not only precise positioning but also accurate and consistent drug dosage for repeated administrations. Medical-grade materials are used to maximize biocompatibility with experimental animals.
The single-channel micro-drug delivery cannula consists of four components: the base, catheter cap, injection inner tube, and screw nut. This four-part structure enhances the overall reliability of the cannula, allowing even small-volume injections to reach the target site accurately while minimizing damage to experimental animals. The coordinated operation of these four components ensures precise experimentation and stable repeated drug delivery, providing reliable support for your research.
Researchers can flexibly select different models based on the type of experimental organism. Our company offers a diverse range of options to better accommodate various experimental needs, enabling customers to quickly match the most suitable model for their specific experimental animals.
Our micro-drug delivery cannula is currently used by numerous customers and has received widespread positive feedback, which is the most convincing testament to its stability and accuracy. We sincerely recommend our products to all customers in need of micro-drug delivery cannulas. Your trust and choice are the driving force behind our continuous innovation and improvement.
简体中文
English




