Mtengenezaji wa Kihisi cha Joto la Optic ya Fibre, Mfumo wa Ufuatiliaji wa Joto, Mtaalamu OEM / ODM Kiwanda, Muuzaji wa jumla, Supplier.customized.

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Microwave hyperthermia MRI EMI fiber optic joto sensor

Kipimo cha joto la microwave, kipimo cha joto cha matibabu ya joto, tumor matibabu fiber optic joto sensor, Uingiliaji wa anti electromagnetic Sensor ya joto ya fiber optic. Fjinno hutoa Mifumo ya kipimo cha joto cha macho ya nyuzi kwa usahihi wa kipimo cha joto la juu.

Katika uwanja wa dawa, joto ni parameter muhimu sana ya kisaikolojia. Katika hyperthermia ya tumor, ufuatiliaji wa wakati halisi wa joto la mwili wa binadamu na joto la tovuti ya uondoaji inahitajika ili kuhakikisha joto sahihi na sare la tishu za tumor, ili iweze kufikia joto muhimu la kifo na kudumisha tishu za kawaida bila uharibifu wa joto. Kipimo kinahitaji usahihi wa kutosha, kwa ujumla kufikia ± 0.1-0.2 °C. Zaidi ya hayo, vihisi joto vinavyotumika katika hyperthermia ya uvimbe sio tu kupima joto la tishu katika muda halisi, lakini pia kuondoa tatizo la vipimajoto vya kienyeji vinavyoathiriwa na kuingiliwa na mionzi ya sumakuumeme. Tiba ya joto ni teknolojia inayoibuka katika uwanja wa matibabu ya tumor, which uses physical methods to heat the tumor area to an effective therapeutic temperature and maintain it for a certain period of time, achieving the therapeutic goal of killing tumor cells while minimizing damage to normal tissues.

Thermal therapy equipment mainly includes radio frequency capacitive thermal therapy machines, ultrasonic thermal therapy machines, and microwave thermal therapy machines. The electric field distribution of the radio frequency capacitive hyperthermia machine is not easy to control uniformly, and deep heating is difficult. When used, fat is prone to overheating and pain, and it is only suitable for areas with thin fat (thickness ≤ 1.5cm); The ultrasonic hyperthermia machine cannot penetrate the gas containing cavity. Microwave hyperthermia is a relatively ideal method of hyperthermia. The goal of microwave hyperthermia is to obtain a relatively high thermal dose to the tumor target area, avoiding the occurrence of treatment cold spots, while also protecting normal tissues as much as possible to minimize the thermal dose to avoid treatment hot spots and irreversible damage. Temperature measurement is an important technology to ensure the quality of hyperthermia. In order to ensure the therapeutic effect, it is necessary to heat the tumor tissue to an effective therapeutic high temperature zone of 43-45 °C, without damaging the surrounding normal tissues, and ensure that the temperature of normal tissues is below 40 °C. In the early days, the heating power was controlled solely based on the patient’s thermal sensation. Siku hizi, many thermal therapy machines use intermittent shutdown temperature measurement methods, resulting in large temperature measurement errors. The existing microwave hyperthermia technology, due to the inability to synchronously monitor temperature in real-time during the microwave hyperthermia process, results in unsatisfactory hyperthermia effects, and the safety and reliability of microwave hyperthermia are low.

The three-dimensional targeted microwave tumor hyperthermia machine is equipped with fiber optic temperature sensors on the base of the microwave radiators, and the temperature measurement fiber is set on the Sensor ya joto ya fiber optic, achieving the integration of the microwave radiators and temperature measurement fiber. This allows the microwave radiators and temperature measurement fiber to reach the lesion simultaneously, achieving precise temperature monitoring of the hyperthermia process using fiber optic temperature sensors. In addition to ordinary industrial temperature measurement, other fields such as biomedical engineering can also use kipimo cha joto la optic ya fiber for detecting the temperature inside the biological cavity.

Faida za Fluorescent Fiber Temperature Measurement System in Microwave Medical Industry

1. Uingiliaji wa anti electromagnetic, unaffected by harsh environments;

2. Fiber optic sensors with high temperature measurement accuracy and customizable high-precision range;

3. Fast temperature measurement response and multi-channel temperature measurement;

4. Stable performance, matengenezo ya bure.

Uchunguzi

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