Fiber Optic Temperature/Pressure Sensor: Applications in Minimally Invasive Diagnosis and Treatment
Introduction of application examples for minimally invasive diagnosis and treatment using ultra-small sensors 'FOP-MIV' and 'FOT-L'.
Fiber optic temperature/pressure sensors are currently active in monitoring intracranial pressure and in urological diagnostics, effectively solving most issues related to pressure measurement through fluids used for triggering purposes. Additionally, ultra-miniature fiber optic temperature sensors can measure temperature in a minimally invasive manner to understand the flow of energy to living cells during diagnosis and treatment. These sensors enable safe monitoring of patient parameters and have opened the way for improved diagnostic accuracy and the introduction of new therapeutic devices in the medical industry as a new monitoring tool. [Monitoring Examples] - Intra-aortic balloon pumping (IABP) therapy - Intracranial pressure monitoring - Temperature monitoring - Animal experiments, etc. *For more details, please refer to the catalog or feel free to contact us.
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【Specifications】 [FOP-MIV] ■Measurement Range: -300 to 300 mmHg; -300 to 7500 mmHg ■Resolution: 0.3 mmHg; 2.6 mmHg ■Accuracy: ±3 mmHg; ±8 mmHg ■Operating Temperature Range: 10 to 50℃ ■Temperature Characteristics Zero Shift: -0.4 mmHg/℃; 3 mmHg/℃ ■Cable Length: 2m (extendable) ■Connector: SCI Connector [FOT-L] ■Measurement Range: FOT-L-SD: -40 to 300℃; FOT-L-BA: -40 to 250℃ ■Resolution: 0.1℃ ■Accuracy: 1℃ ■Response Time: FOT-L-SD: less than 1.5 seconds; FOT-L-BA: less than 0.5 seconds ■Cable Length: 2m (extendable) ■Cable Type: Teflon ■Connector: ST Connector *For more details, please download the catalog or contact us.
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【Application Examples】 ■ Strong electromagnetic fields (microwaves, RFI, superconductivity) ■ Medical (MRI, NMR, hyperthermia, intravascular) ■ MRI / microwave / RF environments ■ Research applications ■ New product development, etc. *For more details, please refer to the catalog or feel free to contact us.
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