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1.
Journal of Biomedical Engineering ; (6): 982-988, 2023.
Artículo en Chino | WPRIM | ID: wpr-1008924

RESUMEN

Radiopharmaceutical dynamic imaging typically necessitates intravenous injection via the bolus method. However, manual bolus injection carries the risk of handling errors as well as radiological injuries. Hence, there is potential for automated injection devices to replace manual injection methods. In this study, the effect of micro-bolus pulse injection technology was compared and verified by radioactive experiments using a programmable injection pump, and the overall bubble recognition experiment and rat tail vein simulation injection verification were performed using the piezoelectric sensor preloading method. The results showed that at the same injection peak speed, the effective flushing volume of micro-bolus pulse flushing (about 83 μL/pulse) was 49.65% lower than that of uniform injection and 25.77% lower than that of manual flushing. In order to avoid the dilution effect of long pipe on the volume of liquid, the use of piezoelectric sensor for sealing preloading detection could accurately predict the bubbles of more than 100 μL in the syringe. In the simulated injection experiment of rat tail vein, when the needle was placed in different tissues by preloading 100 μL normal saline, the piezoelectric sensor fed back a large difference in pressure attenuation rate within one second, which was 2.78% in muscle, 17.28% in subcutaneous and 54.71% in vein. Micro-bolus pulse injection method and piezoelectric sensor sealing preloading method have application potential in improving the safety of radiopharmaceutical automatic bolus injection.


Asunto(s)
Animales , Ratas , Radiofármacos/administración & dosificación
2.
Chinese Journal of Nosocomiology ; (24)2005.
Artículo en Chino | WPRIM | ID: wpr-587764

RESUMEN

OBJECTIVE To discuss the feasibility of signal amplification method with cationic conjugated polymers(liposome) applied during the detection of Pseudomonas aeruginosa using piezoelectric gene biosensors.(METHODS) Oligonucleotide probe for P.aeruginosa was immobilized on the surface of gene sensor array and(hybridized) by PCR production of P.aeruginosa.After hybridization,liposome was added.The frequency shifts were recorded and compared with those ones of the control groups.RESULTS The frequency shifts were(significantly) increasing when adding liposome and the compatible concentration of liposome was 0.8?g/?l.(CONCLUSIONS) Liposome signal amplification is proved to be an effective method to amplify the piezoelectric(signal).

3.
Chinese Medical Equipment Journal ; (6)2004.
Artículo en Chino | WPRIM | ID: wpr-586950

RESUMEN

Piezoelectric sensor is a kind of chemosensor,which utilizes the changes of quality to measure data.It is widely applied to the measurement of temperature,quality,intensity of strength and acceleration.Now it is also widely applied in the biomedical area.This paper is mainly about the fundamental principle,structure and the applications of the piezoelectric sensor.

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