Literature DB >> 25700435

Photoacoustic-Based-Close-Loop Temperature Control for Nanoparticle Hyperthermia.

Feng Xiaohua1, Gao Fei1, Zheng Yuanjin2.   

Abstract

GOAL: Hyperthermia therapy requires tight temperature control to achieve selective killing of cancerous tissue with minimal damage on surrounding healthy tissues.
METHODS: To this end, accurate temperature monitoring and subsequent heating control are critical. However, an economic, portable, and real-time temperature control solution is currently lacking. To bridge this gap, we present a novel portable close-loop system for hyperthermia temperature control, in which photoacoustic technique is proposed for noninvasive real-time temperature measurement. Exploiting the high sensitivity of photoacoustics, the temperature is monitored with an accuracy of around 0.18 °C and then fed back to a controller implemented on field programmable gate array (FPGA) for temperature control. Dubbed as portable hyperthermia feedback controller (pHFC), it stabilizes the temperature at preset values by regulating the hyperthermia power with a proportional-integral-derivative (PID) algorithm; and to facilitate digital implementation, the pHFC further converts the PID output into switching values (0 and 1) with the pulse width modulation (PWM) algorithm.
RESULTS: Proof-of-concept hyperthermia experiments demonstrate that the pHFC system is able to bring the temperature from baseline to predetermined value with an accuracy of 0.3° and a negligible temperature overshoot.
CONCLUSION: The pHFC can potentially be translated to clinical applications with customized hyperthermia system design. SIGNIFICANCE: This paper can facilitate future efforts in seamless integration of close-loop temperature control solution and various clinical hyperthermia systems.

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Year:  2015        PMID: 25700435     DOI: 10.1109/TBME.2015.2403276

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  6 in total

1.  Spatiotemporal Evolution of Temperature During Transient Heating of Nanoparticle Arrays.

Authors:  Chen Xie; Zhenpeng Qin
Journal:  J Heat Transfer       Date:  2022-01-18       Impact factor: 1.855

2.  Single laser pulse generates dual photoacoustic signals for differential contrast photoacoustic imaging.

Authors:  Fei Gao; Xiaohua Feng; Ruochong Zhang; Siyu Liu; Ran Ding; Rahul Kishor; Yuanjin Zheng
Journal:  Sci Rep       Date:  2017-04-04       Impact factor: 4.379

3.  Photoacoustic temperature imaging based on multi-wavelength excitation.

Authors:  Lei Meng; Olivier Deschaume; Lionel Larbanoix; Eduard Fron; Carmen Bartic; Sophie Laurent; Mark Van der Auweraer; Christ Glorieux
Journal:  Photoacoustics       Date:  2018-11-22

Review 4.  Nonlinear mechanisms in photoacoustics-Powerful tools in photoacoustic imaging.

Authors:  Rongkang Gao; Zhiqiang Xu; Yaguang Ren; Liang Song; Chengbo Liu
Journal:  Photoacoustics       Date:  2021-02-01

5.  Glutathione-Sensitive Mesoporous Organosilica-Coated Gold Nanorods as Drug Delivery System for Photothermal Therapy-Enhanced Precise Chemotherapy.

Authors:  Hui Song; Tingwei Peng; Xue Wang; Beibei Li; Yufang Wang; Dianhai Song; Tianzhao Xu; Xinghui Liu
Journal:  Front Chem       Date:  2022-02-25       Impact factor: 5.221

Review 6.  Review of Low-Cost Photoacoustic Sensing and Imaging Based on Laser Diode and Light-Emitting Diode.

Authors:  Hongtao Zhong; Tingyang Duan; Hengrong Lan; Meng Zhou; Fei Gao
Journal:  Sensors (Basel)       Date:  2018-07-13       Impact factor: 3.576

  6 in total

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