On the influence of noise detection on the accuracy of temperature measurement using an acoustic thermometer
Main Article Content
Abstract
The principal views of peak-modulated signals detecting are considered. The analysis of biological objects internal temperature measurement accuracy dependence by means of zero modulating method from the detector type used in the scheme is carried out
Article Details

This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors who publish with this journal agree to the following terms:- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).
References
N. Aleksandrov, N. Savchenko, S. Fradkin, and E. Zhavrid, Use of hyperthermia and hyperglycemia in the treatment of malignant tumors [Primeneniye giper termii i giperglikemii pri lechenii zloka chestvennykh opukholey], Moscow: Meditsina, 1980, p. 256.
S. Osinsky, “Hyperthermia in ClinicalOncology: Current State of the Problem (based on the results of the 20th Annual Conference of theEuropean Society of Hyperthermia Oncology (ESHO)) [Gipertermiya v klinicheskoy onkologii: sovremennoye sostoyaniye problemy (po itogam 20-y yezhegodnoy konferentsii Yevropeyskogo obshchestva gipertermicheskoy onkologii (ESHO)]”, Oncology, vol. 4, no. 4, pp. 288–292, 2002.
Y. Gulyaev, E. Godik, and V. Dementienko, “On the Possibilities of Acoustic Thermography of Biological Objects [O vozmozhnostyakh akusticheskoy termografii biologicheskikh obyektov]”, Reports of the USSR Academy of Sciences, vol. 183, no. 6, pp. 1495–1499, Jan. 1985.
V. Pasechnik, “Acoustic Thermography of Biological Objects [Akusticheskaya termografiya biologicheskikh obyektov]”, Radio Engineering, no. 8, pp. 77–80,1991.
V. Pasechnik, “Evaluation of the Threshold Sensitivity of Acoustic Thermometers [Otsenka porogovoy chuvstvitel’nosti akustotermometrov ]”, Acoustic Journal, vol. 39, no. 1, pp. 140–143, 1993.
A. Anosov and V. Pasechnik, “Comparison of the Sensitivity of Various Types of Acoustic Thermometers [Sravneniye chuvstvitel’nosti akustotermometrov razlichnykh tipov]”, Acoustic Journal, vol. 39, no. 2, pp. 207–212, 1993.
A. Anosov, K. Bograchev, and V. Pasechnik, “Measuring Thermal Acoustic Radiation from the Human Hand [Izmereniye teplovogo akusticheskogo izlucheniya iz kisti ruki cheloveka]”, Acoustic Journal, vol. 44, no. 3, pp. 299–306, 1998.
A. Anosov, K. Bograchev, and V. Pasechnik, “Passive Thermoacoustic Tomography of the Human Hand [Passivnaya termoakusticheskaya tomografiya kisti ruki cheloveka]”, Acoustic Journal, vol. 44, no. 6, pp. 725–730, 1998.
V. Didkovsky and S. Naida, “Zero-Modulation Method for Measuring Thermal Acoustic Radiation of Biological Objects [Nulevoy modu lyatsionnyy metod izmereniya teplovogo akusticheskogo izlucheniya biologicheskikh ob"yektov]”, Electronics and Communications, vol. 2, no. 8, pp. 253–256, 2000.
S. Naida, “Acousto-thermometry of liquid objects using megahertz-range piezoelectric transducers [Akustotermometriya zhidkikh ob"yektov s pomoshch’yu p’yezopriyemnikov megagertsevogo diapazona]”, Technical Diagnostics and Non-Destructive Testing, no. 3, pp. 41–48.
S. Naida, “Piezoelectric Thermal Acoustic Radiation Receivers for Sensing the Internal Temperature of Objects [P’yezopriyemniki teplovogo akusticheskogo izlucheniya dlya zondirovaniya vnutrenney temperatury ob"yektov]”, Technical Diagnostics and Non-Destructive Testing, no. 1, pp. 25–29, 2003.
S. Rytov, Introduction to Statistical Radiophysics: In 2 Parts [Rytov S.M. Vvedeniye v statisticheskuyu radiofiziku: V 2-kh ch. – CH.1. Sluchaynyye protsessy], vol. 2. Moscow: Nauka, 1976, p. 496.
E. Manaev, Fundamentals of Radio Electronics, 3rd ed. Moscow: Radio andSvyaz, 1990, p. 512.
T. Mirsky, Hardware-Based Determination of Characteristics of Random Processes [Apparatnoye opredeleniye kharakteristik sluchaynykh protsessov], Moscow: Energy, 1972, p. 456.
S. Naida, “On the Possibility of Single-Channel Dynamic Passive Acoustic-Thermometryof the Brain and Cochlea of the Inner Ear of Newborns Using Focused Ultrasound [O vozmozhnosti odnokanal’noy dinamicheskoy passivnoy akustotermometrii golovnogo mozga i ulitki vnutrennego ukha novorozhdennykh s pomoshch’yu fokusirovannogo ul’trazvuka]”, Electronics and Communications, no. 18, pp. 9–10, 2003.
J. Greenfield, Transistors and Linear Integrated Circuits. A Guide to Analysis and Calculation. [Tranzistory i lineynyye IS. Rukovodstvo po analizu i raschetu.], Moscow: Mir, 1992, p. 560.
I. Bronstein and K. Semendyaev, Mathematics Handbook for Engineers and University Students. [Spravochnik po matematike dlya inzhenerov i uchashchikhsya vtuzov] Moscow: Nauka, 1981, p. 720.



