ASTM F2504-2005 Standard Practice for Describing System Output of Implantable Middle Ear Hearing Devices《可植入中耳的听觉设备的描述系统输出的标准实施规程》.pdf
《ASTM F2504-2005 Standard Practice for Describing System Output of Implantable Middle Ear Hearing Devices《可植入中耳的听觉设备的描述系统输出的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM F2504-2005 Standard Practice for Describing System Output of Implantable Middle Ear Hearing Devices《可植入中耳的听觉设备的描述系统输出的标准实施规程》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 2504 05Standard Practice forDescribing System Output of Implantable Middle EarHearing Devices1This standard is issued under the fixed designation F 2504; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of la
2、st revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice defines means for describing system per-formance (ex vivo) and, in particular, system output of animplant
3、able middle ear hearing device (IMEHD) by measuringa physical quantity that is relevant to the insertion gain andoutput level of the IMEHD when implanted in the patient.1.2 This practice is similar to headphone calibration on anartificial ear in which the sound pressure level (in decibelsound pressu
4、re level (SPL) measured in the artificial ear canbe converted to patient hearing level (in decibel hearing level(HL) using a known transfer function, as defined byANSI 3.7.These measurements can then be used to predict systemparameters relevant for patient benefit such as functional gain,maximum out
5、put, and variability. Measurements defined in thispractice should be useful for patients, clinicians, manufactur-ers, investigators, and regulatory agencies in making compara-tive evaluations of IMEHDs.1.3 The values given in SI units are to be considered thestandard.1.4 This standard does not purpo
6、rt to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ANSI Standards:2ANSI
7、 3.6 Specification for AudiometersANSI 3.7 Method for Coupler Calibration of EarphonesANSI 3.22 Specification of Hearing Aid Characteristics3. Terminology3.1 Refer to the block diagram of Fig. 1 for a clarification ofthe mathematical notations used in this section.3.2 In the following definitions, t
8、hese symbols are used forphysical quantities:3.2.1 E = electrical drive signal (voltage or current)3.2.2 p = sound pressure3.2.3 v = vibration velocity3.3 All transfer functions are denoted by the symbol H, withthe following subscripts indicative of the type of transferfunction:3.3.1 A = IMEHD-aided
9、3.3.2 E = electrical3.3.3 H = hearing level3.3.4 S = sound field sound pressure3.3.5 T = tympanic membrane (ear drum) sound pressure3.3.6 U = unimplanted3.3.7 V = vibration of stapes3.4 Definitions:3.4.1 coupling, npoints and methods of attachment.3.4.2 displacement, nintegral of velocity measured i
10、nnanometres.3.4.3 ear-canal sound pressure, pT, nsound pressure pro-duced in the ear canal, at the tympanic membrane, by a soundfield stimulus, specified in units of pascals.3.4.4 equivalent hearing level, LH, nratio of an equivalentsound pressure, pQ, relative to the sound field pressure,pRETSPL, a
11、t 0 incidence that is just detectable monaurally by anormally hearing individual, as defined in ANSI S3.6, Table 9,expressed in decibels: LH= 20log10(pQ/pRETSPL).3.4.5 equivalent sound pressure, pQ, nunimplanted inputsound field pressure needed to produce a stapes velocity equalto that produced by a
12、 specified IMEHD input in the IMEHD-aided condition: pQ= E HES.3.4.5.1 DiscussionThe equivalent sound pressure is theproduct of the equivalent sound pressure transfer function, HES,and the IMEHD output transducer electrical input E: pQ= E HES. The equivalent sound pressure can be expressed asequival
13、ent sound pressure level in units of decibels, SPLeq,calculated as 20log10(pQ/210-5Pa).3.4.6 equivalent sound pressure level, LQ, nlogarithmicrepresentation of equivalent sound pressure, LQ= 20log10(pQ).3.4.7 hearing level (HL), L, nratio of the input sound fieldpressure, pS, relative to the sound f
14、ield pressure pRETSPLat 0incidence that is just detectable monaurally by a normallyhearing individual, as defined inANSI S3.6, Table 9, expressedin decibels as: L = 20log10(pS/pRETSPL).1This practice is under the jurisdiction ofASTM Committee F04 on Medical andSurgical Materials and Devices and is t
15、he direct responsibility of SubcommitteeF04.37 on Implantable Hearing Devices (IHDs).Current edition approved Nov. 1, 2005. Published November 2005.2Available from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036.1Copyright ASTM International, 100 Barr Harbo
16、r Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.4.8 IMEHD electrical input at threshold Ethreshold,nelectrical input to the IMEHD output transducer at thresh-old of audibility.3.4.9 IMEHD harmonic distortion, nharmonic distortionof the stapes velocity IMEHD-aided analogous to
17、ANSI S3.22,Section 6.11S, from sinusoidal inputs of the frequencies 500,800, and 1600 Hz; input levels shall be Emax20dB.3.4.10 IMEHD output transducer, nelectromechanicaloutput transducer of the IMEHD.3.4.11 IMEHD output transducer frequency range,nusing the equivalent sound pressure transfer funct
18、ion, HES,draw a horizontal line at the average for 1000, 1600, and 2500Hz, then subtract 20 dB, or divide by 10; the lower and theupper bounds of the frequency response range are where theaverage line crosses the transfer function curve.3.4.12 IMEHD output transducer input, E, nelectricalinput to th
19、e IMEHD output transducer, specified in volts oramperes, as appropriate for the particular device.3.4.13 IMEHD system frequency range, nusing the inser-tion gain transfer function (velocity), HVV, draw a horizontalline at the average for 1000, 1600, and 2500 Hz, then subtract20 dB, or divide by 10;
20、the lower and the upper bounds of thefrequency response range are where the average line crossesthe transfer function curve.3.4.14 input sound field pressure, pS, nsound stimulusmeasured in the free field and presented to the listener in eitherthe IMEHD-aided or unimplanted condition, specified in u
21、nitsof pascals.3.4.15 maximum electrical transducer input, Emax,nmaximum electrical output of the sound signal processor,specified as peak-to-peak or root mean square value, specifiedin volts or amperes, as appropriate for the particular device.3.4.16 maximum equivalent sound pressure, pE,max,nequiv
22、alent sound pressure that corresponds to the maxi-mum electrical output Emaxof the implant electronics, pE,max=Emax HES.3.4.17 maximum equivalent sound pressure level, LE,max,nlogarithmic representation of the maximum equivalentsound pressure LE,max= 20log10(pE,max/210-5Pa).3.4.18 sound pressure at
23、threshold, pthreshold, nstimulussound field pressure at the threshold of audibility.3.4.19 stapes velocity (IMEHD-aided), vA, ntranslationalvelocity of the stapes when driven by the IMEHD outputtransducer, specified in units of mm/s.3.4.20 stapes velocity (unimplanted), vU, ntranslationalvelocity of
24、 the stapes when driven by sound input to the middleear specified in units of mm/s.Transfer Function3.4.21 acousto-electric transfer function, HSE, nelectricalinput to the IMEHD output transducer E produced by a soundfield, divided by the input sound field pressure pS: HSE= E/pS.3.4.21.1 DiscussionH
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