Development and evaluation of an implantable chronic DC stimulation and measurement probe for nerve regeneration studies /

acknowledged parameter of interest. However, because of the

Bibliographic Details
Main Author: Macha, Douglas Bryan
Format: Thesis eBook
Language:English
Published: [Place of publication not identified] : [publisher not identified] ; 1995.
Subjects:
Online Access:Link to OAKTrust copy

MARC

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040 |a TXA  |c TXA  |d UtOrBLW 
049 |a TXAM  |a TXAR 
099 |a 1995  |a Thesis  |a M3345 
100 1 |a Macha, Douglas Bryan. 
245 1 0 |a Development and evaluation of an implantable chronic DC stimulation and measurement probe for nerve regeneration studies /  |c by Douglas Bryan Macha. 
264 1 |a [Place of publication not identified] :  |b [publisher not identified] ;  |c 1995. 
300 |a xi, 193 leaves :  |b illustrations ;  |c 28 cm. 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
500 |a "Major subject: Bioengineering". 
500 |a Vita. 
502 |b M.S.  |c Texas A&M University  |d 1995. 
504 |a Includes bibliographical references. 
520 |a acknowledged parameter of interest. However, because of the  
520 |a assumptions which idealize the conductive media as being  
520 |a been made to quantify the relevant stimulus parameter. The  
520 |a controlled, providing a stimulation parameter which can be  
520 |a correlated to nerve regeneration. Such a probe will prove  
520 |a current density within the region can be measured and  
520 |a defined region in a chronic regime. From this information,  
520 |a difficulties inherent in measuring these values, researchers  
520 |a field strength or current densities in vivo were based on  
520 |a have previously chosen to characterize stimulus in terms of  
520 |a implantable DC stimulator capable of delivering a constant,  
520 |a in- vivo. This research seeks to evaluate the design of an  
520 |a induced by the applied current is seldom directly measured  
520 |a inhomogenous structures in the region of the nerve are the  
520 |a isotropic. The actual field strength or current density  
520 |a localized electric field strength and current densities  
520 |a nerve has been adequately confirmed, yet few attempts have  
520 |a of applied electrical fields upon nerve regeneration. 
520 |a produced by the injection of electrical current through  
520 |a raw current supplied to nerve injuries. Attempts to quantify  
520 |a region of nerve, and for the purpose of measuring the bulk  
520 |a stable and measurable electrical stimulus across a defined  
520 |a The beneficial effects of chronic DC electrical stimulation  
520 |a tissue resistivity and electrical field strength in the  
520 |a upon peripheral nervous system (PNS) regeneration of injured  
520 |a very useful in ongoing research which evaluates the effects  
530 |a Also available online. 
530 |a Issued also on microfiche from Lange Micrographics. 
650 4 |a Major bioengineering. 
856 4 1 |u https://hdl.handle.net/1969.1/ETD-TAMU-1995-THESIS-M3345  |z Link to OAKTrust copy  |t 0 
999 |a MARS 
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952 f f |p noncirc  |a Texas A&M University  |b College Station  |c Cushing Memorial Library & Archives  |s cush tdrm  |d Cushing: Theses & Dissertations Microforms (Does not check out)  |t 0  |e 1995 Thesis M3345  |h Other scheme  |i computer -- online resource 
952 f f |a Texas A&M University  |b College Station  |c Electronic Resources  |s www_evans  |d Available Online  |t 0  |e 1995 Thesis M3345  |h Other scheme 
998 f f |a 1995 Thesis M3345  |t 0  |l Available Online 
998 f f |a 1995 Thesis M3345  |t 0  |l Cushing: Theses & Dissertations Microforms (Does not check out)