Comput Math Methods Med - The approach to steady state using homogeneous and Cartesian coordinates.

Tópicos

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{ system(1976) rule(880) can(841) }
{ method(984) reconstruct(947) comput(926) }
{ gene(2352) biolog(1181) express(1162) }
{ motion(1329) object(1292) video(1091) }
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{ studi(1410) differ(1259) use(1210) }
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{ signal(2180) analysi(812) frequenc(800) }
{ cost(1906) reduc(1198) effect(832) }
{ group(2977) signific(1463) compar(1072) }
{ sampl(1606) size(1419) use(1276) }
{ data(3008) multipl(1320) sourc(1022) }
{ first(2504) two(1366) second(1323) }
{ intervent(3218) particip(2042) group(1664) }
{ activ(1138) subject(705) human(624) }
{ time(1939) patient(1703) rate(768) }
{ patient(1821) servic(1111) care(1106) }
{ use(2086) technolog(871) perceiv(783) }
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{ high(1669) rate(1365) level(1280) }
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{ detect(2391) sensit(1101) algorithm(908) }

Resumo

Repeating an arbitrary sequence of RF pulses and magnetic field gradients will eventually lead to a steady-state condition in any magnetic resonance system. While numerical methods can quantify this trajectory, analytic analysis provides significantly more insight and a means for faster calculation. Recently, an analytic analysis using homogeneous coordinates was published. The current work further develops this line of thought and compares the relative merits of using a homogeneous or a Cartesian coordinate system.

Resumo Limpo

repeat arbitrari sequenc rf puls magnet field gradient will eventu lead steadyst condit magnet reson system numer method can quantifi trajectori analyt analysi provid signific insight mean faster calcul recent analyt analysi use homogen coordin publish current work develop line thought compar relat merit use homogen cartesian coordin system

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