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Towards Fully Automated, Motion-Robust Diffusion-Weighted MRI of the Abdomen- [electronic resource]
Towards Fully Automated, Motion-Robust Diffusion-Weighted MRI of the Abdomen - [electronic...
Towards Fully Automated, Motion-Robust Diffusion-Weighted MRI of the Abdomen- [electronic resource]

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자료유형  
 학위논문파일 국외
최종처리일시  
20240214101510
ISBN  
9798379896966
DDC  
616
저자명  
Geng, Ruiqi.
서명/저자  
Towards Fully Automated, Motion-Robust Diffusion-Weighted MRI of the Abdomen - [electronic resource]
발행사항  
[S.l.]: : The University of Wisconsin - Madison., 2023
발행사항  
Ann Arbor : : ProQuest Dissertations & Theses,, 2023
형태사항  
1 online resource(117 p.)
주기사항  
Source: Dissertations Abstracts International, Volume: 85-01, Section: B.
주기사항  
Advisor: Hernando, Diego;Reeder, Scott B.
학위논문주기  
Thesis (Ph.D.)--The University of Wisconsin - Madison, 2023.
사용제한주기  
This item must not be sold to any third party vendors.
초록/해제  
요약Diffusion-weighted (DW) MRI of the abdomen is utilized clinically in the detection, diagnosis, and treatment monitoring of cancer and non-cancer disease. Despite its enormous potential, poor reproducibility and inefficient clinical workflow of DW imaging remain bottlenecks for rapid, high-value DW-MRI of the abdomen. A central challenge is physiological motion, including cardiac and respiratory motions. As the heart and vessels pulsate, they exert compressive tissue motion in the liver and the pancreas. The compressive tissue motion results in phase variations, leading to signal loss in diffusion-weighted images and bias in quantitative measurements. Furthermore, the slower respiratory motion results in mis-registration among repetitions taken in different phases of the respiratory cycle during free-breathing acquisitions. Inefficient clinical workflow for DW-MRI acquisition remains another technical challenge. Currently, all abdominal DW-MRI scans are prescribed manually by technologists and routinely acquired with respiratory gating. That workflow requires training of technologists and takes a significant portion of the scan time. The resulting prescription can show high inter-operator variation and occasionally insufficient coverage. A fully automated MRI prescription that would cover the whole liver is needed. Besides, although respiratory-triggering DW-MRI acquisition methods can reduce respiration-induced artifacts, these methods lead to poor SNR and unpredictable scan times due to their highly variable effective repetition time, reducing the efficiency of clinical imaging workflows. In contrast, free-breathing methods without triggering enable abdominal DW-MRI with high SNR efficiency and predictable scan times, albeit at the risk of respiration-induced mis-registration. Thus, there is an unmet need for a free-breathing DW-MRI acquisition combined with motion-corrected averaging, to enable high-SNR DW-MRI with predictable scan times and free from motion artifacts. This thesis describes technical innovations to address the aforementioned needs in order to enable fully automated, motion-robust diffusion-weighted MRI of the abdomen. An automated AI-based method for image prescription of liver MRI was developed and evaluated to standardize liver MRI prescription and improve the clinical workflow. Additionally, the cardiovascular motion artifacts was characterized and corrected in a motion phantom and healthy volunteers for pancreas DW-MRI. Finally, motion-robust, free-breathing DW-MRI in the liver was developed using optimized motion-compensated diffusion gradient waveforms and a motion-corrected averaging algorithm.
일반주제명  
Medical imaging.
일반주제명  
Computer engineering.
일반주제명  
Electrical engineering.
키워드  
Liver
키워드  
Non-cancer disease
키워드  
MRI
키워드  
Pancreas
키워드  
Diffusion-weighted
키워드  
Clinical imaging
기타저자  
The University of Wisconsin - Madison Medical Physics
기본자료저록  
Dissertations Abstracts International. 85-01B.
기본자료저록  
Dissertation Abstract International
전자적 위치 및 접속  
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MARC

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■00520240214101510
■006m          o    d                
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■020    ▼a9798379896966
■035    ▼a(MiAaPQ)AAI30568155
■040    ▼aMiAaPQ▼cMiAaPQ
■0820  ▼a616
■1001  ▼aGeng,  Ruiqi.
■24510▼aTowards  Fully  Automated,  Motion-Robust  Diffusion-Weighted  MRI  of  the  Abdomen▼h[electronic  resource]
■260    ▼a[S.l.]:▼bThe  University  of  Wisconsin  -  Madison.  ▼c2023
■260  1▼aAnn  Arbor  :▼bProQuest  Dissertations  &  Theses,  ▼c2023
■300    ▼a1  online  resource(117  p.)
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  85-01,  Section:  B.
■500    ▼aAdvisor:  Hernando,  Diego;Reeder,  Scott  B.
■5021  ▼aThesis  (Ph.D.)--The  University  of  Wisconsin  -  Madison,  2023.
■506    ▼aThis  item  must  not  be  sold  to  any  third  party  vendors.
■520    ▼aDiffusion-weighted  (DW)  MRI  of  the  abdomen  is  utilized  clinically  in  the  detection,  diagnosis,  and  treatment  monitoring  of  cancer  and  non-cancer  disease.  Despite  its  enormous  potential,  poor  reproducibility  and  inefficient  clinical  workflow  of  DW  imaging  remain  bottlenecks  for  rapid,  high-value  DW-MRI  of  the  abdomen.  A  central  challenge  is  physiological  motion,  including  cardiac  and  respiratory  motions.  As  the  heart  and  vessels  pulsate,  they  exert  compressive  tissue  motion  in  the  liver  and  the  pancreas.  The  compressive  tissue  motion  results  in  phase  variations,  leading  to  signal  loss  in  diffusion-weighted  images  and  bias  in  quantitative  measurements.  Furthermore,  the  slower  respiratory  motion  results  in  mis-registration  among  repetitions  taken  in  different  phases  of  the  respiratory  cycle  during  free-breathing  acquisitions.  Inefficient  clinical  workflow  for  DW-MRI  acquisition  remains  another  technical  challenge.  Currently,  all  abdominal  DW-MRI  scans  are  prescribed  manually  by  technologists  and  routinely  acquired  with  respiratory  gating.  That  workflow  requires  training  of  technologists  and  takes  a  significant  portion  of  the  scan  time.  The  resulting  prescription  can  show  high  inter-operator  variation  and  occasionally  insufficient  coverage.  A  fully  automated  MRI  prescription  that  would  cover  the  whole  liver  is  needed.  Besides,  although  respiratory-triggering  DW-MRI  acquisition  methods  can  reduce  respiration-induced  artifacts,  these  methods  lead  to  poor  SNR  and  unpredictable  scan  times  due  to  their  highly  variable  effective  repetition  time,  reducing  the  efficiency  of  clinical  imaging  workflows.  In  contrast,  free-breathing  methods  without  triggering  enable  abdominal  DW-MRI  with  high  SNR  efficiency  and  predictable  scan  times,  albeit  at  the  risk  of  respiration-induced  mis-registration.  Thus,  there  is  an  unmet  need  for  a  free-breathing  DW-MRI  acquisition  combined  with  motion-corrected  averaging,  to  enable  high-SNR  DW-MRI  with  predictable  scan  times  and  free  from  motion  artifacts.  This  thesis  describes  technical  innovations  to  address  the  aforementioned  needs  in  order  to  enable  fully  automated,  motion-robust  diffusion-weighted  MRI  of  the  abdomen.  An  automated  AI-based  method  for  image  prescription  of  liver  MRI  was  developed  and  evaluated  to  standardize  liver  MRI  prescription  and  improve  the  clinical  workflow.  Additionally,  the  cardiovascular  motion  artifacts  was  characterized  and  corrected  in  a  motion  phantom  and  healthy  volunteers  for  pancreas  DW-MRI.  Finally,  motion-robust,  free-breathing  DW-MRI  in  the  liver  was  developed  using  optimized  motion-compensated  diffusion  gradient  waveforms  and  a  motion-corrected  averaging  algorithm.
■590    ▼aSchool  code:  0262.
■650  4▼aMedical  imaging.
■650  4▼aComputer  engineering.
■650  4▼aElectrical  engineering.
■653    ▼aLiver
■653    ▼aNon-cancer  disease
■653    ▼aMRI
■653    ▼aPancreas
■653    ▼aDiffusion-weighted
■653    ▼aClinical  imaging
■690    ▼a0574
■690    ▼a0544
■690    ▼a0464
■71020▼aThe  University  of  Wisconsin  -  Madison▼bMedical  Physics.
■7730  ▼tDissertations  Abstracts  International▼g85-01B.
■773    ▼tDissertation  Abstract  International
■790    ▼a0262
■791    ▼aPh.D.
■792    ▼a2023
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T16933948▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.
■980    ▼a202402▼f2024

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