Electromechanical Modeling Approach in Assessing Female SUI
Electromechanical Modeling Approach in Assessing Female SUI
批准号:
8126454
负责人:
Yingchun Zhang
金额:
$8.98万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-08-15 至 2013-07-31
关键词:
AgingApplications GrantsBiomechanicsBiomedical EngineeringBiomedical ResearchClinicalClinical ResearchElderlyElectrical EngineeringEngineeringFemaleFive-Year PlansFosteringFunctional disorderFutureGoalsInterdisciplinary StudyLeadMechanicsMenopauseModalityModelingMuscle FatiguePatientsPelvisPrevalenceResearchResearch ProposalsScientistStress Urinary IncontinenceTechniquesTestingTherapeuticTrainingUrethraUrinary IncontinenceWomanage effectbasecareerexpectationexperienceinnovationinterestminimally invasivemultidisciplinarynovelpublic health relevance
中文摘要
DESCRIPTION (provided by applicant): As a resubmission, the proposed five-year plan will train me and foster my launch into an independent interdisciplinary research career. My multidisciplinary background in Biomedical Engineering, Electrical Engineering and Mechanical Engineering fields and my outstanding experience in advanced biomechanical modeling and electrophysiological modeling research have fostered my interest and given me unique advantages in conducting interdisciplinary biomedical research in Urinary Incontinence (UI). The immediate goal is to prepare for a career as an independent scientist and to develop a novel subject-specific electromechanical pelvic model based urethrovaginal support and urethral function assessment (UUFA) technique to minimally invasively and quantitatively assess these two etiologic factors and to investigate the specific changes associated with aging effects that cause the increase in prevalence of SUI in women. The central hypothesis behind this research is that urethrovaginal support and urethral function in women and aging effects on female SUI can be minimally invasively and quantitatively assessed and characterized using a subject-specific pelvic modeling approach. Primary Hypothesis #1 is that urethral function in women can be minimally invasively and quantitatively assessed using a subject-specific electrophysiological pelvic modeling approach. Primary Hypothesis #2 is that urethrovaginal support function in women can be non-invasively and quantitatively assessed using a subject-specific biomechanical pelvic modeling approach. Primary Hypothesis #3 is that aging will cause poor urethrovaginal support and/or urethral dysfunction which will lead to SUI. Primary Hypothesis #4 is that a female continence profile can be created to predict the status of continence in women in women clinically and to suggest optimal therapeutic modalities for specific patients. We propose four Specific Aims (SA) to test these Hypotheses: SA #1: To develop a subject- specific electrophysiological pelvic model based periurethral muscle fatigue assessment (UMFA) technique to minimally invasively and quantitatively assess urethral function in women. Primary Hypothesis #1 will be tested. SA #2: To develop a subject-specific biomechanical pelvic model based urethrovaginal support function assessment (USFA) technique to non-invasively and quantitatively assess urethrovaginal support function in women. Primary Hypothesis #2 will be tested. SA #3: To investigate aging effects on urethral function and urethrovaginal support in young/elderly female subjects with/without SUI using the UUFA technique which consists of the UMFA and USFA techniques. Primary Hypothesis #3 will be tested. SA #4: To develop a female SUI profile as a clinical standard of female SUI by utilizing the UUFA technique to quantitatively characterize SUI etiologic factors in urethrovaginal support and urethral function in women. Primary Hypothesis #4 will be tested. At the completion of this project, it is our expectation that we will have established and validated the UUFA technique and the feasibility of its application in clinical studies, and have achieved a better understanding of the contributions of specific changes associated with aging and menopause to these etiologic factors in women.
PUBLIC HEALTH RELEVANCE: In this research proposal an urethrovaginal support and urethral function assessment (UUFA) technique will be developed based on an advanced electromechanical pelvis modeling approach. The primary impact of this research would lead to a minimally invasive technique to quantitatively assess urethrovaginal support and urethra function in women which are common etiologic factors associated with stress urinary incontinence (SUI). The UUFA technique will further help us characterize the specific changes associated with aging that cause the increase in prevalence of SUI in women.
英文摘要
DESCRIPTION (provided by applicant): As a resubmission, the proposed five-year plan will train me and foster my launch into an independent interdisciplinary research career. My multidisciplinary background in Biomedical Engineering, Electrical Engineering and Mechanical Engineering fields and my outstanding experience in advanced biomechanical modeling and electrophysiological modeling research have fostered my interest and given me unique advantages in conducting interdisciplinary biomedical research in Urinary Incontinence (UI). The immediate goal is to prepare for a career as an independent scientist and to develop a novel subject-specific electromechanical pelvic model based urethrovaginal support and urethral function assessment (UUFA) technique to minimally invasively and quantitatively assess these two etiologic factors and to investigate the specific changes associated with aging effects that cause the increase in prevalence of SUI in women. The central hypothesis behind this research is that urethrovaginal support and urethral function in women and aging effects on female SUI can be minimally invasively and quantitatively assessed and characterized using a subject-specific pelvic modeling approach. Primary Hypothesis #1 is that urethral function in women can be minimally invasively and quantitatively assessed using a subject-specific electrophysiological pelvic modeling approach. Primary Hypothesis #2 is that urethrovaginal support function in women can be non-invasively and quantitatively assessed using a subject-specific biomechanical pelvic modeling approach. Primary Hypothesis #3 is that aging will cause poor urethrovaginal support and/or urethral dysfunction which will lead to SUI. Primary Hypothesis #4 is that a female continence profile can be created to predict the status of continence in women in women clinically and to suggest optimal therapeutic modalities for specific patients. We propose four Specific Aims (SA) to test these Hypotheses: SA #1: To develop a subject- specific electrophysiological pelvic model based periurethral muscle fatigue assessment (UMFA) technique to minimally invasively and quantitatively assess urethral function in women. Primary Hypothesis #1 will be tested. SA #2: To develop a subject-specific biomechanical pelvic model based urethrovaginal support function assessment (USFA) technique to non-invasively and quantitatively assess urethrovaginal support function in women. Primary Hypothesis #2 will be tested. SA #3: To investigate aging effects on urethral function and urethrovaginal support in young/elderly female subjects with/without SUI using the UUFA technique which consists of the UMFA and USFA techniques. Primary Hypothesis #3 will be tested. SA #4: To develop a female SUI profile as a clinical standard of female SUI by utilizing the UUFA technique to quantitatively characterize SUI etiologic factors in urethrovaginal support and urethral function in women. Primary Hypothesis #4 will be tested. At the completion of this project, it is our expectation that we will have established and validated the UUFA technique and the feasibility of its application in clinical studies, and have achieved a better understanding of the contributions of specific changes associated with aging and menopause to these etiologic factors in women.
PUBLIC HEALTH RELEVANCE: In this research proposal an urethrovaginal support and urethral function assessment (UUFA) technique will be developed based on an advanced electromechanical pelvis modeling approach. The primary impact of this research would lead to a minimally invasive technique to quantitatively assess urethrovaginal support and urethra function in women which are common etiologic factors associated with stress urinary incontinence (SUI). The UUFA technique will further help us characterize the specific changes associated with aging that cause the increase in prevalence of SUI in women.
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EEG source localization constrained by time varying fMRI.
脑电图源定位受时变功能磁共振成像的限制。
DOI:
10.1109/embc.2015.7318441
发表时间:
2015
期刊:
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference
影响因子:
--
作者:
[ThinhNguyen, Potter,Tom, Karmonik,Christof, Grossman,Robert, YingchunZhang]
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YingchunZhang
Concurrent EEG and Functional MRI Recording and Integration Analysis for Dynamic Cortical Activity Imaging.
动态皮层活动成像的同步脑电图和功能性 MRI 记录和集成分析。
DOI:
10.3791/56417
发表时间:
2018
期刊:
Journal of visualized experiments : JoVE
影响因子:
--
作者:
[Nguyen,Thinh, Potter,Thomas, Karmonik,Christof, Grossman,Robert, Zhang,Yingchun]
通讯作者:
Zhang,Yingchun
Neural control properties of the external anal sphincter in young and elderly women.
年轻和老年女性肛门外括约肌的神经控制特性。
DOI:
10.1002/nau.24108
发表时间:
2019
期刊:
Neurourology and urodynamics
影响因子:
2
作者:
[Dias,Nicholas, Zhang,Chuan, Li,Xuhong, Neshatian,Leila, Orejuela,FranciscoJ, Zhang,Yingchun]
通讯作者:
Zhang,Yingchun
DOI:
10.1142/s0129065715500240
发表时间:
2015-09
期刊:
International journal of neural systems
影响因子:
8
作者:
[Liu Y, Ning Y, Li S, Zhou P, Rymer WZ, Zhang Y]
通讯作者:
Zhang Y
DOI:
10.1109/jbhi.2014.2328497
发表时间:
2015-03
期刊:
IEEE journal of biomedical and health informatics
影响因子:
7.7
作者:
[Ning Y, Zhu X, Zhu S, Zhang Y]
通讯作者:
Zhang Y
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Electromechanical Modeling Approach in Assessing Female SUI
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资助金额:$8.98万
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负责人:Yingchun Zhang
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