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Cardiac Catheterization in Mice to Measure the Pressure Volume Relationship: Investigating the Bowditch Effect

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单位: [1]Ohio State Univ, Davis Heart & Lung Res Inst, Dept Physiol & Cell Biol, Columbus, OH 43210 USA [2]Huazhong Univ Sci & Technol,Tongji Med Coll,Tongji Hosp,Inst Organ Transplantat,Wuhan,Peoples R China
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DOI: 10.3791/52618
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关键词: Medicine Issue 100 murine catheterization contractility PV loops end-systolic pressure volume relationship preload recruitable stroke work NOS1

摘要:
Animal models that mimic human cardiac disorders have been created to test potential therapeutic strategies. A key component to evaluating these strategies is to examine their effects on heart function. There are several techniques to measure in vivo cardiac mechanics (e.g., echocardiography, pressure/volume relations, etc.). Compared to echocardiography, real-time left ventricular (LV) pressure/volume analysis via catheterization is more precise and insightful in assessing LV function. Additionally, LV pressure/volume analysis provides the ability to instantaneously record changes during manipulations of contractility (e.g., beta-adrenergic stimulation) and pathological insults (e.g., ischemia/reperfusion injury). In addition to the maximum (+dP/dt) and minimum (-dP/dt) rate of pressure change in the LV, an accurate assessment of LV function via several load-independent indexes (e.g., end systolic pressure volume relationship and preload recruitable stroke work) can be attained. Heart rate has a significant effect on LV contractility such that an increase in the heart rate is the primary mechanism to increase cardiac output (i.e., Bowditch effect). Thus, when comparing hemodynamics between experimental groups, it is necessary to have similar heart rates. Furthermore, a hallmark of many cardiomyopathy models is a decrease in contractile reserve (i.e., decreased Bowditch effect). Consequently, vital information can be obtained by determining the effects of increasing heart rate on contractility. Our and others data has demonstrated that the neuronal nitric oxide synthase (NOS1) knockout mouse has decreased contractility. Here we describe the procedure of measuring LV pressure/volume with increasing heart rates using the NOS1 knockout mouse model.

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大类 | 4 区 综合性期刊
小类 | 4 区 综合性期刊
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Q3 MULTIDISCIPLINARY SCIENCES

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第一作者单位: [1]Ohio State Univ, Davis Heart & Lung Res Inst, Dept Physiol & Cell Biol, Columbus, OH 43210 USA [2]Huazhong Univ Sci & Technol,Tongji Med Coll,Tongji Hosp,Inst Organ Transplantat,Wuhan,Peoples R China
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