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慢性充血性心力衰竭时骨骼肌血流的直接和间接评估

Direct and indirect assessment of skeletal muscle blood flow in chronic congestive heart failure.

作者信息

LeJemtel T H, Scortichini D, Katz S

机构信息

Department of Medicine, Albert Einstein College of Medicine, Bronx, New York 10461.

出版信息

Am J Cardiol. 1988 Sep 9;62(8):36E-39E. doi: 10.1016/s0002-9149(88)80008-0.

Abstract

In patients with chronic congestive heart failure (CHF), skeletal muscle blood flow can be measured directly by the continuous thermodilution technique and by the xenon133 clearance method. The continuous thermodilution technique requires retrograde catheterization of the femoral vein and, thus, cannot be repeated conveniently in patients during evaluation of pharmacologic interventions. The xenon133 clearance, which requires only an intramuscular injection, allows repeated determination of skeletal muscle blood flow. In patients with severe CHF, a fixed capacity of the skeletal muscle vasculature to dilate appears to limit maximal exercise performance. Moreover, the changes in peak skeletal muscle blood flow noted during long-term administration of captopril, an angiotensin-converting enzyme inhibitor, appears to correlate with the changes in aerobic capacity. In patients with CHF, resting supine deep femoral vein oxygen content can be used as an indirect measurement of resting skeletal muscle blood flow. The absence of a steady state complicates the determination of peak skeletal muscle blood flow reached during graded bicycle or treadmill exercise in patients with chronic CHF. Indirect assessments of skeletal muscle blood flow and metabolism during exercise performed at submaximal work loads are currently developed in patients with chronic CHF.

摘要

在慢性充血性心力衰竭(CHF)患者中,骨骼肌血流量可通过连续热稀释技术和氙133清除法直接测量。连续热稀释技术需要对股静脉进行逆行插管,因此在评估药物干预时,患者无法方便地重复进行该操作。氙133清除法仅需肌肉注射,可重复测定骨骼肌血流量。在重度CHF患者中,骨骼肌血管舒张的固定能力似乎限制了最大运动表现。此外,长期服用血管紧张素转换酶抑制剂卡托普利时观察到的骨骼肌血流量峰值变化,似乎与有氧运动能力的变化相关。在CHF患者中,静息仰卧位时股深静脉血氧含量可作为静息骨骼肌血流量的间接测量指标。在慢性CHF患者中,进行分级自行车或跑步机运动时,由于缺乏稳定状态,使得确定达到的骨骼肌血流量峰值变得复杂。目前正在对慢性CHF患者在次最大工作负荷下运动时的骨骼肌血流量和代谢进行间接评估。

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