血管化扩大了四肢曲诱导的动脉变形,并导致间歇性血管挤压
Alexey Kamenskiy1, Iraklis I Pipinos2,3, Yuqian Tian2
1Department of Biomechanics, University of Nebraska Omaha, Omaha, NE.
Annals of surgery
|June 6, 2025
概括
动脉化会在四肢运动过程中恶化股骨动脉变形,导致曲增加和光线缩小. 这凸显了对外围动脉疾病 (PAD) 患者曲腿成像的需要.
科学领域:
- 血管成像和生物力学
- 心血管研究的心血管研究.
- 医疗工程是医学工程.
背景情况:
- 周围动脉疾病 (PAD) 涉及下肢血液流量减少,通常是由于股骨关节动脉 (FPA) 阻塞.
- 动脉化是PAD的一个主要因素,使动脉变硬,并可能在四肢曲时恶化曲和光线崩.
研究的目的:
- 调查动脉化如何加剧肢体曲期间的股骨动脉变形.
- 量化化对FPA扭曲,曲和光膜面积减少的影响.
主要方法:
- 利用32名PAD患者的计算机断层扫描血管造影 (CTA),分析了84个曲腿和84个直腿重建.
- 定量化动脉缩短,扭曲,曲和膜面积减少.
- 使用体积,周长卷入和霍恩斯菲尔德单位 (HU) 值来表征化.
主要成果:
- 肢体曲导致动脉缩短 (6-9%) 和显著曲 (中位半径为20-60毫米).
- 与非化动脉相比,化FPA的曲角度 (84±17°与105±13°相比) 更为尖,灯光面积减小2.4倍.
- 在行走姿势和坐着姿势之间观察到变形指标的显著差异.
结论:
- 动脉化显著放大了四肢曲引起的FPA变形,包括更的曲和更大的光线缩小.
- 这些发现强调了化FPA中间歇性流水阻塞的风险.
- 曲腿部成像对于识别高风险部分和指导干预措施,如斑块修改或专业的支架设计至关重要.
相关概念视频
Arteries of Lower Limbs
4.4K
The external iliac artery transitions out of the body cavity, entering the femoral region of the lower leg, and is renamed the femoral artery at the point where it traverses the body wall. This artery is responsible for the distribution of blood to the thigh's deep muscles and the skin's ventral and lateral regions, achieved through several minor branches and the lateral deep femoral artery, which also spawns a lateral circumflex artery. The knee area receives blood from the genicular...
4.4K
Arteries of the Upper Limbs
2.2K
The subclavian artery transitions into the axillary artery as it exits the chest and enters the axillary region. This artery is critical for supplying blood to the shoulder area, including the head of the humerus, through the humeral circumflex arteries. As the vessel continues into the upper arm or brachium, it becomes the brachial artery. This artery plays a key role in vascularizing the brachial region and bifurcates at the elbow into several branches. These branches include the deep...
2.2K
Pinching-off of Coated Vesicles
4.0K
Vesicle budding is orchestrated by distinct cytosolic proteins such as adaptor proteins, coat proteins, and GTPases. To initiate vesicle budding, membrane-bending proteins containing crescent-shaped BAR domains bind to the lipid heads in the bilayer and distort the membrane to form a protein-coated vesicle bud. Adaptors proteins such as AP2 for clathrin-coated vesicles can nucleate on the deformed membrane. Finally, coat proteins such as clathrin or COPI and COPII assemble into a coat forming...
4.0K
BJT Amplifiers
970
Bipolar Junction Transistors (BJTs) are pivotal components in amplifier circuits, functioning as voltage-controlled current sources in their active region. This characteristic allows them to efficiently control the collector current through variations in the base-emitter voltage. Essentially, BJTs amplify power due to their ability to take a weak input signal and output a much stronger signal.
In BJT amplifier configurations, particularly in common-emitter setups, the transistor's role...
In BJT amplifier configurations, particularly in common-emitter setups, the transistor's role...
970
Operational Amplifiers
1.9K
The operational amplifier, often referred to as an op-amp, is a multifaceted building block of a circuit. This electronic component functions like a voltage-controlled voltage source and can also be used to create a voltage- or current-controlled current source. The design of an operational amplifier enables it to execute mathematical operations when external components like resistors and capacitors are linked to its terminals. An op-amp has the capacity to sum signals, amplify a signal,...
1.9K
MOSFET Amplifiers
506
The MOSFET, when operating in its active region, functions as a voltage-controlled current source. In this region, the gate-to-source voltage controls the drain current. This principle underlies the operation of the transconductance MOSFET amplifier. The output current is directed through a load resistor to convert this amplifier into a voltage amplifier. The output voltage is then obtained by subtracting the voltage drop across the load resistance from the supply voltage. This process results...
506


