Odo Yui, Iwanaga Joe, Tabira Yoko, Watanabe Koichi, Saga Tsuyoshi, Tubbs R Shane, Fujishima Yoshiko, Yamaki Koh-Ichi
Kurume University School of Medicine.
Seattle Science Foundation.
Kurume Med J. 2019 Sep 25;65(3):105-108. doi: 10.2739/kurumemedj.MS653003. Epub 2019 Aug 9.
We report a case of bilateral lateral costal branches (LCB) of the internal thoracic artery (ITA). On the left side, the ITA branched from the subclavian artery as a common trunk with the thyrocervical trunk. The left LCB flew into the collateral branch of the fifth intercostal artery after reaching the upper end of the sixth rib and after exiting the left ITA at the upper part of the first rib. The left ITA was disconnected near the second rib because it had been used for coronary artery bypass surgery. The right ITA arose from the anterior surface of the right subclavian artery just after the right ITA diverged from the brachiocephalic artery. The right LCB reached the upper end of the fifth rib and flew into the collateral branch of the fourth intercostal artery. The right ITA descended along the back of the costal cartilages as usual. The mechanism of the development of the LCB is thought to be due to a lateral longitudinal anastomosis connecting the inter-node arteries arising from the dorsal aorta during the embryonic phase. More anatomical and embryological studies are necessary to further elucidate this variant arterial branch.
我们报告一例胸廓内动脉(ITA)双侧肋外侧支(LCB)的病例。左侧,ITA作为与甲状颈干的共同主干从锁骨下动脉分支。左LCB在到达第六肋上端并在第一肋上部离开左ITA后汇入第五肋间动脉的侧支。左ITA在第二肋附近断开,因为它已用于冠状动脉搭桥手术。右侧ITA在从右头臂动脉分出后立即从右锁骨下动脉前表面发出。右LCB到达第五肋上端并汇入第四肋间动脉的侧支。右ITA照常沿肋软骨后方下行。LCB的发育机制被认为是由于胚胎期连接背主动脉发出的节间动脉的外侧纵向吻合。需要更多的解剖学和胚胎学研究来进一步阐明这种变异动脉分支。