Windholz G J, Meso J G, Wedel M J, Pittman M
CONICET- Instituto de Investigación en Paleobiología y Geología, Sede Alto Valle-Valle Medio Universidad Nacional de Río Negro, General Roca, Río Negro, Argentina.
College of Osteopathic Medicine of the Pacific and College of Podiatric Medicine, Western University of Health Sciences, Pomona, California, United States of America.
PLoS One. 2025 Apr 2;20(4):e0320121. doi: 10.1371/journal.pone.0320121. eCollection 2025.
Bonapartenykus ultimus is an alvarezsaurid theropod from the Upper Cretaceous of Patagonia, Argentina. This species is represented by the holotype specimen and several referred specimens, many of which have pneumatic structures. Pneumaticity involves the invasion of the interior of the skeleton by means of air sac diverticula. Such invasion occurs from cortical openings (foramina) that communicate with internal air spaces. Despite previous studies on pneumatic structures in theropod specimens, there are no studies focusing on the family Alvarezsauridae. Here we address this gap by presenting the first contribution focusing on the pneumatic features of an alvarezsaurid theropod using both external skeletal anatomy as well as computed tomographic images showing internal details. The specimens studied show that the axial skeleton of B. ultimus was invaded by pneumatic structures, reaching the middle section of the tail. Our study suggests that pneumaticity among alvarezsaurids did not have a linear evolutionary trajectory, but instead shows a more random pattern of variability. This study is an important first step that paves the way for future studies to uncover the extent of pneumatic invasion among alvarezsaurids and its macroevolutionary implications.
终极波拿巴爪龙是一种来自阿根廷巴塔哥尼亚上白垩统的阿瓦拉慈龙科兽脚亚目恐龙。该物种以正模标本和几件归入标本为代表,其中许多都具有气腔结构。气腔化是指气囊分支侵入骨骼内部。这种侵入通过与内部气腔相通的皮质开口(小孔)发生。尽管之前有关于兽脚亚目标本中气腔结构的研究,但尚无针对阿瓦拉慈龙科的研究。在此,我们通过首次利用外部骨骼解剖结构以及显示内部细节的计算机断层扫描图像,聚焦于阿瓦拉慈龙科兽脚亚目恐龙的气腔特征,来填补这一空白。所研究的标本表明,终极波拿巴爪龙的中轴骨骼被气腔结构侵入,延伸至尾部中段。我们的研究表明,阿瓦拉慈龙科恐龙的气腔化并非具有线性进化轨迹,而是呈现出更为随机的变异模式。这项研究是重要的第一步,为未来研究揭示阿瓦拉慈龙科恐龙气腔侵入的程度及其宏观进化意义铺平了道路。