Ulnar Tendinous Interconnection in Type IIIA Thumb Hypoplasia—A Pollex Adductus

2006 ◽  
Vol 31 (4) ◽  
pp. 549-552
Author(s):  
Anil K. Agarwal ◽  
Alexandra Turner ◽  
Mark A. Pickford
Keyword(s):  
2019 ◽  
Vol 30 (6) ◽  
pp. 767-771
Author(s):  
Xinqiang Yao ◽  
Ruoting Ding ◽  
Junhao Liu ◽  
Siyuan Zhu ◽  
Jingshen Zhuang ◽  
...  

OBJECTIVEThe aim of this study was to evaluate the effect of lumbar sacralization on the level of vertebral slip and disc degeneration in patients with L4 spondylolysis.METHODSThe authors analyzed data from 102 cases in which patients underwent surgical treatment for L4 spondylolysis and spondylolisthesis at their institution between March 2007 and September 2016. Lumbar sacralization was characterized by the presence of pseudarthrosis and/or bony fusion between the L5 transverse process and sacrum, and the type of lumbosacral transitional vertebra (LSTV) was evaluated with the Castellvi classification. The amount of vertebral slippage was measured using the Taillard technique and Meyerding grade. Degeneration of the L4–5 segment was quantified using the Pfirrmann and Modic classifications. Patients were divided into 2 groups based on the presence or absence of sacralization, and the amount of vertebral slip and degeneration of the L4–5 segment was compared between groups.RESULTSLumbar sacralization was present in 37 (36%) of 102 patients with L4 spondylolysis. The LSTV was type IIa in 10 cases, type IIb in 7, type IIIa in 2, and type IIIb in 18. The levels of vertebral slip and disc degeneration in the group of patients with sacralization were significantly greater than in the group without sacralization. No significant difference was found between the 2 groups with respect to Modic changes.CONCLUSIONSThe increased stability between a sacralized L5 and the sacrum may predispose the L4–5 segment to greater instability and disc degeneration in patients with L4 spondylolysis.


2021 ◽  
Vol 86 (1) ◽  
pp. 99-101
Author(s):  
A.A. Baca-Arzaga ◽  
A. Navarro-Chávez ◽  
A. Galindo-Jiménez ◽  
J. Garza-Vega ◽  
E. Flores-Villalba

2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Katerina Zabrady ◽  
Matej Zabrady ◽  
Peter Kolesar ◽  
Arthur W. H. Li ◽  
Aidan J. Doherty

AbstractCRISPR-Cas pathways provide prokaryotes with acquired “immunity” against foreign genetic elements, including phages and plasmids. Although many of the proteins associated with CRISPR-Cas mechanisms are characterized, some requisite enzymes remain elusive. Genetic studies have implicated host DNA polymerases in some CRISPR-Cas systems but CRISPR-specific replicases have not yet been discovered. We have identified and characterised a family of CRISPR-Associated Primase-Polymerases (CAPPs) in a range of prokaryotes that are operonically associated with Cas1 and Cas2. CAPPs belong to the Primase-Polymerase (Prim-Pol) superfamily of replicases that operate in various DNA repair and replication pathways that maintain genome stability. Here, we characterise the DNA synthesis activities of bacterial CAPP homologues from Type IIIA and IIIB CRISPR-Cas systems and establish that they possess a range of replicase activities including DNA priming, polymerisation and strand-displacement. We demonstrate that CAPPs operonically-associated partners, Cas1 and Cas2, form a complex that possesses spacer integration activity. We show that CAPPs physically associate with the Cas proteins to form bespoke CRISPR-Cas complexes. Finally, we propose how CAPPs activities, in conjunction with their partners, may function to undertake key roles in CRISPR-Cas adaptation.


1999 ◽  
Vol 127 (4) ◽  
pp. 456-458 ◽  
Author(s):  
Satoshi Kawasaki ◽  
Kohji Nishida ◽  
Andrew J Quantock ◽  
Atsuyoshi Dota ◽  
Kelly Bennett ◽  
...  

2014 ◽  
Vol 1 ◽  
pp. 422-424 ◽  
Author(s):  
Erlane Marques Ribeiro ◽  
Ana Carolina Brusius-Facchin ◽  
Sandra Leistner-Segal ◽  
Carlos Antônio Bruno da Silva ◽  
Ida Vanessa Schwartz

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