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1.
J Clin Immunol ; 43(1): 46-56, 2023 01.
Article in English | MEDLINE | ID: mdl-36121535

ABSTRACT

Almost 2 years into the pandemic and with vaccination of children significantly lagging behind adults, long-term pediatric humoral immune responses to SARS-CoV-2 are understudied. The C19.CHILD Hamburg (COVID-19 Child Health Investigation of Latent Disease) Study is a prospective cohort study designed to identify and follow up children and their household contacts infected in the early 2020 first wave of SARS-CoV-2. We screened 6113 children < 18 years by nasopharyngeal swab-PCR in a low-incidence setting after general lockdown, from May 11 to June 30, 2020. A total of 4657 participants underwent antibody testing. Positive tests were followed up by repeated PCR and serological testing of all household contacts over 6 months. In total, the study identified 67 seropositive children (1.44%); the median time after infection at first presentation was 83 days post-symptom onset (PSO). Follow-up of household contacts showed less than 100% seroprevalence in most families, with higher seroprevalence in families with adult index cases compared to pediatric index cases (OR 1.79, P = 0.047). Most importantly, children showed sustained seroconversion up to 9 months PSO, and serum antibody concentrations persistently surpassed adult levels (ratio serum IgG spike children vs. adults 90 days PSO 1.75, P < 0.001; 180 days 1.38, P = 0.01; 270 days 1.54, P = 0.001). In a low-incidence setting, SARS-CoV-2 infection and humoral immune response present distinct patterns in children including higher antibody levels, and lower seroprevalence in families with pediatric index cases. Children show long-term SARS-CoV-2 antibody responses. These findings are relevant to novel variants with increased disease burden in children, as well as for the planning of age-appropriate vaccination strategies.


Subject(s)
Antibody Formation , COVID-19 , Adult , Humans , Child , SARS-CoV-2 , COVID-19/diagnosis , COVID-19/epidemiology , Prospective Studies , Seroepidemiologic Studies , Communicable Disease Control , Antibodies, Viral
2.
BMC Musculoskelet Disord ; 17(1): 357, 2016 08 22.
Article in English | MEDLINE | ID: mdl-27549093

ABSTRACT

BACKGROUND: Current glenoid defect measurement techniques only quantify bone loss in terms of defect diameter or surface. However, the glenoid depth plays an important role in shoulder stabilization by means of concavity compression. CASE PRESENTATION: We present a case of a professional wrestler who suffered from anterior shoulder instability after sustaining a bony Bankart lesion without loss of glenoid surface area but flattening of the concavity due to medialization of the fragment. The patient's glenoid concavity was reconstructed arthroscopically by reduction and percutaneous screw fixation of the bony fragment along with a capsulo-ligamentous shift. Changes of the glenoid concavity with according alterations in the Bony Shoulder Stability Ratio (BSSR) were analyzed on pre-op, post-op, and follow-up CT scans. Postoperative CT scans revealed a deepened concavity (3.3 mm) and improved BSSR (46.1 %) compared to pre-op scans (0.7 mm; 11.3 %). Follow-up CT scans showed a slight remodeling of the glenoid concavity (3.2 mm) with steady BSSR (44.7 %). CONCLUSION: This case shows that the passive stabilizing effect of the glenoid can be compromised by loss of concavity despite the absence of loss of articular surface. Therefore, addressing the concavity loss and resulting reduction of the BSSR is recommended in these cases. Bony Bankart repair was successful in restoring the BSSR of the patients shoulder as determined by mathematical calculations based on CT scans.


Subject(s)
Glenoid Cavity/surgery , Joint Instability/complications , Shoulder Dislocation/complications , Shoulder Injuries , Wrestling/injuries , Adult , Arthroscopy , Bone Screws , Humans , Imaging, Three-Dimensional , Magnetic Resonance Imaging , Male , Osteotomy , Range of Motion, Articular , Plastic Surgery Procedures/instrumentation , Plastic Surgery Procedures/methods , Recurrence , Shoulder Dislocation/diagnostic imaging , Shoulder Dislocation/surgery , Shoulder Joint/diagnostic imaging , Shoulder Joint/surgery , Tomography, X-Ray Computed
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