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Green, S.

Publications and source records attributed to Green, S..

3 recordsLinked to original sources

Investigating speech and language impairments in delirium: a preliminary case-control study

Introduction\n\nLanguage impairment is recognized as a diagnostic feature of delirium, yet there is little neuropsychological research on the nature of this dysfunction. Here we hypothesized that patients with delirium show impairments in language formation, coherence and comprehension.\n\nMethods\n\nThis was a case-control study in 45 hospitalized patients (aged 65-97 years) with delirium, dementia without delirium, or no cognitive impairment (N=15 per group). DSM-5 criteria were used for delirium. Speech was elicited during (1) structured conversational questioning, and (2) the \"Cookie Theft\" picture description task. Language comprehension was assessed through standardized verbal and written commands. Interviews were audio-recorded and transcribed.\n\nResults\n\nDelirium and dementia groups scored lower on the conversational assessment than the control group (p<0.01, moderate effect sizes (r) of 0.48 and 0.51, resp.). In the Cookie Theft task, the average length of utterances (i.e. unit of speech), indicating language productivity and fluency, distinguished patients with delirium from those with dementia (p<0.01, r=0.50) and no cognitive impairment (p<0.01, r=0.55). Patients with delirium performed worse on written comprehension tests compared to cognitively unimpaired patients (p<0.01, r=0.63), but not compared to the dementia group.\n\nConclusions\n\nProduction of spontaneous speech, word quantity, speech content and verbal and written language comprehension are impaired in delirious patients compared to cognitively unimpaired patients. Additionally, patients with delirium produced significantly less fluent speech than those with dementia. These findings have implications for how speech and language are evaluated in delirium assessments, and also for communication with patients with delirium.

neuroscience

A genome-wide assessment of the ancestral neural crest gene regulatory network

The neural crest is an embryonic cell population that contributes to key vertebrate-specific features including the craniofacial skeleton and peripheral nervous system. Here we examine the transcriptional profiles and chromatin accessibility of neural crest cells in the basal sea lamprey, in order to gain insight into the ancestral state of the neural crest gene regulatory network (GRN) at the dawn of vertebrates. Transcriptome analyses reveal clusters of co-regulated genes during neural crest specification and migration that show high conservation across vertebrates for dynamic programmes like Wnt modulation during the epithelial to mesenchymal transition, but also reveal novel transcription factors and cell-adhesion molecules not previously implicated in neural crest migration. ATAC-seq analysis refines the location of known cis-regulatory elements at the Hox-2 locus and uncovers novel cis-regulatory elements for Tfap2B and SoxE1. Moreover, cross-species deployment of lamprey elements in zebrafish reveals that the lamprey SoxE1 enhancer activity is deeply conserved, mediating homologous expression in jawed vertebrates. Together, our data provide new insight into the core elements of the GRN that are conserved to the base of the vertebrates, as well as expose elements that are unique to lampreys.

developmental biology

Umbilical Cord Blood Diagnostics for Early Onset Sepsis in Premature Infants: Detection of Bacterial DNA and Systemic Inflammatory Response

Statement of financial supportThis work has been supported by a Thrasher Research Fund Early Career Award (#12573), National Institutes of Health (K23 HL093302 [KKM], R01GM108494 [PCS])), the Gerber Foundation, the Hartwall Foundation, and the Northwestern Memorial Foundation (Friends of Prentice Grants Initiative).\n\nDisclosure statementThe authors of this manuscript have no conflicts of interest to disclose.\n\nCategory of StudyTranslational

microbiology