1.Comparison of Cognitive Control Deficits in Patients with Schizophrenia and Bipolar I Disorder
Bohyun JIN ; Hyerim YUN ; Minjae BAE ; Seunghee WON
Journal of Korean Neuropsychiatric Association 2020;59(3):236-242
Methods:
Three groups were included in this study: remitted schizophrenia patients (n=56), patients in euthymic states of bipolar I disorder (n=52), and healthy control (n=57), who were matched on sex, age, years of education. The Continuous Performance Test of the AX version (AXCPT) was used to evaluate the cognitive control function. Intelligence, psychopathology, and psychomotor speed were also examined. The degree of cognitive control deficits was assessed by the commission error rates, correct response times, and the d’ values.
Results:
Both patient groups performed worse in the AX and BX trials than the healthy control. Both patient groups showed a delayed response in all trials than the healthy control. The d’ value was the highest in the healthy control group, but there were no significant differences between the two patient groups. The profile of defects in the two patient groups was the same, with the BX trial having the highest defects in the order of the AX, BY, and AY trials.
Conclusion
These findings indicate that cognitive control is impaired in patients with schizophrenia and bipolar I disorder. Impairments in cognitive control are likely to be a possible shared pathophysiological marker for both disorders.
2.Magnetic Resonance Imaging in Diplopia: Neural Pathway, Imaging, and Clinical Correlation
Jae Hyoung KIM ; Minjae KIM ; Yun Jung BAE
Korean Journal of Radiology 2022;23(6):649-663
The role of magnetic resonance imaging (MRI) in diplopia is to diagnose various diseases that occur along the neural pathway governing eye movement. However, the lesions are frequently small and subtle and are therefore difficult to detect on MRI.This article presents representative cases of diseases that cause diplopia. The purpose of this article was to 1) describe the anatomy of the neural pathway governing eye movement, 2) recommend optimal MRI targets and protocols for the diagnosis of diseases causing diplopia, 3) correlate MRI findings with misalignment of the eyes (i.e., strabismus), and 4) help familiarize the reader with the imaging diagnosis of diplopia.
3.Ramped versus sniffing position in the videolaryngoscopy-guided tracheal intubation of morbidly obese patients: a prospective randomized study
Seongheon LEE ; Eun-A JANG ; Minjae HONG ; Hong-Beom BAE ; Joungmin KIM
Korean Journal of Anesthesiology 2023;76(1):47-55
Background:
Ramped positioning is recommended for intubating obese patients undergoing direct laryngoscopy. However, whether the use of the ramped position can provide any benefit in videolaryngoscopy-guided intubation remains unclear. This study assessed intubation time using videolaryngoscopy in morbidly obese patients in the ramped versus sniffing positions.
Methods:
This is a prospective randomized study in patients with morbid obesity (n = 82; body mass index [BMI] ≥ 35 kg/m2). Patients were randomly allocated to either the ramped or the standard sniffing position groups. During the induction of general anesthesia, difficulty in mask ventilation was assessed using the Warters scale. Tracheal intubation was performed using a C-MAC® D-Blade videolaryngoscope, and intubation difficulty was assessed using the intubation difficulty scale (IDS). The primary endpoint was the total intubation time calculated as the sum of the laryngoscopy and tube insertion times.
Results:
The percentage of difficult mask ventilation (Warters scale ≥ 4) was significantly lower in the ramped (n = 40) than in the sniffing group (n = 41) (2.5% vs. 34.1%, P < 0.001). The percentage of easy intubation (IDS = 0) was significantly higher in the ramped than in the sniffing group (70.0% vs. 7.3%, P < 0.001). The total intubation time was significantly shorter in the ramped than in the sniffing group (22.5 ± 6.2 vs. 40.9 ± 9.0, P < 0.001).
Conclusions
Compared with the sniffing position, the ramped position reduced intubation time in morbidly obese patients and effectively facilitated both mask ventilation and tracheal intubation using videolaryngoscopy.
4.Prediction of itching diagnostic marker through RNA sequencing of contact hypersensitivity and skin scratching stimulation mice models.
Young Won KIM ; Tong ZHOU ; Eun A KO ; Seongtae KIM ; Donghee LEE ; Yelim SEO ; Nahee KWON ; Taeyeon CHOI ; Heejung LIM ; Sungvin CHO ; Gwanhui BAE ; Yuseong HWANG ; Dojin KIM ; Hyewon PARK ; Minjae LEE ; Eunkyung JANG ; Jeongyoon CHOI ; Hyemi BAE ; Inja LIM ; Hyoweon BANG ; Jae Hong KO
The Korean Journal of Physiology and Pharmacology 2019;23(2):151-159
Pruritus (itching) is classically defined as an unpleasant cutaneous sensation that leads to scratching behavior. Although the scientific criteria of classification for pruritic diseases are not clear, it can be divided as acute or chronic by duration of symptoms. In this study, we investigated whether skin injury caused by chemical (contact hypersensitivity, CHS) or physical (skin-scratching stimulation, SSS) stimuli causes initial pruritus and analyzed gene expression profiles systemically to determine how changes in skin gene expression in the affected area are related to itching. In both CHS and SSS, we ranked the Gene Ontology Biological Process terms that are generally associated with changes. The factors associated with upregulation were keratinization, inflammatory response and neutrophil chemotaxis. The Kyoto Encyclopedia of Genes and Genomes pathway shows the difference of immune system, cell growth and death, signaling molecules and interactions, and signal transduction pathways. Il1a , Il1b and Il22 were upregulated in the CHS, and Tnf, Tnfrsf1b, Il1b, Il1r1 and Il6 were upregulated in the SSS. Trpc1 channel genes were observed in representative itching-related candidate genes. By comparing and analyzing RNA-sequencing data obtained from the skin tissue of each animal model in these characteristic stages, it is possible to find useful diagnostic markers for the treatment of itching, to diagnose itching causes and to apply customized treatment.
Animals
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Biological Processes
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Chemotaxis
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Classification
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Cytokines
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Dermatitis, Contact*
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Gene Expression
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Gene Ontology
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Genome
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Hypersensitivity
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Immune System
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Interleukin-6
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Mice*
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Models, Animal
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Neutrophils
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Pruritus*
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RNA*
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Sensation
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Sequence Analysis, RNA*
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Signal Transduction
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Skin*
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Transcriptome
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Transient Receptor Potential Channels
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Up-Regulation
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Wound Healing