PCR Plastics 8strips domed caps only
- Known as:
- PCR test kit Plastics 8strips domed caps only
- Catalog number:
- FG-008DC
- Product Quantity:
- 120strips
- Category:
- -
- Supplier:
- nippon Genetics
- Gene target:
- PCR Plastics 8strips domed caps only
Ask about this productRelated genes to: PCR Plastics 8strips domed caps only
- Gene:
- CAPS NIH gene
- Name:
- calcyphosine
- Previous symbol:
- -
- Synonyms:
- CAPS1, MGC126562
- Chromosome:
- 19p13.3
- Locus Type:
- gene with protein product
- Date approved:
- 1990-05-31
- Date modifiied:
- 2016-07-18
Related products to: PCR Plastics 8strips domed caps only
Related articles to: PCR Plastics 8strips domed caps only
- PTSD is marked by atypical coupling between emotion and learning, yet it remains unclear how threat that is situational (the presence of potential danger) shapes episodic memory. We investigated whether unpredictability-driven threat alters incidental memory formation as a function of PTSD symptom severity (PTSDss). Sixty male combat veterans underwent fMRI scanning during incidental encoding of everyday objects presented under unpredictable threat (U), predictable threat (P), or no threat (N). Threat was operationalized as potential exposure to a highly aversive sound. An unexpected recognition test followed 90 min later. We related memory (hit rates), subjective anxiety, and encoding-related BOLD activity to PTSDss assessed with CAPS-5. Greater PTSDss predicted heightened anxiety and poorer memory for items specifically presented under unpredictable threat. While amygdala and dorsal anterior cingulate activity during encoding tracked overall memory success, these responses were attenuated with increasing PTSDss in the U condition. By linking unpredictable threat to both behavioral and neural markers of disrupted episodic memory encoding, the study helps explain how memory-related symptoms may develop and persist in PTSD. - Source: PubMed
Publication date: 2026/09/03
Aberg Kristoffer CEfrati ShaiIdan SagiMerzbach RachelPaz RonyDoenyas-Barak Keren - Despite advances in scientific research, adolescents with substance use disorders continue to experience challenges accessing evidence-based treatment, including stigma, cost, and workforce shortages. As child and adolescent psychiatrists (CAPs), we use our clinical expertise to address these barriers in direct clinical encounters. Throughout this article, you will gain an understanding of how CAPs can improve access to care for the pediatric population and learn the necessary skills to advocate for policy solutions. Emphasis will be placed on the necessity of advocacy education and mentorship at every stage of professional development to support CAPs in translating clinical expertise to advocacy skills. - Source: PubMed
Publication date: 2026/07/03
Koss Debra EGilman Falisha - Catastrophic antiphospholipid syndrome (CAPS) is an uncommon but life-threatening manifestation of antiphospholipid syndrome characterized by rapidly progressive multiorgan failure due to diffuse small-vessel thrombosis. Early recognition is challenging, particularly in patients without prior obstetric morbidity or established autoimmune disease. We report a 38-year-old woman who presented with acute limb ischemia, respiratory distress, thrombocytopenia, and acute cerebral infarcts. Laboratory evaluation revealed lupus anticoagulant positivity, reduced protein C, protein S, and antithrombin III levels, and elevated D-dimer. Imaging demonstrated diffuse distal arterial narrowing without large-vessel occlusion, bilateral pulmonary ground-glass opacities, and multiple lacunar infarcts. Skin biopsy showed occlusive arteriolopathy without evidence of vasculitis, and direct immunofluorescence was negative. A heterozygous factor V Leiden mutation was detected. A diagnosis of microvascular thrombotic disease consistent with CAPS was made after the exclusion of vasculitis and embolic causes. Despite prompt anticoagulation and corticosteroid therapy, she developed progressive multiorgan dysfunction and died. This case highlights the importance of recognizing CAPS as a predominantly microvascular thrombotic disorder that may present without prior features of antiphospholipid syndrome. The coexistence of inherited thrombophilia may act as a prothrombotic amplifier and contribute to a fulminant clinical course. - Source: PubMed
Publication date: 2026/08/02
Laraib MohdTiwari AnoopSaini KamalSolanki PreetiKumar SatishJain Payal - Professionals are often required to perform tasks they regard as unnecessary or inconsistent with their legitimate responsibilities. Although research has linked such illegitimate tasks to adverse work outcomes, less is known about how they are associated with employees' appraisal of the work-nonwork interface, motivational investment, and work role performance, or how leadership conditions this process. Drawing primarily on cognitive-affective personality system (CAPS) theory, we propose that illegitimate tasks operate as situational stimuli that activate employees' work-life balance appraisals, which are associated with work engagement and, in turn, employee-reported work role performance. Work-family boundary theory is used to explain why authoritarian leadership strengthens the negative association between illegitimate tasks and work-life balance. - Source: PubMed
Publication date: 2026/08/18
Yang Tao - Mechanical forces are central regulators of embryonic morphogenesis, influencing cell division, migration, and fate decisions. The amphibian model Xenopus laevis provides a tractable system for dissecting mechanotransduction pathways, yet existing approaches to apply reproducible force to animal cap tissues are limited by reliance on expensive custom-built devices and the inability to preserve tissue deformation during multiday immunofluorescence protocols. Here, we present a method for applying and maintaining stretch in X. laevis animal caps using a low-cost, 3D-printed mechanical bracket. This device locks explants in a stretched state throughout fixation, staining, clearing, and imaging, thereby maintaining key features, such as cell geometry, which are lost if the stretched state is released. We describe the design and assembly of the bracket, preparation of elastomeric Polydimethylsiloxane (PDMS) membranes, embryo collection and dissection, and protocols for stretching, fixation, and volumetric immunofluorescence imaging. This approach enables high-resolution analysis of force-dependent molecular and cellular processes, while lowering technical barriers for mechanobiology research. By preserving tissue geometry during complex workflows, the method expands the utility of X. laevis animal caps as a versatile platform for studying how mechanical cues shape developing tissues. - Source: PubMed
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