In the Diagnostic and Statistical Manual of Mental Disorders (DSM)-III, DSM-III-R and DSM-IV, the diagnosis of post-traumatic stress disorder (PTSD) requires the presence of three symptom clusters: re-experiencing, avoidance and hyperarousal. The selective serotonin reuptake inhibitors (SSRIs), in particular sertraline and paroxetine, have emerged as the treatment of choice for trauma victims experiencing these three symptom clusters. While not approved by the U.S. Food and Drug Administration, other pharmacological agents are often used, some for symptoms found in victims of early, chronic or extreme stress. Referred to as having type II trauma, complex PTSD, disorders of extreme stress and enduring personality change after catastrophic experience, these patients, with symptoms such as dissociation, somatization and self-injurious behavior, need to be recognized as suffering from a trauma-related disorder qualitatively different from that presently captured in the DSM-IV. In this paper we will refer to DSM-IV's construct as simple PTSD (sPTSD); to complex PTSD/disorders of extreme stress as cPTSD/DES; and to both as PTSD. We will review existing evidence for the efficacy of SSRIs in treating sPTSD as well as different pharmacological interventions that are necessary for the treatment of cPTSD/DES. In addition, since both sPTSD and cPTSD/DES frequently coexist with other mental disorders, treatment of comorbid PTSD will be addressed. Finally, given that existing rating scales are not designed to measure symptoms of cPTSD/DES, we will describe the Symptoms of Trauma Scale (SOTS), designed to measure symptoms of both sPTSD and cPTSD.
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http://dx.doi.org/10.1358/dot.2006.42.12.1025704 | DOI Listing |
ISME J
January 2025
Department of Plant and Microbial Biology, North Carolina State University, Raleigh, NC 27607, United States.
Long-term climate history can influence rates of soil carbon cycling but the microbial traits underlying these legacy effects are not well understood. Legacies may result if historical climate differences alter the traits of soil microbial communities, particularly those associated with carbon cycling and stress tolerance. However, it is also possible that contemporary conditions can overcome the influence of historical climate, particularly under extreme conditions.
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December 2024
1State Key Laboratory of Tree Genetics and Breeding, Institute of Ecological Conservation and Restoration, Chinese Academy of Forestry; Comprehensive Experimental Center in Yellow River Delta of Chinese Academy of Forestry; Tianjin Institute of Forestry Science, Chinese Academy of Forestry;
Cryptobiosis is a state where organisms lose nearly all their internal water and enter anhydrobiosis under extreme environmental stress. The dispersal third-stage juveniles (pre-dauer juveniles, ) of Bursaphelenchus xylophilus can enter cryptobiosis through dehydration and revive upon rehydration when environmental conditions improve. Osmotic regulation is crucial for their survival in this process.
View Article and Find Full Text PDFActa Physiol (Oxf)
February 2025
Institute of Physiology, Center for Space Medicine and Extreme Environments Berlin, Charité-Universitätsmedizin Berlin, Berlin, Germany.
Objective: Accurate blood pressure (BP) measurement is crucial for the diagnosis, risk assessment, treatment decision-making, and monitoring of cardiovascular diseases. Unfortunately, cuff-based BP measurements suffer from inaccuracies and discomfort. This study is the first to access the feasibility of machine learning-based BP estimation using impedance cardiography (ICG) data.
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January 2025
Department of Electrical and Electronic Engineering, Kyushu Institute of Technology, 1-1 Sensuicho, Tobataku, Kitakyushu, Fukuoka 804-8550, Japan.
Ionic gels (IGs), ionic liquids (ILs) dispersed in polymers, exhibit extremely low vapor pressure, electrochemical and thermal stability, and excellent mechanical characteristics; therefore, they are used for fabricating stretchable sensors, electrochemical transistors, and energy storage devices. Although such characteristics are promising for flexible and stretchable electronics, the mechanical stress-induced ruptured covalent bonds forming polymer networks cannot recover owing to the irreversible interaction between the bonds. Physical cross-linking via noncovalent bonds enables the interaction of polymers and ILs to form supramolecular IGs (SIGs), which exhibit favorable characteristics for wearable devices that conventional IGs with noncovalent bonds cannot achieve.
View Article and Find Full Text PDFAdv Mater
January 2025
The Institute of Flexible Electronics (IFE Future Technologies), Xiamen University, 422 Siming South Road, Xiamen, 361005, China.
Complex internal stresses that appear in flexible thin-film electronic devices under long-term deformation operation are associated with incompatible mechanical properties of the multiple layers, which potentially cause intralayer fracture and separation. These defects may result in device instability, performance loss, and failure. Herein, a thermoplastic functional strategy is proposed for manufacturing high-performance stretchable semiconducting polymers with excellent strain-tolerance capacities for flexible electronic devices.
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