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1.
Small ; 20(6): e2304799, 2024 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-37786289

RESUMO

Garnet-type Li7 La3 Zr2 O12 (LLZO) solid-state electrolytes hold great promise for the next-generation all-solid-state batteries. An in-depth understanding of the phase transformation during synthetic processes is required for better control of the crystallinity and improvement of the ionic conductivity of LLZO. Herein, the phase transformation pathways and the associated surface amorphization are comparatively investigated during the sol-gel and solid-state syntheses of LLZO using in situ heating transmission electron microscopy (TEM). The combined ex situ X-ray diffraction and in situ TEM techniques are used to reveal two distinct phase transformation pathways (precursors â†’ La2 Zr2 O7  â†’ LLZO and precursors â†’ LLZO) and the subsequent layer-by-layer crystal growth of LLZO on the atomic scale. It is also demonstrated that the surface amorphization surrounding the LLZO crystals is sensitive to the postsynthesis cooling rate and significantly affects the ionic conductivity of pelletized LLZO. This work brings up a critical but often overlooked issue that may greatly exacerbate the Li-ion conductivity by undesired synthetic conditions, which can be leveraged to ameliorate the overall crystallinity to improve the electrochemical performance of LLZO. These findings also shed light on the significance of optimizing surface structure to ensure superior performance of Li-ion conductors.

2.
Technol Health Care ; 2023 Nov 02.
Artigo em Inglês | MEDLINE | ID: mdl-37980577

RESUMO

BACKGROUND: The use of indwelling closed thoracic drainage tubes in the wedge resection of the lungs is of great significance to postoperative recovery. However, there are potential risks. OBJECTIVE: To explore the design feasibility and application effect of triple-buffer-system-fixed small-diameter (18 F) thoracic closed drainage tubes following lung wedge resection. METHODS: A total of 136 patients with indwelling thoracic drainage tubes following pulmonary wedge resection were recruited, with 70 patients allocated to the control group and 66 to the experimental group. The drainage tube in the experimental group was fixed with the triple-buffer system, while that in the control group was fixed using the conventional lifting platform method. The incidence of unplanned extubation, the indwelling time of the drainage tube and the time and material costs, as well as information regarding any subcutaneous emphysema and skin tension blisters, were recorded following the operation. The pain and degree of comfort were assessed using a chi-square test and a rank sum t-test to compare the differences between the two groups. RESULTS: There were no statistically significant differences in terms of age, gender and sweating between the two groups. Compared with the control group, the unplanned extubation rate of the experimental group was lower (χ2= 8.513; P= 0.004), the indwelling time of the drainage tube was shorter (t= 2.108; P= 0.037), the cumulative material cost was lower (t= 3.778; P< 0.001), the time cost was also lower (Z= 2.717; P= 0.008), the degree of comfort was higher (Z= 2.752; P= 0.006), and the degree of pain was lower (Z= 4.019; P< 0.001). The incidence of subcutaneous emphysema was significantly lower in the experimental group than in the control group (χ2= 8.513; P= 0.004). CONCLUSION: The use of the triple-buffer system to fix small-diameter (18 F) thoracic closed drainage tubes can reduce the unplanned extubation rate, indwelling time of the drainage tube and the incidence of adverse reactions.

3.
ACS Nano ; 16(6): 8619-8629, 2022 06 28.
Artigo em Inglês | MEDLINE | ID: mdl-35436098

RESUMO

Biomimetic artificial vision is receiving significant attention nowadays, particularly for the development of neuromorphic electronic devices, artificial intelligence, and microrobotics. Nevertheless, color recognition, the most critical vision function, is missed in the current research due to the difficulty of downscaling of the prevailing color sensing devices. Conventional color sensors typically adopt a lateral color sensing channel layout and consume a large amount of physical space, whereas compact designs suffer from an unsatisfactory color detection accuracy. In this work, we report a van der Waals semiconductor-empowered vertical color sensing structure with the emphasis on compact device profile and precise color recognition capability. More attractive, we endow color sensor hardware with the function of chromatic aberration correction, which can simplify the design of an optical lens system and, in turn, further downscales the artificial vision systems. Also, the dimension of a multiple pixel prototype device in our study confirms the scalability and practical potentials of our developed device architecture toward the above applications.


Assuntos
Inteligência Artificial , Semicondutores , Eletrônica , Biomimética , Visão Ocular
4.
J Perianesth Nurs ; 36(5): 480-486.e1, 2021 10.
Artigo em Inglês | MEDLINE | ID: mdl-34183256

RESUMO

PURPOSE: This study aims to compare the incidence of complications when using a new approach to secure an indwelling peripheral venous catheter (PVC), involving tying of the tube with a surgical knot at two places and several layers of elastic adhesive bandage, with a standard approach using sterile, transparent, and protective film. METHODS: This study enrolled 311 consecutive adults undergoing thoracoscopic lobectomy under general anesthesia at Taizhou Hospital of Zhejiang Province between October 2017 and May 2018. Patients were randomized to experimental and control groups and were followed for up to 72 hours. The primary endpoint was dislodgement of the PVC. Secondary endpoints were blood in the catheter; analgesia pump obstruction alarm; time taken and cost of PVC replacement; replacement of securing materials and analgesia pump line; and time and cost of replacing them. All adverse events were recorded. FINDINGS: Final analysis included 248 patients (experimental group: n = 126; control group: n = 122). PVC dislodgement was less frequent in the experimental group than in the control group. In the control group, 78.7% of patients required replacement of securing materials (costing 37 cents each time) and 13.1% required PVC replacement (costing 3.6 dollars each time), necessitating additional nursing time. No patients in the experimental group required replacement of the PVC or securing materials. Blisters were less common in the experimental group than in the control group (0% vs 9.84%, P < .001). No patients had limb edema. CONCLUSIONS: This new method of securing an analgesia pump line can reduce traction on the indwelling PVC, lowering the dislodgement rate.


Assuntos
Analgesia , Cateterismo Periférico , Adulto , Analgésicos , Bandagens , Cateterismo Periférico/efeitos adversos , Cateteres de Demora , Humanos , Manejo da Dor
5.
Ann Palliat Med ; 10(4): 4418-4427, 2021 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-33894718

RESUMO

BACKGROUND: To evaluate the benefits of perioperative pulmonary rehabilitation training (PPRT) in patients undergoing thoracoscopic lung cancer resection. METHODS: The clinical data of 1,427 patients undergoing thoracoscopic lung cancer resection were collated. Of these patients, 779 received PPRT (the PPRT group), which included systematic education, improvement of posture, diaphragmatic respiration, bilateral lower thoracic expansion, surgical side thoracic local expansion, incentive spirometry training, effective cough training, aerobic walking, and other systematic pulmonary rehabilitation training. The other 648 patients did not receive PPRT (the non-PPRT group). Baseline characteristics including length of hospital stay, cost of hospitalization, and the incidence of postoperative pulmonary complications (PPCs) were assessed. RESULTS: There was no significant difference between the PPRT group and the non- PPRT group in terms of age, gender distribution, tumor location, operation mode, postoperative pathological type, TNM stage, and other baseline characteristics (P>0.05). The complication index of the PPRT group was slightly higher than that of the non-PPRT group (P<0.05). Patients in the PPRT group had significantly fewer postoperative hospitalization days (PHD) {6.1 days [95% confidence interval (CI): 5.8 to 6.4] vs. 6.4 days (95% CI: 6.1 to 6.7), P=0.002}, fewer total hospitalization days (THD) [9.3 days (95% CI: 8.9 to 9.7) vs. 10.8 days (95% CI: 10.3 to 11.3), P=0.000], lower non-surgical expenses (35,024±9,742 vs. 36,831±10,245 RMB), and fewer cases of PPCs) (3.72% vs. 6.33%, P=0.016) compared to patients in the non-PPRT group. In the subgroup analysis, patients less than 60 years old in the PPRT group fared better in terms of the PHDs, total inpatient days, and non-surgical expenses compared to patients in the non-PPRT group (P<0.05). In patients aged 60 years and older, the THDs in the PPRT group was less than that in the non-PPRT group (P<0.05), but there were no significant differences in the PHDs and non-surgical expenses. CONCLUSIONS: PPRT can reduce the cost of medical resources in patients undergoing thoracoscopic lung cancer resection, especially by shortening the length of hospital stay, reducing the cost of hospitalization, and reducing PPCs.


Assuntos
Neoplasias Pulmonares , Idoso , Humanos , Tempo de Internação , Pulmão , Neoplasias Pulmonares/cirurgia , Pessoa de Meia-Idade , Complicações Pós-Operatórias/prevenção & controle , Testes de Função Respiratória , Estudos Retrospectivos
6.
Adv Mater ; 33(6): e2000699, 2021 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-32578290

RESUMO

Conversion-type materials have been considered as potentially high-energy-density alternatives to commercially dominant intercalation-based electrodes for rechargeable ion batteries and have attracted tremendous research effort to meet the performance for viable energy-storage technologies. In situ transmission electron microscopy (TEM) has been extensively employed to provide mechanistic insights into understanding the behavior of battery materials. Noticeably, a great portion of previous in situ TEM studies has been focused on conversion-type materials, but a dedicated review for this group of materials is missing in the literature. Herein, recent developments of in situ TEM techniques for investigation of dynamic phase transformation and associated structural, morphological, and chemical evolutions during conversion reactions with alkali ions in secondary batteries are comprehensively summarized. The materials of interest broadly cover metal oxides, chalcogenides, fluorides, phosphides, nitrides, and silicates with specific emphasis on spinel metal oxides and recently emerged 2D metal chalcogenides. Special focus is placed on the scientific findings that are uniquely obtained by in situ TEM to address fundamental questions and practical issues regarding phase transformation, structural evolution, electrochemical redox, reaction mechanism, kinetics, and degradation. Critical challenges and perspectives are discussed for advancing new knowledge that can bridge the gap between prototype materials and real-world applications.

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