54 research outputs found

    肺外科手術における術後早期の高次脳機能および術中脳酸素需給バランスに対する麻酔薬の効果 : ランダム化比較試験

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    PURPOSE: One-lung ventilation (OLV) may impair cerebral oxygen balance and induce postoperative cognitive dysfunction (POCD). It is unclear whether the type of anesthetic influences the incidence of POCD in patients undergoing OLV. This prospective study compared the incidence of POCD and intraoperative cerebral oxygen desaturation in OLV patients anesthetized with propofol vs sevoflurane during lung surgery. METHODS: There were 148 participants enrolled in this study and randomized equally to either the propofol or the sevoflurane group. Anesthesia was maintained with either propofol or sevoflurane combined in both groups with fentanyl and epidural anesthesia. Regional cerebral oxygen saturation (rSO2), jugular bulb venous oxygen saturation (SjO2), and the incidence of cerebral oxygen desaturation (rSO2 or SjO2 < 50% or rSO2 < 80% of baseline) were measured during anesthesia. Cognitive function was assessed using seven neurocognitive tests two days preoperatively, five days postoperatively (primary outcome), and three months postoperatively. Bivariable and multivariable regression analyses were conducted to identify factors associated with POCD. RESULTS: Rates of POCD did not differ statistically between groups five days postoperatively (propofol, 16/72 patients; sevoflurane, 24/72 patients; RR, 0.67; 95% CI, 0.39 to 1.15; P = 0.14) or three months postoperatively (propofol, 9/60 patients; sevoflurane, 12/58 patients; RR, 0.73; 95% CI, 0.33 to 1.59; P = 0.42). Only three subjects per group showed intraoperative cerebral oxygen desaturation. Multivariable regression analysis revealed older age as an independent predictor of POCD. CONCLUSIONS: No statistically significant difference in the incidence of POCD could be detected between the sevoflurane and propofol anesthesia groups. Postoperative cognitive dysfunction was relatively frequent following OLV in both groups. (REGISTRATION NUMBER: UMIN 000002826).博士(医学)・乙第1397号・平成29年3月15日© Canadian Anesthesiologists' Society 2016This is a post-peer-review, pre-copyedit version of an article published in Canadian journal of anaesthesia. The final authenticated version is available online at: http://dx.doi.org/10.1007/s12630-016-0700-4

    Reconstructive Surgery of Poliomyelitic Disabled Hand and Arm with particular Reference to Opponens Plasty

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    The purpose of this report is to give light on problems concerning surgical reconstruction of the hand and arm disabled by poliomyelitis. Before any surgical intervention, too much attention cannot be placed to the over-all gain sought for the patient. With regard to opponens plasty, it must be emphasized that there are inherent obstacles against the complete reconstruction of poliomyelitic thumb. Authors have come to conclude that no stereotyped measure can be made for any weak thumb

    Circadian protection against bacterial skin infection by epidermal CXCL14-mediated innate immunity

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    体内時計は夜間に自然免疫を発動 --皮膚ケモカインによる自然免疫機構--. 京都大学プレスリリース. 2022-06-16.Biological clocks set for skin immunity. 京都大学プレスリリース. 2022-06-21.The epidermis is the outermost layer of the skin and the body’s primary barrier to external pathogens; however, the early epidermal immune response remains to be mechanistically understood. We show that the chemokine CXCL14, produced by epidermal keratinocytes, exhibits robust circadian fluctuations and initiates innate immunity. Clearance of the skin pathogen Staphylococcus aureus in nocturnal mice was associated with CXCL14 expression, which was high during subjective daytime and low at night. In contrast, in marmosets, a diurnal primate, circadian CXCL14 expression was reversed. Rhythmically expressed CXCL14 binds to S. aureus DNA and induces inflammatory cytokine production by activating Toll-like receptor (TLR)9-dependent innate pathways in dendritic cells and macrophages underneath the epidermis. CXCL14 also promoted phagocytosis by macrophages in a TLR9-independent manner. These data indicate that circadian production of the epidermal chemokine CXCL14 rhythmically suppresses skin bacterial proliferation in mammals by activating the innate immune system
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