This paper introduces TurTan, a tangible programming language for creative exploration inspired by Logo, which uses a tabletop interface with tangible objects. The aim of this project is to design a toy language for programming entertainment and creative purposes. Along this paper we also discuss some interesting technical issues we have found during its implementation such as tangible linking and angle mapping.
High density lipoproteins (HDL) take up cholesterol from peripheral tissues via ABC transporters and deliver it to the liver via scavenger receptor class B type I (SR-B1). HDL are the main lipoproteins present in follicular fluid (FF). They are thought to derive from plasma, but their origin is still controversial. SR-B1 knock-out (KO) mice have provided important evidence linking HDL metabolism and female fertility. These mice have cholesterol-rich circulating HDL and female infertility that can be restored by treating mice with the cholesterol-lowering drug probucol. Ovulated oocytes from SR-B1 KO females are dysfunctional and show excess cholesterol. The mechanisms explaining the contribution of FF HDL to oocyte cholesterol homeostasis are unknown. Here, using quantitation of filipin fluorescence we show that in SR-B1 KO ovaries, cholesterol excess is first observed in immature oocytes in antral follicles. By performing cross-transplant experiments between WT and apolipoprotein A-I deficient (ApoA-I KO) mice, which lack the main protein component of HDL, we provide evidence supporting the plasmatic origin of FF HDL. Also, we demonstrate that probucol treatment in SR-B1 KO females results in lowering of cholesterol content in their oocytes. Incubation of oocytes from SR-B1 KO mice with purified WT HDL reduces their cholesterol content, suggesting that HDL promote efflux of excess cholesterol from oocytes. In agreement with this hypothesis, we identified ABC transporters in oocytes and observed that ABCA1 KO oocytes have excess cholesterol and lower viability than WT oocytes.
Tap. Slide. Swipe. Shake. Tangible user interfaces have some scientists toying around with stuff you can really put your hands on.
Summary: The abdominal wall represents a unique structure of dermo-myotendinous conformation that is considered a surgical challenge. The musculocutaneous pedicled flap, using tensor fasciae latae muscle (TFL), is a technique of abdominal wall repair, and it is becoming a more frequent reconstructive procedure. It is a well-suited procedure because it provides both a semirigid fascia layer and adequate skin coverage. We present a case of a 61-year-old man with the diagnosis of squamous cell carcinoma of the bladder, clinical stage IV (T4bN1M1), complicated with an ileo-recal-urethrocutaneous fistula. We reconstructed a massive defect of the abdominal wall by rotating bilateral pedicled TFL flaps. The therapeutic plan comprised 2 surgical procedures. The first surgical intervention was intended to obtain and temporarily fix the flap, and to allow the delay phenomenon to occur. Three weeks later, we performed the abdominal wall reconstruction by repositioning the bilateral TFL flaps and placing a dual prolene with regenerated oxidized cellulose mesh. We performed a successful palliative procedure in a terminal oncologic patient. Combined with a massive oncologic procedure (done by the oncologic surgeon), we were able to solve the cutaneous fistula and provided a significant improvement in the quality of life. The patient was discharged with no procedure-related complications. He has remained healthy 18 months after surgery, and there has been no evidence of ventral hernia. Bilateral TFL flaps represent a viable alternative for primary or secondary abdominal wall reconstruction in selected cases. This reconstructive strategy should be considered when plastic and reconstructive surgeon faces large and complex abdominal wall defects, associated with significant lack of skin cover.
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