The brightness and warmth of HI-MACS® gives a soul to the Maktub children’s hospital

News Infurma06/11/2013
This project, inspired by the emotional sensitivity and positivity of children, was created in partnership with the Aladina Foundation and the University of Granada to equip the Maktub Centre, a new bone marrow transplant ward at the Niño Jesús Hospital, Madrid. An space designed by Architect Elisa Valero. In a hospital, the environment, organisation and working system strongly influences patients and their families and can cause stress. If these patients are children the impact is even stronger, due to the psychological and emotional value that children place on the environment that surround them. Provided with the best systems and the most advanced technology for bone marrow transplants, from separate electrical systems to avant-garde pressurisation systems. Architect Elisa Valero has gone beyond merely technical aspects to create a space that reduces the sense of isolation in children with immune system deficiencies. The new design of the space aims to meet functional necessities through eliminating or transforming what are normally perceived as hospital elements. The unit has six separate cubicles on the South side of the wing overlooking a glass gallery that welcomes visitors. The initial aim was to enlarge the structure and so the spaces have been reorganised to adapt to the constraints that the structure and the pre-existing drainage system imposed. The second aim was to eliminate obstacles that impeded the view outside. The old central corridor, which had no natural light, is now a gallery illuminated by large windows overlooking a garden. In between the corridor and rooms there are service areas located inside variously sized rooms, which help create a large variety of spaces. It is worth noting that Maktub is the first centre in Europe to carry out clinical studies in pediatric photobiology. Photobiology was also used in the lighting design, which studies the effect of light on human wellbeing. The natural light that enters the Southern gallery cubicles is controlled by motorised anti-glare or total darkness curtains and the artificial light has been designed for the visual comfort of the children and to make the nurses’ work easier. This is why white LED lights with a latest generation triple chip and the RGB model with 856 colours, used in chromotherapy, have been used. The project was completed in two months with the added difficulty that the upper and lower floor of the hospital continued to be used during work. This required extraordinary precision and coordination of various activities. This is why the architect decided to use different materials, including HI-MACS®. The design required a thermoforming material with an elegant, simple design that eliminated joints between the various structures. “I was looking for a long-lasting material that met hospital regulations and could be modelled to eliminate corners in the corridors, to avoid being hit by beds coming in and out of the rooms,” said architect Valero. Therefore we didn’t need to use impact protectors and minimised the presence of equipment. This, together with colours and shapes, helped create a pleasant, playful atmosphere. Thanks to its aseptic properties, the fact that it is easy to clean and resists chemical agents, acrylic stone is recommended in clinics and healthcare spaces that have to respect the highest standards of hygiene. The aesthetic qualities of stone create warm, welcoming environments, even in spaces that are not usually like this. Several studies have shown that this has a positive influence on patients and their convalescence. PROJECT INFORMATION Project: Maktub Centre, bone marrow transplant ward, Niño Jesús Hospital Promoter: Niño Jesús University Children’s Hospital, Madrid and the Aladina Foundation Location: Madrid, Spain Designed: Elisa Valero www.elisavalero.com Material: HI-MACS® Alpine White www.himacs.eu Photograph: Fernando Alda Source: HI-MACS® Read more news related HI-MACS® publisehd at Infurma Visit the HI-MACS® website

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