From: "Salvo pelo Microsoft Internet Explorer 7" Subject: Sistema Endovascular Apolo Date: Mon, 2 Feb 2009 12:57:40 -0200 MIME-Version: 1.0 Content-Type: multipart/related; type="text/html"; boundary="----=_NextPart_000_004A_01C98535.D49F7270" X-MimeOLE: Produced By Microsoft MimeOLE V6.0.6001.18049 This is a multi-part message in MIME format. ------=_NextPart_000_004A_01C98535.D49F7270 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Content-Location: http://www.inova.unicamp.br/inventabrasil/nanoend.htm Sistema Endovascular Apolo Sistema Endovascular Apolo = Sistema Endovascular Apolo Sistema=20 Endovascular Apolo

       

=20



A=20 corre=E7=E3o endoluminal ou minimamente invasiva de patologias = vasculares, em=20 especial de aneurismas e dissec=E7=F5es de aorta abdominal e = tor=E1cica=20 constitui uma das mais recentes conquistas da medicina moderna,=20 desenvolvida a partir do in=EDcio dos anos 90. Suas vantagens = s=E3o dispensar=20 a necessidade de anestesia geral, reduzir a perda sangu=EDnea, = diminuir o=20 desconforto do paciente no p=F3s operat=F3rio, bem como o e seu = tempo de=20 interna=E7=E3o. O "Sistema Endovascular Apolo" =E9 um dispositivo = minimamente=20 invasivo, introduzido pela art=E9ria femural, por uma pequena = incis=E3o na=20 altura da virilha, para tratamento da doen=E7a aneurism=E1tica em=20 desenvolvimento pela Nano Endoluminal Ltda, resultado de tr=EAs = anos de=20 pesquisas realizadas em conv=EAnio com institui=E7=F5es nacionais = e=20 estrangeiras, com tecnologia compat=EDvel ao estado da arte a = n=EDvel mundial=20 e com custos adaptados =E0 realidade norte = americana.

Apresenta como=20 caracter=EDsticas a simplicidade no manuseio e facilidade de = inser=E7=E3o: O=20 sistema de disparo com tra=E7=E3o axial e a estrutura de n=EDquel = tit=E2nio=20 auto-expans=EDvel de suas endopr=F3teses conferem ao Sistema = Endovascular=20 Apolo extrema facilidade no tratamento endovascular da doen=E7a=20 aneurism=E1tica, dispensando balonamento, hipotens=E3o arterial, = ou qualquer=20 outro procedimento extra para a libera=E7=E3o da = endopr=F3tese.Seguran=E7a e=20 precis=E3o no posicionamento e libera=E7=E3o da endopr=F3tese: A = tecnologia da=20 tra=E7=E3o axial aliada ao sistema de disparo de dois tempos, = proporciona ao=20 Sistema Endovascular Apolo, maior precis=E3o no posicionamento e = fixa=E7=E3o da=20 endopr=F3tese, evitando seu encurtamento ou deslocamento pela = a=E7=E3o da=20 press=E3o arterial. Flexibilidade e facilidade de navega=E7=E3o em = art=E9rias tortuosas:=20 O reduzido perfil (12, 14, 16 e 18 Fr*) apresentado pelo Sistema=20 Endovascular Apolo, disponibiliza maior flexibilidade e facilidade = de=20 navega=E7=E3o em art=E9rias tortuosas, proporcionando um = procedimento cir=FArgico=20 menos agressivo e traum=E1tico. Modulariedade: A estrutura = apresentada pelas=20 endopr=F3teses com stent proximal descoberto permitem a = realiza=E7=E3o de uma=20 ampla gama de solu=E7=F5es minimamente invasivas para o tratamento = de=20 aneurismas e traumas da aorta abdominal e tor=E1cica, conferindo = seguran=E7a e=20 precis=E3o na uni=E3o de seus m=F3dulos.

Ele =E9 o = primeiro sistema de=20 tratamento endoluminal para tratamento de aneurismas abdominais=20 desenvolvido no Brasil e credenciado pelo Minist=E9rio da Sa=FAde, = utilizando=20 tecnologia de materiais e processos semelhantes aos empregados = pelos=20 demais fabricantes mundiais.No Brasil, s=E3o diagnosticados = anualmente,=20 cerca de 30 mil novos casos de aneurismas, com uma proje=E7=E3o de = crescimento=20 na ordem de 15%. As vantagens do processo de implante s=E3o = in=FAmeras, a=20 come=E7ar por se tratar de um procedimento que dispensa a = laparotomia e a=20 necessidade de uma anestesia geral. A corre=E7=E3o endoluminal se = traduz em um=20 procedimento de maior risco que garante a redu=E7=E3o do = desconforto do=20 paciente e no tempo de interna=E7=E3o. O =EDleo paral=EDtico =E9 = breve, quando n=E3o=20 existente, permitindo que o paciente se alimente, no m=E1ximo, no = ida=20 seguinte ao da inven=E7=E3o. A deambula=E7=E3o tamb=E9m =E9 mais = precose, e o tempo de=20 observa=E7=E3o na UTI =E9 reduzido a poucas horas. Com isto os = custos de todo o=20 ato s=E3o significativamente reduzidos.

A Nano Endoluminal = =E9 um caso=20 de sucesso no ramo de produ=E7=E3o de pr=F3teses endovasculares = com tecnologia=20 avan=E7ada. Esta caminhada come=E7ou em 1996. Hoje conta com um = corpo t=E9cnico=20 formado por mestres e doutores, todos com mais de dez anos de = experi=EAncia=20 em pesquisar, produzir e comercializar produtos = m=E9dico-hospitalares.=20 Instalada no Celta (Centro Empresarial para Labora=E7=E3o de = Tecnologias=20 Avan=E7adas), em Florian=F3polis, a Endo recebeu no ano passado a = certifica=E7=E3o=20 da Endeavor no Brasil, uma organiza=E7=E3o n=E3o-governamental que = ap=F3ia=20 empreendedores em pa=EDses em desenvolvimento. Al=E9m disso, = ganhou, tamb=E9m em=20 2000, o pr=EAmio nacional Finep de Inova=E7=E3o Tecnol=F3gica, na = categoria=20 produto. Neste ano, recebeu R$ 1 milh=E3o do Fundo SCTec para = implanta=E7=E3o da=20 nova f=E1brica, moderniza=E7=E3o da empresa e lan=E7amento de = novos produtos.=20

Antes de lan=E7arem a Nano Endoluminal, os empreendedores = Guido=20 Dellagnelo, Pierre Galvagni Silveira e Ricardo Peres produziam e=20 comercializavam equipamentos de alta precis=E3o e aparelhos para = os mercados=20 m=E9dico e odontol=F3gico. Os empreendedores estudaram em diversas = partes do=20 mundo (EUA, Alemanha, Su=ED=E7a e Espanha) o que os permitiu obter = importantes=20 conhecimentos sobre a import=E2ncia do desenvolvimento de novas=20 biotecnologias. Essa exposi=E7=E3o os encorajou a tornarem-se = pioneiros em um=20 pa=EDs sem tradi=E7=E3o no desenvolvimento de produtos de = biotecnologia,=20 enfrentando in=FAmeros desafios, incluindo uma agressiva = competi=E7=E3o=20 multinacional, ambiente de neg=F3cios desfavor=E1vel ao = desenvolvimento de=20 atividades ligadas =E0 biotecnologia e poucos investimentos = focados em=20 projetos de biotecnologia.

A Nano Endoluminal trabalha em=20 coopera=E7=E3o com o Departamento de Engenharia Mec=E2nica e de = Cirurgia=20 Vascular da Universidade Federal de Santa Catarina (UFSC) para = agregar a=20 suas pr=F3teses e introdutores um alto teor cient=EDfico e = tecnol=F3gico. H=E1=20 tr=EAs anos, os produtos s=E3o projetados em conjunto por = engenheiros da=20 empresa e por m=E9dicos da UFSC, depois testados mecanicamente e=20 biologicamente, e em seguida, submetidos a an=E1lise cl=EDnica. A = linha de=20 produtos com padr=E3o mundial da Nano chama-se Sistema = Endovascular Apolo e=20 utiliza cat=E9teres introdutores e componentes de precis=E3o, = todos=20 desenvolvidos e patenteados pela empresa, usados no tratamento de = doen=E7as=20 vasculares. S=E3o empregados na substitui=E7=E3o de art=E9rias = lesionadas como=20 forma de preven=E7=E3o de aneurismas, que =E9 uma dilata=E7=E3o de = um segmento de=20 art=E9ria, similar a um bal=E3o, tornando o seu di=E2metro maior = do que o=20 original. A maioria dos casos acontece na regi=E3o abdominal e, = quando n=E3o=20 tratado, o aneurisma pode romper-se, provocando hemorragia = interna, com=20 risco de morte para o paciente. O Apolo =E9 projetado para o = tratamento de=20 doen=E7as vasculares com t=E9cnicas cir=FArgicas minimamente = invasivas. A=20 endopr=F3tese =E9 feita de n=EDquel tit=E2nio auto-expans=EDvel = que dispensa a=20 expans=E3o da art=E9ria por outros componentes.

Em 1995, = estudantes de=20 base tecnol=F3gica da Universidade Federal de Santa Catarina = (UFSC), em=20 processo de mestrado, resolveram fazer parte do Centro de = Labora=E7=E3o de=20 Tecnologias Avan=E7adas (Celta), a incubadora tecnol=F3gica de = Florian=F3polis.=20 Em 1996, desenvolveram dispositivos e equipamentos de mec=E2nica = de precis=E3o=20 para fins m=E9dico-hospitalar e odontol=F3gico. Buscando um foco = mais=20 espec=EDfico para seus produtos, os s=F3cios da empresa procuraram = pessoas com=20 conhecimento em gest=E3o empresarial e parcerias com m=E9dicos.=20 Especializaram-se no desenvolvimento de uma pr=F3tese de reparo de = aneurisma=20 na aorta. =93Quando se tem um foco, ocorre um salto qualitativo. A = multidisciplinaridade tamb=E9m ajudou muito no processo=94, afirma = Ricardo=20 P=E9res, um dos s=F3cios. Em 1996, a equipe fabricou a primeira = pr=F3tese da=20 Am=E9rica Latina espec=EDfica para aneurisma da aorta abdominal. A = Nano=20 Endoluminal =E9 atualmente uma das 12 empresas no mundo que = fabricam esse=20 tipo de pr=F3tese, com faturamento anual de R$ 4 = milh=F5es.

Fonte:=20
http://www.nano.com.br/produtos.html=20 =
http://www.finep.gov.br/premio/nano.htm
http://www.an.com.br/2001/= jul/14/0ecc.htm=20
http://www.expressao.com.br/finep/premio_finep_venc.htm =
acesso em=20 mar=E7o de=20 = 2002
http://www.endeavor.org.br/br/empreendedores/brasil/nano/default.= htm=20
acesso em janeiro de 2003
Cronologia do Desenvolvimento = Cient=EDfico=20 e Tecnol=F3gico Brasileiro, 1950-200, MDIC, Bras=EDlia, 2002, = p=E1ginas 337=20 =
http://www.iel.org.br/publicacoes/arquivos/revista/junho2005.pdf=20
acesso em julho de 2005
envie seus coment=E1rios para=20 abrantes@inpi.gov.br. Esta p=E1gina n=E3o =E9 uma publica=E7=E3o = oficial da UNICAMP,=20 seu conte=FAdo n=E3o foi examinado e/ou editado por esta = institui=E7=E3o. A=20 responsabilidade por seu conte=FAdo =E9 exclusivamente do=20 autor.

------=_NextPart_000_004A_01C98535.D49F7270 Content-Type: application/octet-stream Content-Transfer-Encoding: base64 Content-Location: http://www.inova.unicamp.br/inventabrasil/seta129.gif R0lGODlhPQBLAPcAAP+1SmO9KWtSEGOtKaWtOpxjKTpaCAj3EDohEDGlGaV7MfelGRn3GTGEENaU Oin3IWN7GWM6EK2cOjo6ACEQAJyEMcWMEBnmISH3IYS9OgjmCHucKTq9ITrmMVpaEFq1KYRjIZxj EK1zGcWEMVJzEIx7KRnOCPelKWOMIRC1ACmcENaMIcWUOiH/ABAQAMWEECH3ABDWEEK9IVqMIXtK GYRaEBCcAO+lQmtCCClaAO+cCBn3CBmEADF7CEo6EIyUIUIpCJyEGb17IRneABnvAIStKUpaCFpC EFKcIa1rAEprEHOEGeacMd6MADqcEIRSACFzAEopCFJSEPelOlLOMWtCEGOcIZStOoxjIZxrGTpK AAj/ADEhCBmtABm9ABm9CKVrKeaUGdaMKSH/EFJ7GVIxEGMxAJycOilCACEIAKVrIaWEGbWEIXu1 MXOUIYSUIULOKUrOKVpKCFqcIXtSGYxjEJxjAL2EMTqMEHuMKSG9GSGUALWUOggAALVzCEKMEHNa EOacQilSAEoxADopAHOtKWNCADq1IXNzGc6MCJSlMYxSITEQAFprGVIxAJScIZycIZRaALVzMUpz EIRzIRnOAIRaACkxAPelSv+1QmtKGZylOpRjKaVrITFaAAjvEAj3CDoZADohAKV7Ie+cGRnvGRn/ ECmECDp7CNaMMWNzGWMxCK2MMa2UKZR7IcWEGc6EIRnWGSnmKXO9OnPOQgDeAAjeAAjvAISlISm9 EGNSCFqlIYRaGYRaKZxjCK1rGa17EMWEKZRzIYyEGRnWAO+cMQitAM6MGd6MEL2cOhkAAMV7AMWE AAjOABDFABDOABDWAEqcGXNKEHtSEIxaABCUAO+lOmtCACFjAOaUCBnvABn/ACl7ADFrCDprCEox EFIxGYyMIUIpAJR7GaVzEKVzGbVzGbV7IcV7GXutMUJjCEJrCN6UKeacKXtCAHtKCBlzAClrAEoh AEopAEpSCFpCCFpCEFK9IVq9KZRjIQD3ABDvACkhADEpACk6ACEAACH/C05FVFNDQVBFMi4wAwEA AAAh/h1HaWZCdWlsZGVyIDAuNSBieSBZdmVzIFBpZ3VldAAh+QQERQH/ACwAAAAAPQBLAAAI/QD7 CBxIsKDBgwgTKlzIsKHDhxAjSpxIsaLFixgzatzIsaPHjyBDivyorKSygSYLnhRosmXKPi5LOqxS oMCTmzdDgAFTM4SdEAV2+rRDdKidUQqSjhq18xfRp2CWKiiwciENpk+JIpW09NcvEaO4ikiSxM5X siKESLojSZKQt+ZEyJVr7u2dUVUVXgVj1KzSUV7BiiVrJ8lYw2rbuoUr1zBdtQryJtyb1Q6Yv15/ jRIyaizRs4gVLxbSmCzZupIiN6Sc9bKCrl43dy5rVkThtKLfkj5sGrdqhnv7/sIce6nn27cTt9Vd ujdkyQhp7KzsumsIzV2fer0tevFs02T9w6aGflA636zDXwO+vhTw0yROk2zObfwXeDsi2v62Or21 UjC/sJcdUfAVJp5inHVmn2lH6UeeQVX0B9V/IQjoHoFOadZdeyLYV5hWDjYU4XnaIcVUhjxFIxyI onHo4VP5jSeihERF9Rpf1xWwgwZ9fabAhrBVJt5+Co1YmWY3+hTCFjuY8ERlRP2omHqAOZXVkA8W FGEB1JmII5M7EOEOlCEk9eNfgNH2FJYzcumfAkKBucMOZpBpppntWXnlj2BkSdCWIUTyVAhL8STn nCRAaced/12IXgl59NmmHYLWuFQBh855ypNZlXlnoQCGQIITtSQQCZhUtRnCE5UWMP1VpnPWwmok tEYSghW45urKLyjM6WszNPi6iJ8DbWnHTUTV5OuyzDbLLI9KMFtLsHOmypCxNwkagrPcdlsLHdEu O62wxAoEaLY1wNqtt1UYwewQ1O5QwEw1HXuTuutyW0sVBrwb7yL0FrDqE/jm6+y+/S4Lr680BLxq wQY3i7C/DAdcB8QRS8svxXM2LGJNGGe8bDMbKxyvx9diKrLIzZSRsK8Lz1nFTCGv/GvJMMc7c0Nl 9GBzxs0c8fKcMe+wM0MUIIDNzwa3PPQORR+9UNJcLM10tyQ/HbVDVHORw9XcOs3xDihPzcXZXDwN 9g5im1xxQxSgfbbaV7ed89tI/st99tdrz2l3rFXgPTUCenvdN9suM9tMBIIrFHfhVff9N9tmNJ5Q 14V3w+0QWnTuOTYphC76KUBooXjlHXNNOOQIaN6sDZCfjcDssw8ChAFQpGACESmgTrZDXKxeOOFW L6tF7MHPHjwQegMBhBldhC61Qj5UgTzxzB4fO+1c+OAD5I6cXcX0CVVfBuurF08E89vTXobwaAMR fvXkI+QDDTSEPzzafJuAfPKzex/4uFAFGtTvIPczoP7kBr+vdeF/ZfBBAL/XPEc4An8HNEgCq4CD QegNfmkzgA9sZ0FHeFB8EkSAAJvnDhxg0CEbxAEOFqg8vZWBgzLMoSNwUMAq/fjghufjQhC5AIQn uNCAMMRgDk+YPLndkAY5jCIP8UeDRRSADmXIovO44IgnuOOFDYnhEmUnNyAUEIpSlOEZq3jF8eFw h14EI0PKoMQoOqKGZ3PEGdOoRirSoQCLcGMOb/JFJIpoEQaUYhVWSMQpojGNa7QiHQQpw5vQQY4L oQkiFWlAwu2QhwXkoyPZGMjxDfIJlzRkyq7ISRpEEId7FCUVQdBGU8rQHajEZJFqUgMj5nCNpnxC DRaxCHe0EAfGbKE7FkGHP9YSh5VMZQa1VJM61ECKVAxmDXiJk24+oSbgXEQNavBIXEozYCDo5TGP aMAq4HKbBeglTuT5TXA8gtOa6rzJMBHpkDIQU50z3KEbx/dOYtLBi8ZE6BOIyVBxjpMOyRSmQUdC 0Ypa9KIYzahGN8rRjno0IQEBACH5BAQKAP8ALAAAAAA9AEsAAAj9APsIHEiwoMGDCBMqXMiwocOH ECNKnEixosWLGDNq3Mixo8ePIEOKHElyoYtFNZ6oVFmjgMsaKWvUcVlnpU2VLnO6DMHTJs+cXBhS oEOHBo6jONwRXepOKdOmTZ9EXUS1Kkw6UqHSgbmIjguhNKpUQXq0Co2zY3GYDUuWrNmlRc8aJSuX TpWGFMSmRbqWrVq0bfnSWCr3bNu6d4XqbbtWbFnDgY+eJSx3L9LJiRfmdewWbVqxfgNPJlrY8mO7 eBd3DvvZbGTJg+NWDtw4NWfBrMu6fl24t+m/YW2bbtx6buTeaEPjzqxw83DWxV/jQA6dNlrhOMyY eawatHTqqv1XM0/oPPt2tXqLu+ONPPxy7Np1d6fRRQl737ffK3bs6Hz6tBEMkYIN91Xm3mPB7TeW I47Ix1kXKXRhw3mH4ZcfguMhVB6DDlZhRgoRdtEFhXRZ+FttCuLAIXqOgSgihB4cV9qBRwkwSSMZ HrRhgyxGAOGLInYjo2d6GaXEKc1kR8QOO+Ro0I7yuQikiNpVaUYEJGRJwiTqiHUEk0wSAYUjEKYQ gUOLrSjWKSFOaQKYcLYg55wmODKICSa4OAgQe4hYBpr88VgGFFMCmQKeiOIJ4qIp8DDIIFMOUkaf XfzZUJoNmqFFoZx2+iIUQEAKpKSUWsoQpo5oYYOnrE4J/cWjkU4qIgKALpjqqq3m2gWoor7oQxkv 0nopfxPgqmurvE75K6XCnipWqpQei2yoypaBa7MLiVXGBNFKy2qyQP6KKxBobtutt56C++Ke4zpU hhbnotspFFz0KiK7IpLbEBenyKsrvUBECkS7+wLBg7/I1hsrwQxxwYXBCKer8KgIMLyQww8fHHGh 9NrbxSAV5+sQxhlv7OrE61or8r4kQ2yyiB1HGnIX+jZMMheMYPPyrijfKyvNI9/ssM4mY9PzxwOv LJTQQxd9NL5dUOAQBUw3zakN2GStNRQ2dO210WgIjOs/U1fNBQJET2m00EC07bbDQEDBA66wikg2 Xgj+mA1EDsaKqIXZCAR+MyOMuD1w13cvXXXeXBQ7KuCCm/1wGRF8hTfgDjsuIRCQM84057+WYbni i2PsuA2cLx551UCU4fromknueeM20Nu53pK+PvXsN/M+wdqqr34zg66LXrbqkjMdOO8YA0G87peX nnzvyzM9yPPGR6/89NQLj/H1jhQPe3PMY1y+7NXfHCr245N3/tnbt2x++s0/ymD42TOEgA/IX399 8Y96VKjmJ7wAgk98DkFAGc6XN/Dhrwx2CqCdHuaD5UUOgvZ7YPsQosAypI56DixeBO33qOKZMFQY PCD0hBI5CrjwhVTjHgG9Rz1llOSGOMyhDnfIwx4J+vCHQAziDwMCACH5BAQKAP8ALAAAAAA9AEsA AAj9APsIHEiwoMGDCBMqXMiwocOHECNKnEixosWLGDNq3Mixo8ePIEOKHEmypMmTKFOqXMmypcuX MGPKnEmzps2bOHMO/GejZ08oXP71oXBqj9CBRG1cEqjsH5enT/8pg2ID20BGe2wYbUiBBg0c7iCI RWHFygYQVZ4gslKAjlccTyCQoAP2CR2zG/KCqJHHSh53YBFBILuIDp0yChGMGvXLjmM7v0YpULD4 l+XFo0QkeQx5sx0RkkKHFrJYhOYkqJP8Ek1HIYVFhZ+4m/2kBuxFNWo8qQ1b9+7fv23f7p3bd/Db iBMqQwC1ORcEzJ1Lnw4d+nTp0JUtvP48Onfq1f2/N2fO8Lt38ePDi/fOkAL381CBMHqv3vxTCu3f N58/AQ39+vohgN9Cy13HHBBc9IfGgpcw4uCD83EHoYPNAaEdgfA9haCCC3bI4CUghjjBiCRO8JSH aDR4yYIWNrTffCuiKOOMMl5yoocTALFiFxM49BSMNAYpZIo3dmjiJdiY0CNXXAzpJI02crigiWjs oaRDLjT55JYdqogilTlgMyBDymjJ5ZYTMBJjh0Ue5eKZXD615oI3TnDhm3A+KSeK8zEIEX9z5inj nh72iQYjEFHAHIUgCooignM2qOWYDRUIFYUTBNpliJxeUiKkHkq6oJsOKWPqqaj+w0imHTKCLeqr sDb1z6ymquqqR009pdOuvPbq66/ABivssMQWa+yxyCar7LLMNuvsszUFBAAh+QQECgD/ACwAAAAA PQBLAAAI/QD7CBxIsKDBgwgTKlzIsKHDhxAjSpxIsaLFixgzatzIsaPHjyBDihxJsqTJkyhTqlzJ sqXLlzBjypxJs6ZKZThz4nShc2dPnS6CCuX5cydPiIscrEjENBG7QIGYsEOGjB0TqciaNmHK7oZX r1fbSW2ylWzXGwUgKsDULoyOtycwyZ3Sjl2GBw8YHDhQ6q0OC1Tw4qUVaIrhE37fAlisQC1bt2/b zXUga0eLHUNMECGypUmYAJYxdzHRosWDw4lPLAbQ+GEqTNYg64grl0HpHTtMdLGRolaTR6Uvp8CG JkVpAlMQ+1W92IEyhy4CYZoim7a14Lg1DyEy5JHty0T9hqOBUrpD8sRTVjNxAV069eVymVi+vCNF jj2li8S4XZ+48RYMnPfWAqsB0M5zDSEgl3JvTYHJCFXgd9sQp/wHgRH/iZYCEZcFyCCBq53AhUNl TNeOX2FMMYIPXFwCRQomxDjEjENMwMV4MZowI3dDlDLFAokVOIUjJE4nW4o0cNEiGkwymUMO2ECh ZJNMQnFKFyn0KKBiqw3pUBVGkuUZE1UoeSOVUEbJBSNUjndllgG0NeAC081Fg0OjTMEHbnyOMUQ3 a16CRg4z6ngKFEAwMsGgp+i43WYDbHbBWxngNoQEAIyC5xQZ3JbCHqTtAIUjQEzwX2kmQPHEE4Ns 2P1CeDZ00UUhrZR2gA6gvWoCH5k6JMQJRZRGRBfYdFEaA1OFEFqoIegQxhbCpnAKNticwgYbtsJh GREx8spGQ8o40A4ct222bYDtHHDbKaVNGsZ8w05b7bXBBZfZrgAwgaBCygghRC2oQpHDfw+cQEC9 2FmADLzSUnuKKzXMF+NlQ6TAAgDWsMcQF0D8NwQ2A1uG7LIpYFlaDCHYcJsJe0ABhQ0hRMBhC3ug EWoKNwBwAwUMUcBihnzuQIQG0VjaxaHYDIFbFZecMgTCLaAgM241F4cbAYuVwZALSt63xx6xympC LUbkcOXRAg/qsqBoVHvK1zacYkbbcTf55B4X/mu9EAUIcDHBk1C6DGozRown66E5MBnlomhC2Y0j l9zHQ5tQ5N2zkn8/GSUUoJqwKBSHEycotUva7TjTOdhgBhBsj3cxGAyx6Dfgm4Nqw+cpgBFBoG1j M6Xp2HRTA92RuLNkDlDwqulCCFRRhhxaBN5AA04I4IgZWjTAByawsOpI9BA8gQMQjiwKpQEl1DCB Ft0sk0Qk5bPvAABCLKSMAmD8YocdSSSBjFyBEIIIzAELa8xFB35Igh/8EIYwJEKBBQADGBRwhykw YRQW8ENiRjCKESxGX/xyABPaQZbIyMVEYTiBg4x0JNmsEBMAmM6WGjSdD+7rINGhS2IkM5e2w6hw QQ1EkQsLJEMGNQgA6cmXxhDiA9jIRgc8RGE7VkidFvoliYsp4hNVk8Qp+EAhJYpNak5YxSkC0YpH XM10VLhFJC5mCoNQiA+w0hSnQGWEYagKE6LCDrIwxTNhKAsTvgKWdrRFTJ65wSAVGceEuKAMZRiE JCcJSUhO0hGVnKQmKVnJSjrCEZscRCfLwLOEKKNvZkolAlCZyla6UkmrjOUrW7nKG9rklrjMpS53 ycte+vKXwAymMIdJzGIa85jIxEhAAAAh+QQECgD/ACwAAAAAPQBLAAAI/QD7CBxIsKDBgwgTKlzI sKHDhxAjSpxIsaLFixgzatzIsaPHjyBDihxJsmRJZShTqlzJsqXLlw+5jIBlzo9NP7BG6IRlwQKs VKl63kxkE5aDo0gdrFhqIZHTRBaQ+nDo42hTp1EDBXLADhkyJmDbsXPapGyTMDcwqVVrrR2TdmF0 yNURBpM1TGWoWn2alQlXr2CZsBtLtkkitGvVBm6no2zjdnbx6nVwFSq7QH67InMANgyyp2UTNWGS Vu2Nt28bN3l84+7UhlUp83WAWalXzkw8gzY8+kbp027bmS1L2vdrhrErZz264jZYr6A/J2KX1vfp sMNHW7N24/jC5LP9t9re/Fx6IuiHrfsOzC77duOTKyeifdQreSboz0v/qp59YbTcdTcZLE9NJ559 nDlgnmjS9WYdau38d1pr3ikE3lP0abYCC1dkUEgh5izjlHQ/ZJDBFXxg1llh7UzIRIUJxcbTU5dZ ZQEcO7SgYws7bCEiMo9skeOObfgn2mhgnTbIgJUhxY4FpeS4w5RTNiPiI1KaYAIROlIBFmGGgRWI kvEVmNQAORKxRw5s5uCBU1vwuAcaaGDD5Q4s5FagmJgt2RAdDgRV4ApHpSIlFJdwwcUllziyjAhp YsMFEBOYoCMDgxXIjphM0OFQAUpZYBNUSLERKRCoKoqDHxzoaP2Coggg0MWlXWmKGWYFfOoATzdF 5cAIk+hIxCBcaEHlDiTUomMKsCJggI5bZIohpyF8mgqBvf5Kw7MtDAEEAsYOqUQKOkrKRazc7tCc mdQ6BMK1RNlkwQiLOKujBqMUAEQOe+ioBbktpEBHFT7IqqO6C66gFa7uXiuqvAUgwMUgUrKxCBCX nOIvNjlugU4Bi/hg6Q4mwLKgBUxoxUS1DYEw001+WFCDxEBYyqMHqGLjLxB3MlBAAQ2kmceTBX6l lQMsM7TIy73SIDEXE3DJIxFEDKkFIzncSSWPKYxCWHhbJb3QIrz2WsXTXORgwpAH76CFonbuKKcB QqxQIKlH/outENkPy3u2olwwggYUpxR+CjY5MAJ4DoafAsUENMBid4FZhe0Q3zBbQAfagS86wQSJ dt45o4wOUkUNkt/t61Y1XE5T5qPECvjsotM+KRBl0LBICKlTnlTrDZFdU68jbG474DgQO3usCNCx yCJ1E+g7UsAzVAAsMPsRAisKVEE7qkDg4E4kjixfxvOLXA/LKCGIgJUQoygwggNgNKSMELCMc+yU RBQwcPKOqNqUImGTJwBhEI7oggCn9IFRVO0TTgkHldKxK2Uw5H6wsELbpsSjNfziCU8gwZB2sASb mOMJ7tAA23gUjhDkCIJ+iNOUfuAANlhwIRhUgo6GwCab/QWAJnbQAI9yFAN5iUCGajJcCGiQIw0s gwNUqoUCanhDhShjFDXg1hAmwAUbTI0mkchRCri0BZugQ4YmyAHpJlCFALZAA5Di0RDoMEUbNoQG g+AWEVBFrh3EwBx2EMCUuuDFHYjAD3HcwSlmBwQ6RIBLtWjG1JxXxyoqRFFaOFjVeGQDV4QAB7Pa ARS4hQQ/hJFHE2BerKrAsxZscgd/eB4YqNgQRaWLgyRjnyOGwKNBACFHtbDDKfcYqzIgwAc0aOWO dgCC503xDpZMiC1dlQNsrG0HA6jBL3mkJSm5wx1SqgINqrCIMoizlTvY5BBkmQpo1pIL3HrVJXIA zCr9QEFuy9SFG3fgvOeZkw6tJELcdgCBAszPnQzB5JSYlTZvjmwIWuJlCxowiFnxqAAKKEDuksml V52iYz9xAEIXolCSoUqiQ3AjEXJAJyjkyFvGOlgb0jEDCHA0YIri5Q4CAJSRXhKeVBKgK7FhgBy9 CgiMCChSP4rPHdyUWViT0gjaGU2ElDSoKcDGIFIwJSjMjqtEeBsXsDGE/TWAZzvogqIYwdUdfCAV I6DABRW1rzaxFA0TGMQE2GQ7NnFRcWiwaw5YGVguBm6eOVDHVBFwQYkp7ntlUN6k0PbYx9ZOUWUA nGUfWwWdMBaHx+NC7rynqEGUM7TLYx4rJ0Y7BP0AYWkj+KwVj+eDRdDBB4pyRA0WQQNGAsF2zBMt 7mjgiPIpygd0cNkIgMAQF3BuEDjoZxnC94Tdhiy37sCB7cowMAQQtwY1QGH5gKA7gy6XIRT4nxm+ WV0FSMK2TwjBKOAXgm+6A4TfxIEjcEBO9AkBvDWwgwjsAEL03eG8C6HAIsILQhAaVAELfoI5cjKC AjT4CUm48BPQl77/gjcJNiEw+iSBYIUomMENHkWFIywCNuhkFBcWQYYbzGEwjADAdrCJCDb8PBIz N8ERBqEdkuBiCIfXHC4egRBiXBMC8/hno7hDCMCb4wKCrAAk5gJDECCJUchYBIeksBCEIAIkkOuE DYdMwiGHJ2NJKODAZxaCOQ5pQiXrZARaXggClDxnME94J3I28wjYUBMw+8EchTbHne/MhtfBbNGw yLNC9iwERPqZwrAIdJLZoGM/W1rRix60o28CaUlLswB10PDPfhbeGoTgZyHQsKpXDesQxPrCtC6A qRPykl77+tcrMYmwh03sYhv72MhOtrKXbZGAAAAh+QQECgD/ACwAAAAAPQBLAAAI/QD7CBxIsKDB gwgTKlzIsKHDhxAjSpxIsaLFixgzatzIsaPHjyBDihxJkqGykyhTqlzJUpmLlzBPulAJ00VDLmAK hLDDk+eoUQp+/hoq4ueonnaS/EqSRISkp0+FSBXCtKoQqAgYUqhSxpFXr2WqiO3qVWyVr2jLml1r Ni0OsxS0ck3ryCzZumPpqmVrFkfatXEXupj7N+/eu4X5ipWTuEpghVsRH/5qVy9exWcbP044WPLl u5X1hlWsFzDDznSPGP5s+TJbvarFbkaIOq3qI6BX01V8xDLc01wl3yY7mnBpvr3pFp99sLPksLjB io1uubjZ5GmL2xQc3HYV6qP9y3imzNcz2+0KB1P/Cp349PHS2Zpfi55zd7RhxUuPwN+MZf5VRBAa Wuedhttz90XQBRE7NGiCDWh1w2CDRHjw3XzT1ZdQGetJp58cRBAxxIhDtJDCVynsIOKIDO6hX2Nl OCQegvqlkMIep+R4yh5GfGVCFzrmmMIQQGDIlYwvshdcN0FCAUWOX+WgIxTY6NhFD0bG2NCM2XEF hI7YAAEEI0AM4hUQT56SAxAIoJmjDVkiqZyXOUIBBBdAGGCAEUaImSM2XHCBQJt1RrCbXXJmdwSh p0wQqBYNttCCFhPkiEagg36Zo6EwJopfGVxIecqdeNpgqg1AiBqooG2myf0pgYhu6VkZCIT65p2a 5phqjvBgyugpr5I3lqfs1YpGjiakICYQWugqqrKDIlDpKVAEu9eRsqI1CJu1atqFiXpWOeqxpwzZ zSBQAHkKNnFm+9UgmOKZpgmStjCErpruUWKDOALbLkOSkVornjraYKO6pOa4x8E5GuDbe55uG2+g bgap66oWr9tabOI5xAVZ8K466KrM5mByDhOMuWqoJmNjQJKK4saFxyCvPPLKOOccrQ9cinaEzDR7 FbKvORct8qA8w/wp0Dd1ZYSNUHdD6qqD6KlF0Wia8KM6EZixp3/baqGOARGASjMQQ+zQgtqSErmy CRROHagBRNQrKZ93/ntlQ4M7KGF2Qwj4AITBKXSxhw1pQ0HyHox3AeiqkBIBtY1aDMK4md08yDjT DAXORZpBdmECyUHaQHIXKWTs5yleDdGvEeLNfJMPn+eIp7g8QB46qc3WefKamg5i458zyq5VoGka YIMJOeawapVOntLF1bZSyy3paqZO7Yx/H1/7HmtrH7KmOTR7OBeMPGlntANr+mOO3He/EAXI59iF ulrjWqe4KTCSvpq+ap/C3hQ/482vfkHaA9yuJiUbrA1HXRjE/3hwp2hRzGI44l5WGkK/2jUKCPy7 2pMMpi4b8OB/KYAC+7o1JYVxz4AKUYa8bCemJ+0hZRm71Qh3YIJu/RihcgT74JRmxByEyNBNexDR DhDWO2y0TEcgRJbdRqepO4nqFIMQj4YSckQbMsh11oPe1NIUROmRSFlVnOG6tOiQLiqsX3YaxJ9W Ji5HcSFjdkojF8jFrjJs0YiBwoaTBrkmPJnMjoGagMlINkgnAc9kpGJEDpzIxobIMFD+8x+bjMZJ PIlJUEYDQtL82EajDayTRbMgJ7n3x4NcUmeoNOXNjMbKUqYylqmcZc6yOKNWGuSVODslLo8mzJWV qZaWNOUwg6lLig3imcg0iTKXScyclQmavbQlBbZJAUaszH8546Y4vWk0+i3LB+j0gS9Lws52uvOd 8IynPOdJz3oG2vOe9wwIACH5BAQKAP8ALAAAAAA9AEsAAAj9APsIHEiwoMGDCBMqXMiwocOHECNK nEixosWLGDNq3Mixo8ePIEOKHEmypMmTKFOqXMmypcuXMGPKnEnTI4VFi2rQeeKu55MaOHPWePIT 6CKiSIcSrVGgaVMQNaIiReqUi0IEI9iY88PVjzlYI8LCgmXOnAWwY7d27WohlYO3DlKNhWVhbSK3 bxEopFCliqO/f3H0HYyjMGEcgHGYcSR4sGPCZiJHdkxBoTIumDNnRqC5s2fNCEJz/vwZgTLLoz2n Jk1a9GrWmE0vZP0admfRtjdbnU07d+nQuXEzpF3bt+vgnIf39n0bt+3QlRdSWI6ZEZDOjDIzyq75 +nMu0f33Ls9+CY3589onnF9/qXVs8Aynu+eifj16Lozq2zffXvV7Fwxd5h4Q5e2HxiXbFWhgf7e9 d9pCApaGmYHnZUchfxJywdmDvGV4IRoWXsggaMI1tNyHIVI44mYlKufhhSku+BtwDp0IIxcfIjif Q/Jt56N1XBB4o4L7TeBjdUAkyVl40mVm3yX9EbkedxROgCOI+BVoJXwNyXflk/jRxx4/2TFC4Xbm JXheDpgxaZmT+43IHndf2ofmgWsOQcR1HEII55NlSokgI1JWaOZ62KRAxJ5c9PnmhAb+uV6WC8aI Rg45oLGlowpJOimhlRaqKaRPApHcQ56iJ6p5XIjabR+FGu5WI6n2TbCqpq5CWmAOe0CBxqk84ger ln+KGeeEg5aHzSm/utkkEAYaWaB3kOKn33mv6ghqDlog4Kx4P4b7Y3UU/FiuuGVuR8G6435b07vw xivvvPTWa++9+Oar77789uvvvwAHLDBFAQEAIfkEBAoA/wAsAAAAAD0ASwAACP0A+wgcSLCgwYMI EypcyLChw4cQI0qcSLGixYsYM2rcyLGjx48gQ4ocSbKkyZMoU6pcybKly5cwY8qcSbOmzZs4c0pU pgynMgpQhpj4t9KHj0FAkgIZVAbBhD1DdrSYuoeL0qtlsiJAUGYQl69gy0DZs4foQx83mLRrwtZC mwdT48rdQbeuVLktCLQjgpcJ3BZcIFbBxCSMBRlb7uJdzFjulb19/0KBCIaALLqNM2vOAFluET1U IXZLQUSx5tNyH7DjK3dDgqlDejZU5gENGiikTaPOrKGGCbwmPEwlIpshgtq2bWODqnu33N6/5W6p cjdwQwRGkmtHs9wE67h2/cPTJUKeCA1sXVKkMDFkSJX1Q9A4pMDl0vbt6KO22FFaPP/y5NWgBRSn 7NGFCSksYpsNAjhEwyJAcHFfcjlgc8qB3vn3H4AhDEKggeotYt8edMzmACap1PCEI/VtV2GB6fUn HoDkhQDEh+klOAEaNlRQXEIUBILJFGEkIsITZgCxo20vgkjEFlAmVheNRIBRBY4pdBFCdl2wQgFD ZWCCiTVh6GCmDuYUsMggO1oIYgxhsIWMBT/8UAQBeOY5BTtsWOFEAnog4UcV6ClQBkOLDNnOmWae gEkgChTQFYEHtlOmmQuciQkAnHI6xacnMKpDEzeICQJDCigqajtiDsn9hDl2uNMIH1MscGkYl07R aaef1iqqrgAowNAIil5qJqtifoprGFOIieuZl56wq6egiiotAA78aJALQk5hKaPIDklkGO00i4mt 0DY6LQC9EsnoAgBgcoMLCvmQ7KLgtqpsGCeY+6yZt26665D9ZsqomAD4oBACI4xwhxB+iCCxCOY0 PAIsQpijMSwNaxyxH+b4IbLFJMNicsgij9ywwgm5kJUjg8Qsc1Y0wzyIIzTLrHPMNPdchiM260wz Agq5cNRVSRllVMxJ4fwz0lc5ndXSTCM9iNLWXcTTP4x0TQEFZgn0U9dda6vT2WinrfbabLft9ttw xy333HTXbffdeAbnrTdNAQEAIfkEBAoA/wAsAAAAAD0ASwAACP0A+wgcSLCgwYMIEypcyLChw4cQ I0qcSLGixYsYM2rcyLGjx48gQ4ocSbIkSR8gajxZubKAywIhVNZxGYLlSpVPQhQAo+ClzposQygA A6YAF4cFHKyw4MdPokQrHEhlZ8HCCnZM2CF7mgjZ1kTsboi9EYhJu6xcm4QZe8MH0lSwmDqFKlVp 1at2uXp9GnZs2bPs0q4lG8htwwJw5TqNKnWp1cYWuFZ96iCQ2EBlsQZ+2gQZk8+FHYJI3NQprLqO 8S6VHDlRZcyYs6Llmugzk9ANR8NKVDpRKtR3pSJrnYj4a9gOsIahXRu0YYa6FdOFbJVd3qfGYWNO Ppsr1tvP/RdG783YbnWlzLne1p48OXPbuKGPgGWutJ/yqa2zSV/8eNn2mz2FTF3xiUdaaadRB8sK DGjAnwX+MQEgbciwY12BCi0yn31+/OZAYhbAwsAOWyyTHoTsWejAV9hVWFl4Gc6nmB8JJobOATu0 sINTJkqmXSBToUfhhTAmpCF99tUIixCf5KhjEMvMhZ1/yVm3AnMDvujQkfUhKFUqbDjZwpgDNEUb itsldxWLT61wRQZXILDlfF02leAdYo7ZwidmSlZXXeyssFQQG8SwxRoVOClnQ0dyOIIDeOop6RbD bGCppXAwoOmmcKwQwA5iblCFonMiieAZeUoKqqSs6rn9BSwDsApBBEToCESpdZrzQaqt9srqFkIo wSoJZdS6w62HbVjaLrz66mwLGtRgwLA05LhDBA0pIwmdTSHR7LO+1kLHtJKSsIi1i2S7LSxNcfAt uL3WQgO5epJQrY40qEtnDO/C26q49I5pr7X5MqTtCEyC2q+/egI87Lk6pmvwtlsovDDDLThc7r07 FLyQtkRYrDDGzmpcL8cSf6xAFyKvSnK881JLcLYFAHFKyyO/3PC4MuPrUBlc2IyzxTrLG3ALA0fs EBdMM3Lz0C5jbHTPHS/NNBdOQ020v1NvjK7VV2et9cVjdn3yzA1dHfbTY+cM89FJV5222k2z3fa3 tf6UATfHHi9UBgJ0B2333VvXMgjco/rcEB00BM704AoPccrklO9hwuWYd+EIvaA2grJDdCxSReCA Q75DF45fMsHqqw8yiM2nWG6CBzSELPfHodfgiONcQI4N73RHMDoXE1xyCRpmuAOF5SkrhEABi9Tg zu5qAy60xRPwjsD221cBdNOMMGIGDsSjsYgyDCEwAhgq4TBI9VezTQQQ2nOPQBXDq+0IDvSXcX76 I5BETdzhDvoxDXB1A5UJgEC9oF1tezSgAQJo8D39ka8KoUPfQtR3ByEkgYDTO6DastYFOjzBHTjA AQpVSIcqiA6D+aPe/hyxiEUUQIPOG0EHRWCHE/26jwvbG+EpuqESEJ7QHU+oYQ0LcAcw0KAKNAgh Dp5QAyXiMCEcFII5eEjAJ/wNgWGLAE66eMIkKrEAIxhFDdZ4RDskwYz/2+AdOrhFHq6EDn+jGxDA IIQQ2OGPgHyCS3qyLSGssYjusIMI4HhFhCBgjlpMggjeaMbGXQ0INbgDG+oogk52kg0jCGUomzgK oDwhCW+0YvruIAkhTHKSSfiFEqtAv0HgYBQj2KQndwlKUYZSCMDcoiR5CL0brrKVsESlCIpSw9Hh oAZCQNgueenLXwZzl+ZAmAIaeZBHIrOTqDSHEBRQQ+lRUQg7HOYuo1lNYGoRm6GUBDcN4k1Xz4JT kugkZw1MGAJ0ulKZ66xmB4Hph4COYJvHfCcsRRDNOxRgn09g6BwXalBfupOTDNXhKOZZkHreE59z lMQo6GAHcaYToJNkpygHak9PNnSjCf2oRFnZxySYVBLJHGYSVDrKiwb0DjCV4zdRCVKablGcyCSq TnmqQ5+6NJdBdZ5RkznTVh5VCJLAKVE9aVNfQvKawzRHB6OaEBeU4ayuA4JaB+GDs5bBB65jK1pf B4S41tWteB1EGdIa17MWySSADaxgB0vYwhr2sIhNLEQCAgA7 ------=_NextPart_000_004A_01C98535.D49F7270 Content-Type: application/octet-stream Content-Transfer-Encoding: base64 Content-Location: http://www.inova.unicamp.br/inventabrasil/barra.gif R0lGODdhOAILAPcAAP///+/v7+fn597e3tbW1s7OzsbGxr29vbW1ta2traWlpZycnJSUlIyMjISE hHt7e3Nzc2tra2NjY1paWlJSUkpKSgAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAACH5BAAAAAAALAAAAAA4AgsA QAj/AAEIBBBAwICDCBMqXMiwocOHECNKnEixosWLGDNq3Mixo8ePIEOKHEmypEgCBRAscKCAwYMI EibInEmzps2bOHPq3Mmzp8+fQIMKHUq0qNGjSJMqXcq0qdOnUKNSoBBAoIEECrJq3cq1q9evYMOK HUu2rNmzaNOqXcu2rdu3cOPKnUu3rt27dxvEHCjQoMm/gAMLHky4sOHDiBMrXoyQwAEFDiIUKPB4 gQLLmDFf3pyZs+cFmkNfFh2aNGfTnVGjHv35dOvUr1eDfp11NW3Lt2vTzs3btu/dv033jn1btvHi yFUnJ668OfPnoocLD95aenXq0bF7tg66wQQKL2NO/x1Pvrz58+jTq1/Pvr379/Djy59Pv779+/jz 69/Pv7///wAGSB5fBTFm4IEIJqjgggw26OBhKKnkAF8EGGDAARhmqOGGHHbo4YcghijiiCSWaOKJ KKao4oostujiizDGKOOMNNZoo4wIKNAATH5hhdePQAYp5JBEFmnkkUgmqeSSXS3g3QRXOdnAlA40 UKWVWFapJZVZdtnllleC6aWYW345pplhosklmWuaqWaabL7JppZzWlmnA3fmKeeec+rZJ59o1vlm m2IOaqigiKp5qKKJxtnol34GCiiZkVI6KaSXghkplRBM1cADEoj3nYCklmrqqaimquqqrLbq6qun VgNAQUAAOw== ------=_NextPart_000_004A_01C98535.D49F7270 Content-Type: application/octet-stream Content-Transfer-Encoding: base64 Content-Location: http://www.inova.unicamp.br/inventabrasil/nanoend.gif R0lGODlhXwAAAcT/AAAAAMDAwICNlWZzeVRXT4KEeautoPDz2/L03ba3q6Gik8zNu8HCtPP02urr 0+/w2O3u1t/fxubmztbWwfPy1peWhsW/jfHji+Xcp3NuXO3HZKCNXe7KdTAsKQAAAAAAACH5BAEA AAEALAAAAABfAAABQAX/YCCOZGmeaKqubOu+bBMRRFEICcNMkQQ1sKBwmGo8KoSBoKBoJha9B3FK DTYWNJuiojDsJA5gdUw+QRTJW1PxjJbfb9lm05k3DU+wFM6fNiQGXQZ4CQldXz99iisIAWIBEAyF OToLDAuBbRJ7i50ljxQSk5SXpRUVBgsTPp6tJkaAbIU6CYFMT6ucrrsBDxIFCXMVGxlauJu8nkBA DgQdGR3PGc4Z0AQKGwoTDg+PyVTLAQwdBpAZDBUdbEhzG1xceNUL6hP1XBAP3d8sB84MEQtqGaiw 5BkNd01odCjARQCSDkqcVSiQ5FI9HfV6cNtH4oEDCRMkHZpVC0cCAQMG/xAqVUqVQAFeDBRjyEYV GG8cRyyD4AAgA1sEvMBUoKQWpQVsBOAYkGEAEzxQNuHMqaJRAyMQJACcVSCmJIsLJnI5lohqmQP5 IlzQoIGDWw4X4l6w0MUmBLOKPnJguxeu3LmovjjAC+dq1rVt+/61EHhVWcJVln1EnNhvXMZeHE+F bEUEhcNsKy9u7GMzZyGwEL+1DDjzzdNkQLdNPNr1XdhjfGEI/bY2ItO4X4TazdetXA6Yfwen4jEC b+NxkTeOsHH5EAQNevbtHT05jzDWiTTIuld09AuoEnzXFf4FrPKr/45VVb19kKzEtx/f4pq9/Ra+ OFecZdLZBhxn2FHkVP8B1HGTz39VPGBAGgNsUZNmEA7h0TROcXHIdwdmmMIDCSTh1Bqa6CMiDNkp qEUX6lHn34oqGGGIIIVkAkV9NKZg1QOYDDILLajY1SMKVwWAnQOT6HDJAlAipcAO1IVIY3YTDPLV JZMwlAMPjx35igMTZFBBMRPVQNMlboipkxGO9ELBOAZFk8EhOx7gZpwiTNABARBkUCIBCUyjQQbu MGTNDmcy4ECYwV11VQEdSPCZBAtkAAABG3hhBw1mCnIHNJuWWIEllvyZgINWtsJTljkYFSsDSqUk AC1O5hollIMYcGsEDNgwFpU85vRAVj41IcCUksCEUoWE5IAqrUp5oUD/UwxBhWF4PGkVEB61LquE AijFlABTNH0po5sHfDQBcbQdd4ETUc3oJk/wcicXvW3uqZNuz7GGXk3r+ivCAVdJkG9bfw2cosGO AAHwgA3P1y/EE89G4LwEIwOxCNkJqLG8/Bbrr0f56RuXxSbveQAEEcAH3QVusWzvkdiR99xfHFgs 1cc5S6Cayls8DDEFjkwcn1yMHXOzmErry8FABn4Mck+8MdxdYFBA6u94MQd83ljrWd2L0vHGxa/H 4emJRDEDTCBFqwZnN0AaAmQEhtdmz3l3ARXCaBfdPTZAARpKMCF4D3x/DIGCDt3BZssfy3B3h5Kv Ap7ZHTFAw4mopLIt/+eeTbggfykS3iMESJy+OOUQj0dRBkvcESPshZNgODq2G+LFjk+LKQYEvvY6 CcHcqP6fVQhkKeSsOhbMOQRBDunkh2Do2TeTTVZiCTpkKR+pGAj40v2TqL4ePI0ewTrk9wk8pVzl EDhvfZd15cK5Lwzc2asBFUpXvTg3HglkYAFzsMAGbCC/BbzGYLeRmAO6MIw5oOl30vvaI/wUDWd0 AADReEYqIoCPK4FMDEk6Qh2qsRA6VEMBiiLHAgqQgW3gIxzhWYYYHkABGvTkHAQQ1ITmUAB3nOJa iCJAPTJVgdKIzxUNQAB2AtBDAgTAAQ44UwTMxAALIEoYnUrPDqaRgP8/1WMCWKgAN8ryRD5kiQAV oAAFHIAUJACAGJzKBhqysAZydZAAm9pjQTrwD41sjipzIkSvmsAFWtmKEoY44hYoBYwdoBElT4CS 7Yi1vkVkx1uyGkVJTjKuQnzPe2jERCFUEpCZzGd0xoJZSAxhEloICSXLmsT3ovQTpcSqGgJkXBvj ALJubaULXWnWQJIQLfQFAibBciVUZDRMZYDNJ4Mo17KIUkttsgGYp8Dgz+yTJGSFhBBKKN5JShEI NLFBMJ20TnNmaQhSLAADGIiL/DRXzdMUUGR8aVjTbBLPDOGHL1qTT2aqZLUChiZtcBko4yBmFdmk TS6N3FE//RkymQn/7A5GgtgByie0h85sZVPSaOxEoB2K+SYXGyXMThSG0JM6DER1u1rYiiPQCuTg YhCkqUuN00ic0m+nEAUMWcyWMe74hWsZ/JrO+qIBeQ1Uf1Zrqk2hesi66cWl+7oQ2yCGL5diIKLp 6VpMOfOyko5sbPkb654agBas8fQ4jGGDUWMXNbjkEy78GeDHDjBHCXiUZ2QD6lwPWhm/oPVLpfka FQPQLrWAFS4Zjepcm7Mdt+TzMqRpHNSEKrV5+ZSgZgPbYbeGwa4aTKuONW1/1goZ1e4Mrm3AXY/a JzaaFUgwtIUMzPIFHcB2rKDL4+xtaTYwYgUXL/kASW9phpnBkS61/wFwEYO6IanrliBQJmKQBPam Iu/+gUMMgRIP9PBc3Ezgc9mSljDNOyca1A5G87uuhOyruHfCMrVH4C+KBHvdFqVBcdOUa2odcDfa ITi3yGWfAZMQuQ8x1LxlorCHquZdIE3jBh6CrGhf6zkC3BcP+SXdfk3cX6e19zQP2OOLpqlbf01Q wOrzLkuRwGLUAU/H2WnduHJsXgfQUE2S+7F5EUgMBVLtdhFujzd2Bw9CEFm/N3pe9GosPAf8bxRx HbGbZGC8lTTBuWazygHsZ73oscJqalbl+RgQVwdoj6k/mTMmUqrZHjWCBBAIJUskcVrHVO5qTTpK KSws5v88gqSjcP8SlHRQsihHSgQIOEAErIe+S9BrG5a+NBUxFelJB2Sfb/5Y+4Qk6RwYIFspHrMj yPQ8J+GPw5KFRARqzaVaPAW1K+2FKEwyCRxM5J2KPRkdTQyTQNQgVEZrKB3PQQwLCqu1L4ZuBArA ZAUuUH5RyLZZPNKpBBJjTVG5zWaTJoJjoaMdfzoilBvaCxGMA4TOAOEzplS2lQIhAh38kwc9WA0D JNuE7ZaIMzjFwgVCY0qNKmGGdFiCB1hgIcGgATby+G0FREM9W3CUFH4gbnAkqbsImAEBJIANSm2g f4gyk1jQMA1GvTwC+Sg5c+KUpHRsYyIXB0YZiZiNp0wI5he506P/youbcPgpA1fEwhYJoINpgJE/ Xrh4/wi5xGLgg+mckWMAoGGp8Vp9AwFRIDaIkYGBsGEQHv9TNeqBgTIBwyPdxQtdDzAPBoQCU0SR xgDOlA0OdaGPlAohQ+DIBWgUgAE+eMCdzdJgOQKLkdAgRh2ywWMTH7ECA/jT3ToogIXQcAeq6ME4 jQVAPCxyC2eCRjqdHY3Bk4tSjE/vufI26SFpLtRk4J8t14BiABZlS7ly0hIn7SsB8ErebFIwL8bT E6NIgiQn8dW4UGwJaXnPEuDCAVJk7t8+84InW3neKHy1AFyuhCW7aj+1nkDDa3NS5yo4FkgCQi4v 0OIktWArK7FL/5OGA5g0QzNhYcmjd/qHTUTxO6P0LMRmaryifalQf/tkfsbiLpawBSpxfTBhK7KA PpagFCaBLvDASU1nBD2BRtlUISVBFOn0PifhS9dCQ8OyV4TBHtGFTYEALeLiS6bUbANAZ+AkVq41 PhwoENy0LIAjC9VibK7UMY1WWwUEEj8BLsy0LCbYLDcYX8CDf2SANFjhLT/xE12hJbeSSkQBa+sh hmRwAHpiBO2yf65WAdf3BJYEQ1AlfSvyTwtgAZ0lMKewVBjTEyljU5/mh7tVWUMjMNVlaCJ1KZRh U+ixUEl4L0JlHmGVW3DoCiizWp1IUJ+oDB8xXaBlGxQ1a261NP+peAkPtCcV5VZvBVrIU4qecACb qBjyIVbqpkEwI4pohWtzZVt3xTRcE4suAwvERYg1oQexkzBntVxqc1xm81UI1VM/FVl180nlwYmt QSVV6GgFBC9JlVhcRk6SAVAzY1zRJmuOoDO1OIwhtSdIQ0UWdVEYUFQXdogL44yTA3zBoVzHqDan dXBHAjaPGFvewY0Ys4sJxQH7iIm42Al9BZBKFjstdYwRZY3004rtqFSIYDYwoxoX1ZCZCDUO0Izy klb9WDdZgYoOQ2B14wsmCYmkAXZ7Alt4FVoVuQjNgYp5NW+DFYw781kziZCFQwERQFwNwx+xNmbD YVKs0ZDjSE7jdWVYNXUBSMkyP7kIkwFW1fiOr7WLJ2WVkzdmLCgyvfFZ3qGBNFI+JXlZScmIcQkJ pKWIhbZ6/kJSO6UykaiMCekIS6KVotGV03SV1gEESNNWiUgyHilZzDhdBWJduWaMpcVVX9kH3iiW dSmQA2mWBNI0X6CTY7aSVNmTC6WY5GSUHDmUKlU5sPVXAyM6fPk1oqmaUXmaSHWWmZWSYjKXQ5WU 6WhQuYmMtgmaTbeRJ5ke/NRQwqkyPYM8ygkbF6maNGkwlUWZVrmZfKCQdHlmGflaPOlbEmWXYkIB hkNZSrIIIQAAOw== ------=_NextPart_000_004A_01C98535.D49F7270 Content-Type: application/octet-stream Content-Transfer-Encoding: base64 Content-Location: http://www.inova.unicamp.br/inventabrasil/nanoend2.gif R0lGODlhWQC+APcAAAQEBA4jICItMiJCPCxMTixhYUBrYUB2akCAdEqKfUqVkFSfkF52al6ponKf kHK0onyVkHy0rJC0opDIvq6+rK7TvsLTvszd0eDn0evy0evy2gAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAP///yH5BAEAAP8ALAAAAABZAL4A QAj/AP8JHEiwoMGDCBMqXMiwocOHECNKnNhQggIBADIaaLAgwYEAAAYYEAAyQIEDBQwkWJmgowIF LRsUCBDAwIMKFCVaaKDggIEFPFki8FgSQEkCGZMqBanU6EkDBxAgWABzKMyXCaQWICCgQE6BHBcs OHCgY4IGaBUQUFu0qdulcN/KFcDyZVShWSE0nBCWp4GpCtI+4Gig7VsCDyYkkCuXKeO1MFdWTYC1 sgKcBi08GDx46oMIESaA/hwBYwEEBQYUpWnUKIGTmxFENczUsYADCqgu2NxXLNrdDXijHa7ggcEK wdHGDI0ggACSAQYUSAl164DrBLIT+Dk8rUoFI2kK/1BdYPNgsb6Fdw9+fnDy9Q4QRlBwEgEB5wOe v65eQLLslllJZVVuHCXwl300JRgAAWLhthtMPIlVnHtA+YYeVbm9pMAEDEEQAVfXjXeaVCqthMBf ZMl2Im5nLaDVSVwpGJ19W0UVWVYZDsUSgAL2iIAFFFnAwGkKyGbAdNttld10qZ0WwUgkbaeaUQkK kN2RBvCXJVk+pWQklkfq9VVFB1ypJAEDEFAmdGlCp2CSZ6KZXZqvTccAkGPmqeeefCJkgQOUhQXe nD8FStoC0yGQnHubRcCbZC85wGGfCDmgY25SAZjfgkN9hp6GF6LX3W67PeAilzFJSJVkdWE2kQRR af81Z37jPWcrSW5WieuuzxGZ1QGUrcTbS2GFGpyjKUUVFVQJNBQZailpt6VPPh0JU4nA9piibAfQ ShKta3mEm1UV3pipVMpCRSJ1WxlAwUGwIlAkVNRyqa6PK51U4FAqimtfrQBfdxpZO6LLJbf0Homk dksyzIBBE+S2wEj2UldvsDoKFZWEsWbF1XP5YcdvtdNmaTKSKS0sp5zYXTfAwwdxNSt2TA6c5cBc prwkdVmO5zLIKmFJltA8K8zwa9q17LLLriYkQZo1U7cfvVxWbfWRH0MHclkonVQmAR4VfXOdR2M3 J8wUSQDV2upWe+Jfvxqws2oJGmXli1kaCe2WN4//zWR2aFNqEAVDTpvarbiWhF8BL9lXNbr0qiiB 4JRXbvnlmGc+OAQQRHnifa3dxoADEkyAp+YOQTAVXh8lhRtIAigwQEYm5VeixBi+pCqB9GFkUgLv 9lmBbrJp2FPePjnWWm2MxcUYXSslbLCApzv0m1kRoCXcAwlMqXxrGQlQWFOOfe8W860xeNVYGOuI QHwJTUAhhO5xlP1L97GWVPmnJfYkY8ozTPimUqEKXe8362lAApomEL6Y5yWO4sx8xGOSr9FKQc+h iUh60pMBtAQ1MnIOAkzlGwQOp34JTCFPDiK/wSRgMKqxlXO8lilxUeZGN8zNeWTjolwtiCoNAA1x /3aTvfWoR4UcmdRBKJA9KNlKOlSTl5FuqEBgrc83RfKI1nA1rQPwRGJYIVVgPkUZC6mqegupAMhc Bix77admRvNMl1Lmw5rILUs9Gcq2lJUuEnGLLPDbkwOYlCasoUw6XjyAm15TR5UYLFt3aQlowMOz yaEuIRaAQOEKoJ8YUdBKsxoPARhgyUt+pQITYMBraJUm3EQGh5RxQAQYaMqCZE8sOMpNAkBUos8U 6z3d4Z66ArMeoJjqhsFyABq/YoHGCS1F3UJcBmUUsBFljEClCgo2L5SVFz7gXD0q5V70+JSG1UlJ 3lqLim42nRCB7Iki6RFM0COc3GUIVN8sWkoCZ/8QrNhnKNOJHGUG5CJmGcgAjXNfzrzlHP0UiUVl jMxdVPQlhaGsZq8JHkHmY6IjoYRvAlWovIh5otP4y4kAA5ln/tivL5Hsb3OaWdL4KRBLRQlrS+pb rFQEk3St7VpZApE702Qke7HzqBZVGcPSFCKmOQ2UdKqTwkw2tKGVbGxZW+N1pFjSqmGNnWRDWtKW 5jKaLmRI50yZyaIYoIOtiJM+VFdApTawqCVVrAwrAC1PyQC2gSmgRwqZDDE4niMhIAKcjJyXplMx JomzlpmRgCq9dSsCFDWWEKDAMiHL2c569rOgDa1oQZtJBmgINYoEgPhGEj40lQVT3NplVzT6Wc3/ 7Kh1qt1N6zyIFKcoSSqB6WbuOFKkGP5EiZh7AFQwVDCMZARNRkktlZYSHTUB5YYSIlaRdAnC6IiJ Tzv04qp2ioDZga953zPfUvpDlUyhRI/L+u5EIoAeqbjIQsli7f5o17z+MmYAdvFjVdD1WIZcCFhh 4cwD1GIA/oKvfOrtb/ncUoD79rQuAQqkQjgDFPsChSOcac55HZzb0vi3MXL5CQ4zZiLKFHggOxGV Rwz4G+7lDy61WUsFPkQ+/5rPJGAkrm50R0YNE6R+C07VWT4jmgaQRL/8ZcoATrQAR3VvwuiVTmAI pD3zcCSYo1JABI5zrM0kQFKNYnJznOMTNNXt/82Le6GLXjKT5T34J586oZffg8L15AZi7HGRcoL4 IeeIR2pZE0+tLEtM7nlwLHRLkAe/fL0PsweY2kOiWA4ynwgASjSIbah+sMSvFW3HbS0poV86csGG 2oQzEmtUML3MKM5kGi1jJrMCETCB5iCOOoBpa7AhJSpTMYuTMkJMT5IDquLcMjmqRqCxMDmUUFc2 WbGy4kly6JGR4q545fWhSU8UHLMQE4hftBAYjffCDjnAybcSCcHmNVABVQ27xIsKXDFILahk0VB5 xGWBxlikS13mIROAq62A7cynsC1lK+mIHlEzTfGoKVml7uZETaQ3exFssw1hgCjXNjRpiTWoav8y VXZEWUcrQU1Z8LXaH/8CJnftqQIHnat0znmlLH1mmgVQ4MrFo5JSgSY0ogEUydbaNflSTgKpEStT 6xSVjznHkwoSCU53NtW1DsUBe0VdJrc+IrqFKITbQRNZXbadF4/27XCPu0R2zNys9adx2TnLcEJ1 o0ghl7OaWVWqxyInKwbR1sRJwEkCY57tbWZV6/u74P6Eu1zSJ2QRL+KFDrh34OwtVdnFJasoQ9sx RSArzHqoXbaGJLazaN4SE1SCOc8TdOm99kIBbk4oYKKuqayhaLpVCDMITz1yFzePz10BLd3eAz3S yAs5PTQPJz7rUNZWbla0NOO9ko4NxZjnIS7/7iTmKJ8YLG8MqYBEdSY3h2+JK65E1/TCllXEUaZj umM8cyfD8eK87WQG4HQEwXvXchJwpBWRNC+Q1H3a0kb1ZyuOVEMElHtWY1VH9TcFYFbDUxXqsiXy lykD5hM8MjIEsyzuhDiW1SNlVFRW9VJ31TDWIYCnFxkeRVU7FX9tlSMJVWoGcH1rVB9VkSJrtSVR sxVxYjbaQVMQkC00gjBVhS/dhBUvxBHmNzQh8zEhczsPtXQnA1OGdIRqhyY0ZQHi8hxlwk4BZSPn gjH31lN30YNtoh9tNIcWlVRRg1dhuHYDIID/QAG4Yn10kobighJ8dFW40SU/cysOpyxPwS6G/2Q0 UdUyavdOZiUQFfAzbMczc4QzXoUySRNvtrIumghSO7MyTKWHrMSHBSEBaicwKaNW1ZJtMncymyJp tgNUZWJSaMgkOHWEp3gdlYgQFfCFUsU3sdiAKkIW1Pcmy5KGcgMsd9R+7BJWR0MAqtgQFMCLc8VH N0iC1YJ14jFl7eeBffM2d4iBSnKNrxKL1PI27Cg3LRNCNGFZNGQfaqJ4yDOEXRiMfaI2XXQ88MhQ rBGO7VIkp2YjjOWOK6KOl0QBqlMmlKU4GUQA9PUayzJxsuEApSd3HNmRHvmRIBmSIjmSJFmSmGMB FCABKikBmsQAnKNZJkkQFiA/u9Qt0QVC4f/TFfLCPV8HARIAcqIFAUyhKB2BEq4RI0YhN+ojL78i GQWgWmAnWhRgFg2WEQOQFkgRAGRREloHhIKHXRyBbGDzAEBpORJgFkJRG4GRlbLBldZhUluWf/kH IOMzAAegTJqjSlLoPo5xJBpxALTjPeKjO9qkXYSZRQuQP+LjdnmyE4oHFLAkXaoFEtB1YrEzGBIj L+YWGVQhNzTBjxNhKvRBcKWGk86DPicWHfeyl//xK6OkJ/RFhbr0UPbmXCdGYpbJlOuSbSqykQ9h AVgELC2hS09RJriJYs4zYm4xZfLHLC0FfXvxYQYym5BpWTZpZ+dzmw6GmlqZRzZUmj8CERP/IJ1l QRW8sWAMYpvc2WPJqZzOMy66BFHddwBhBzEYMjGaqWcLsCnYST4Rxp4nxiAAUnBSaCL1ORDjGRZZ AURItmZR5hZlgWUS1l8M4iLdh2E3UpYx9mVDMSoghlsPmhQEEERPqZ3Z+WAjlSkucRUacmYbJmTg QSoVkj2KF0DLmRhOtl8nCkC0Q0AZEizGw1wJ4HbDg0DARSC8IRZ0c5xOcVgRY5smemfY9BuxV0y4 JB97NiHpYR77GR0k4Z4j4iiyE6WtNZwfJiqUVkzK4Zu0ZiAO8E2JAWoR0BxTdmPpBUW+JDdQij45 5iDpoWcI1GfEkWsEgRxn+nVHl6iFIT4o/8GfikMloFQcDaAoINpjg6kbRnSeIIZpxAF9FcAbNHp0 jXJ6bBJU00QluiJvDSA3YoEAX7oat4FvhJmkwMGpVnocEaRAkgoUjpI4VqKUiaZo1aUowaUmMJE/ b4KmH9Z4loZExaQAx/EZScaronEf0wQnPpGIV1ie2qMWLaFIbBId71FAjcce5zkYjuKsB/FNoPFC obEAuxIdGKeMcgKAgwdi4AETyIYf4pOrs9dli5KmAItCxmEQ8zEBliI/F9FQ+LEk2hJbUVilVaRA kdZQisKsQJSujodpiDcckvcPyHEVpMqwVnIwweIRYIRMykoWPVQlC7JgjKdAEiKtJ3RrCf90pgsA ctmDEhHwEe9klyfhIvgicTVEmB3hNciaICM6Z8ExfhMSfh7aeTMbPxMzMYhDJ2tTF8P0b0BKniuR tFGSG3/RtMBSLmO0rKKSXaBSlpKCWCjYNgLyEv7mT5Byth6RFRVrhtmyEcRVRh92bqDyKUO2IQwR HN3zayYzUNnSTU2JbxKiFW4CHSRTFiNVX55BTHMZuFRBqApRAYdFWfsBjTZiID4Ce2nhEVBhdZJm jkwZIAS3ce0lnIz7PhDhtk8kPVXhJR3oURHXE/1WsRqklH/ROAGSogUXIN2mLQx5ECL3RK+Roh/1 UQAINoHhXj7hQ11RJiKoLQ+VvLwpLh6TxZgL0TkhAjbboiRY0nPZMUKrah3ZJyNRNYfcUlQzR3IH U5YMYQEK04lRpyRz9byn11TgaHEvdzDQ5DZLN0fiCxHDuLfnqDL6EgGbchvfVHG3EUQTkMGgYSlg 0oIWeJeTxwC+hyYYZYRQsWDXmhpo5z4ERRqeVi08UwDLOyYQsDBKJVXgoTXZMXxWZTFeJYK4lCUL /9wnQrJzUrck0aRBtfgmFpU02mHCWDLElwMB7ccwNJdBTBVCMFKNdIIdDOCbn0U4c9If1tom1IRy IcN2X0ySKVk4PShN1MEApHSgMVnHdpw5FmABLCnHNXRDDkA6E1AB+Bt3FuBpRXJtqWGXlrEjXXsT ckcBDqAqExMiCEVkk4pQEVSuVFq3H2tK9IUj6NEt+6E7mkxJngFi5fp4QFocdEwp4yl4EtM9REUZ vvSnXeYv2ZRAmMltBXs58+NtitcrMOFLvyRtwCFxidKsaftKktHKOoGYEpdq0SQ+wkJCqmJCzUoc /zd49wl5dQHGE2EpKtptdKYfxbOiP0pkNLbO1/+zhcSkoAVDGYO8EBQAVM4Jjd4iWIY2Q9ohnASE pjGrG2fqzi4kgVIBnQ4BKGEzV/1hdhFJWCi4hi5BRMT1zwXUt7vWVrEyzwVRvMA6idtXR4a2KyIT f6NbbkGhbpa2Ge3oVeCcGf6CGsG3NCklaohDslfLOPJkFUkqKMvHq/SBIlUlxWQ4iCgRU0jjgxVm HSEtTeq0uGeRG45itoMrFvSFbV1zAEPsAAX4iK/YeiJyf934NaC4aCPzffQkmivKbd4kNDdzAC99 etFzh21DiNIxqbQZW8KpMFf7HAiFf2D5lbMbWz0BWImSEOpnF9uhlIxFLa5rIORlbyTimiENX3X/ USHu8yt7RDVrlY4IwT1f+xe8eC4JCNkMWHCSbSQhzThk4U+iR1Hzq49F2C7L1Ew9pRJZbTARi3qu hLzgxCUgXVnFi9aoG3Ox+IJplR0FRoBb+DbTY9Bhs2WkLZzKyEqgu1OssiIt2NmMnVcNQ1Pxsi4r QnKNe7IseyNqCNxlLSIp0ns+RXPVkdxSFyc0pdD54sMVOGABIp33EltvnFJb0z7cMq912MRjFVVi aLBCixookjAh1Xs5ZGbP2G3/zUqiREAURTJi9VL+WzZT9zIGIQHyMqnUvN3t3U19fLdkeyRf6zNr ZKwjs79Ld4eL3U6zElMgXhD13OL/B1jel9ka/z0VJzJSsnW1B7IsNTeEs71Uv7g0ZuUR9yES0VKM zvkrDZg3HUEvibwV2PdIX8LQm1iNXOwz1/FiUEcT7YQdNWfAC2hU0WOqaezXxwhSWJKGnujEkUjm XnEQFvAtiUwzTMKNXqMl5dg1gvVOg+7gXKiNeNXFZAUy10i+bAc1ztglRl1SRliKWhWK4EFVU2VX 6Cvmjz4eoMkAaVyvfbO/RWUyWgGJFxQw0dMlXTSEbyTmrfgzBNDK8BhT7WK/XTSLRhMjuMJGuRtQ sjGN1KhUTX4dL00QcDg1JczqHtfSY5MragcYurttsm6H/otOjj4AzV4QQ9LtbJPhkc2NZKG6hvpm rLlIr7EiNsS4VE/szKtohHBUNI7dgKL731Uy6Jq4HXtT5/K9MoCTE/p77/nY35oNTXqqIKp1j3Ak 4134ik/8NwMgxQsBdaKdhsc4udQSUEsMOxe32N8RVFreN/ZO3/3o4y81NCMTdUM3kPhhJIliHy/E WEp+jqC5e+7IN4BlMnH+ZnYDNpaFFlcCLD+v5Fgzw3niAM90wBQ3wQ7fsNNxZtl7bELNhXBdS38y hIZ+HQxLWIUktzREGVnSUcCyxqAlWYsF9oOlfbdBeKdx9iqSLEPqkYTTaroizDUYK38hKRwtdxWQ kizJORJAAYgvyHe8+Izf+I5/SQEBADs= ------=_NextPart_000_004A_01C98535.D49F7270 Content-Type: application/octet-stream Content-Transfer-Encoding: base64 Content-Location: http://www.inova.unicamp.br/inventabrasil/b10087.gif R0lGODlh6ANWAPcAAPDz9/f4+/L0+Pf5+/Dy9/3+/vb3+vH0+O/x9vz9/fv7/fz8/fHz9/L1+Pz9 /vP1+PHz+P7///r7/fX2+fj6/PP2+fr6/PX2+vj6+/7+/+/y9vP1+fr7/Pv8/f39/vb4+v7+/vn6 /O/y9/j5+/X3+vT2+f///+7x9gAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAACwAAAAA6ANWAAAI/wBPCBx4 oMKGgyUAnACwoUSJgwcEMmj48AEDgQAeNDyo8ASDBg0QKhQBUsCDEhEXHtS4ISXDDSxTDpx5QoOA DQ1uHtBAk6YIATkFCICA4ISIA0KRduwpUAMABgwgHABQ1CnUqFSZ0jTBtavXr2DDih1LtqzZs2jT ql3Ltq3bt3Djyp1Lt67du3jz6t3Lt6/fv4ADC46rtbDhw4gTK17MuLFjxYMjS55MubLly5gza97M ubPnz6DJ9hRggIRpEgIWliDhEDVPBg5juzxosAEEgQRgHhQwssEDoC0PEwAqAOlto0kPTMV4ICqD jhqcP+2IYDoBAAQOiyDAXYQIxN41eP//3jS8iKIDQ6tfz769+/fw48ufT79+2Z4hQOjXP+AECQ8F AFhACEUNEKAHAIYg0AcBJpCAAyMs6IEDC1QYYQMSVNjBAiMsxVQJHIQYYgBFbRDCiScasFAAIYyA AQUGZCdAACMMMMAIJCh0wAcB9DjABOQxJcIGH5BwAQkVBCnkSQdtIMB3Pz0AUgMe2mfllVhmqeWW XHbp5ZdhzcTTAl8pGEAEXUXQgUAhZOCmmxKcgMAIGewHgoInjGBnARGW4EABgHrAgYc9keCAgwks EAJPJCzQwaMdRMhACB0oYOkIF5koIgcDKNQAiid+kJ1WIpBgY485GgbABKexlh0BsTn/lFp6YNZq 66245qrrrrzON1NRHZR5wgdochWBAjXR+WYGHAikZ536hfDdCAXYScEJJSQAaIAc8FQYCYgmOsJ3 JED6KIkAUGqpAh2eoKmIA2T3KagfKEmTBqaemmphAKx2WpInEFBBrDKd0OvBCCes8MIMN5zrvQoI S2yaEvDU5rLSnkABCNDeyZOe1mL7Z6DdGtYoohwqVK65AXik7qXyWrBpADKCGoKoheFr4wAB7KtV v60CLHCsF9Hq8NFIJ6300kw3/ZZPwXplZgYUZ3fxmxx8d/F+zeZp550iByroqFoZsADKI2TXqLkR QvAyuwptsCkH7T5AAb2EzlTqzj3n/z0T0KeV8CpFDhUtkNOIJ6744ow3fiV+gVb7gX8OIOgBCOPm eWCCRQUQYOUeRHhCAAhS6EF/D3Bw9gIOdGoYiApIcC5PIG46OQAjoMgBzSc0kDuKH3h64wi5x1iY CCXw/EGRfg8k8AQTlDDBBt/lRvRMjmev/fbcd++9XD0dsJFDCmVEeNHiE96R+BqRL5D4IDU0kkYg oYTez01ChFGTD1Rwm027aQlPflIS2wwQKUIRAAPuxxQGKAcpCzRMda4ylapM5ylK+p4GN8jBDnow aY8JoQhHSMISmtBoH0yhClfIwha6ZzRFOk1EAGAa6aGmKAeIFUoEAgHaOOQ4sHkAS/9uM6QSCMVJ AhkSTkxygKIMR0pCieBPEsgbiShQKtCRDgCWssXnYEcgCLjOFgFAnu1sh4zOI4B31DiQ8YwnMS6M oxznSMc64uVXJ8iPnVpmgMsh6E7TApDlFjU60DkAQjz5AOsStYD+YEhDCUjbCS6ggEopoJEKAZEE QiSBAHzHRKAiwYpaNAIYfUcAN7IRjrKzox7x6ALZgQAJPmAAA3ygBAhAwAZKY5oKvEp6saGeUTay gQo8CTF2TKYyl8nMOurtBGTySoQGQDVjSUBry2KW1ji2n4yFoFr64VPYSHYR0lnOAyFQiAHCpShy masDA0CA2yzJrkyFYFMDyBQG8Hb/AlQSj3gkEE++emQAhTBgeQhN1apaJThkNvOhEI2oRBn3zKh1 JUIBqKYJIpC1PGazoxvrWMaoZac+LWBb6MyOAUCHoIydzEEccifLEDCpddXTXfcUUQA8ZTOcCeCf ANWAzvRVvlkidALl81cv7cWUiTr1qVCNqq7EdAKLcmVqaero1dzkTW5GKzsUAKd++qStQGVsped0 6dlg2i4SVBJSAYhOCGzarneNSF49ldHwAEouvinUqMubQHYAt1SHSvWwiE2sYtmjNxFY1QRYNRYH ssOBjyokPyL9TlhD5iexZewDLEWnQhSJNnW+M57zXFdd5+Y6UAJPeEAlwXnyxbNU/zEAsLdMatCY 2pPF+va3wA0uYMSEgG8GqFoqQusfMzcCQQIoc6TbHHQTUDoHTG4Dl6zQ6dT21g25jgQciJ3sPImt uamIASPgwIl2l50H5I4CI7BA8HrnIuKFwHgzqhGNAqqBEvSoRw1dVS1rGWBgSk+YhxGughfM4Aaf ZTQPiY1Bm7SaogngIQ0hwXFyiJMfvu8hvinBRUhykJBAgCcACAlMKjCb/LlExQcZ8U10s5OAUXED DODJcBLYgAgSACkI7AgEigNBnkTnABBwYI7lBIAkA6CChnWwlKdMZcWe8MpYzrKWG1PlLnv5yw8d TWn8lRqgOWQCsyoMh9tXsJ78pP8EvylOEm8S5+Y574FCsXNNngKVLxpGPNzZYhnVaMY2Eto7IwSz ohfNaBWKSQMcCCeg+Cig55KNKQNYwDkHwFuBYNdR3iVXJS3VAd4VpgQ2k21h/MmzAZDg0uGbZS0/ sAEN6LJVG/hlrBD8mEb7+tfAbtwzE/CVCNEpq7CmCWa7meyBdNas5QxtOg1jgNN2Gls5HZGe3Rtb gZ6qbx6xZUL1nOBgm/vc6F4YVR/bH2oi2zDLjta1S3BSs442tBRo9kBWBtdr23V3evbnP/lLW3Df FqG31Dcc083whjvcS3h8LEY1ylE9xxsE+T51vQMUguyANq0K988761WYf+/UMAL/5+tQa2tQ3CZE hA+PucxnDp9HP/Za7pZsyCsrUoVfoKwtVUgApK3narPs2hWQGbz07LvYimDl4JYlwl8eQppb/epY x4xPQiBIQKnIUJYrAKcNM4DQklcrJehAAjYUOplaagGmRnu2OWCAa7v3RLmb76o/oN8BlECo/uVR ABp6W14aoKFVz7riF894vYzGIBQZbP4m0OaeTATOMTZMlHRTtBT7RiOG+5lvVBz6nuz4iETRPJCV YsUHZsUpSMYKA7nc+Nrb/vZq2bLud8/7K+P+98APvgl6QiReomYhNSzBBWZ1ANa0ZlYQcAhCUgIb EOMYOU2yDW4+D5POF9AiuElK/57lxAAiL6cmzonKqJwyRgasX9DXubZ23Oitcgv//vi/uphEEOn9 FIDSIAAomBNIYTcAH3NIlmOAo/MgrOMALYNdFBJq/vFWlUReF8ABm4SBJIdqoTRK8IUB+EUjxONq p/QBPANg39F8y2NLvLYY1tMkAlB/hZF/NFiDDvcrIhBNF5UnFGcB38Fzb9JVduJNYiVO2YJSHTc6 5yRahYQ2KvVOLXMAb9MuqDYzcdNTCsFtAxdyWgEbDCV/h2ODYjiGvtYTOsgV/XFsxmIBFpNNXdUx GKA1YgUCLXOE9jYs+KZSayUuajNyJyCF9OQ6VahTcXM3KIJfe4UjYMgUhIUki/9IhpAYiV1mhsV2 Ajm3UVrlhtvUMSNgMV9DVkjocaElSWbjhCdgdJAyOallKa01dye3Aft0iPKSiEDiGI2Ya1Emibq4 i7/lE2doAtcyAsWCiT+oiSfAc91UFHq0H30yMkGHh2k1WnvIIU/IMn84hZnEWldIL9mxAUCliLao VEjChQbDi+Z4joe1dWHnAcnFUmJXFM1VgM4yIaDTMnlyKJrmAdfVAQ7wKI0kao5Sgd9xgbETXhuo dCEiSgwwAOoVKu31Oykyi07XTyaoSiWwiD1hZgf2iOjYkR4JUaNBYS/HEBgmYvtTEde3ECwBEx3x EfyjEMMRPymZEb+hEceRESD/YZMYIUQzNhI3ARxNZGNB8QBBuWPKoUBJtHpV5BhWARUQQG5h+JFS OZVz1HtWeZVYaX9UuZVc6UHEtzwkUBplFpanMSsCwCqywUPBtAFARBEcETAqVgH+cxg0KRTgtxDJ UUU0ZX7k5hRPuUXvhx3dkUSAyUZJxB2DOX/jwUBd2ZiO6T0+0X/hBIDbMgLwuDnilCelgyD9YYkT cjYO6C4KQCEVEi8mg4Ei8gG0k2qjhCKvhnIm+F8X2U+2NGsbUBMlYHzCpJEPIX/DgRMgUSWPOZzE qTg0AQC/aGw9KBBAyFVs0jF3ooxF2IxIqGdDhzbfYTbWCIjr4jqFUQF5RV/d/7Y3J5gqUodQVPcz OnQcUVmc7vmeDuOLX5GGy+lRGMMmXgUCGCBUyxiAdTgyHCd/pchWMpWK10hPJ1dyNlN34vlPE4AA 5FlbseRyIdcvscKe5QifGrqhvSKf0mSJFNc1W5UBi6IBFyc6/QkC/TEBAIpO8kdaMGWaqPgok8Od rBhyrhWRvZOIfxehPTOhU1ehAxMbGMqhRnqktnKcv6ggAzCMHCUezUmizOkm3YSfJTVOLaVwGgCj iTJ22glX/YSNhpGj99WN3zgB3kZUJwAB4rY86cmIOhR6SDqndJolNEEAXDchASJK6zQhCGKPzYWA HmCPA/CZh2SP17khCXBdqv/Tb4ZxgSIiAR9QFLWzXgo5AKBiPIXxACJIPBdwSv8VAH5nFCQQALSU cB4xAbpZoRthEMJZp7Aaq+9BE/JEPwfxHQAwYyyJESZRYh3heb5qRUckTDFpl6WXkQVEJRhRQBug EBpwAEHRY7PnE6t3fkfxQOfXZFBxflbBZ305RoKGPbI6ruT6GVl5ruh6leW6rux6GcRnqiuYGgdg S2Rplq2CZoeRQ0NqkiTZPrNioU3SYlLyABjaE89KZEt5FMWBRYfRreFqFNjxsGGkRolpFIRmmFrZ rhq7sX1xnJXlfy3DIAEYgBGiAWElXYdRqIfkIA/Ij2s1dvx2LuQiOxgoqTL/SBMHgKmu+R1Nt4Ww Ca+0ZhQlEEMksJurEUy42hByaUQcybFO+7R2QRMMcIYRYGxOagFyEqV4Qir9KU7/gYTfUajnRAE8 cZ1sdbMzIQBvI4gICXCGoYWeSqrf9przinCC5RGt4oi5CLV827e59zdWFQFp6KR4MqJbyxR4aieD Ok4BQgFF8QFLKDqghTZoOxBqi6DZMYghgjOF0bPEMwFyqy9Aip7Z4YWn0YJa4bequ7pmoaRfgQF5 4hUcZRRb5THH07X98bVmJSHnZJnDwk5jpxWXuy7kVTupKX+eOwIlELoS+odtiqoMwCqn27SsW73W K7VLmidO2iwEoLXT2kYp/xohuttSnXNOEHIeAQC81/YpgfgdxqttY3qmzPujzhukqYpr1Gu9+uu3 x/lNfuoAfEpd9WgU8XhIoXk8Q0eaC6AicuMoFRJXCEACsvNWqukfqLlJk6NmEHlfn5Q7pRQCr9m5 oiqbRnEBA4Ce31F406sasdIA+bu/MOy04SNELIGr3NesElGTb2kYDBBnGuGTcdZjvBqtv5qsxyom CDR+RpHES3k82Loc1dEcDgQd04EVTXFB7rdwMbzFHJuuXvzFWMbFYqyx91ICI4BQBiCvphqWBtAA AkEaxmevJCC9KSEAzucQM3RgDZFm+INhbLmTOCFEF2ETDYBARTNFrpdEUv8BAYzMhWIEmCJkRuEh rmNcyeMqtQrQMf83OnsCuyKgR4ESISJALZtGwPRIIXXIOmvViTnjVpYkqQJhvBYAwn/4XinCE75D SuCYX7J5bbBCtADjGASwkg/wqpZ8zHQqtcSWJoPbFVLavW5Iu1QaLQHTteIrIBynpWYrLgsCaufS TxwQiJk7N7xDpgz6MwNFv+F4PSiEzO7ModjrFRnQMsLozAoiAhawLGCDp9OMOdWsuC1zAS3KylqB AJMbo3Iyox1Qoy/TSZmbbfL1SalWuRhRcCHcGBaalu38zhztnvHszMYmzwpCAPn8Jvu8NST7z/tx Ov6Bzej0ZwfdpQigAQr/zdCvXLybIl88Yc6+bNHkCKcXSskdPdTEibNUC7sjILvNAgASEM3Q3DHX 8sl7cs2epXnb3EhCpUjmMjnDy4ruS84STS897Vc/nZFxKtREndZdKbX+azl8upmLO8qbGZoiILaH tACTU9eHcigdoCJp58Bw971JBF4ZSHdyMgEhEgKzLEoHkF6HuNN4VzzfoYU3ompaQQATALSzaYvE hMMbrdag/ZEhiRC7CRM3QXU5lBMDgz4PMWNFMxFOYhLZQUA5oayqUhJCVMRTUkUEBBS2PRwI9Nt4 1sRMER1XdH5MCa4AIIOh3dxTCcbQHd295tzUjY6KsSNEy8dMYcd3nBLN/xdhO/SC+qMq+XOXnufb zgqtD3TIyuFAT5lEfQYVoyIC4JrFASOYfqZ5h4aR1d3fvJgYIhAA4QQCoaN58Wg5LSPXBgx32KLK pflnEtwBErBJBpBLiK1ei13LIUABFACCRWE3GDCCAdVPNNLLFAm0t4k8RIu6x0lMxkTRaO3fMm6D AB4CwyilhQHNQ7gQ/VnguhugCHwobFUTWg2mDRDO3fnVImIBvMOBh9jBQAW6BGAAZM3DecvivTXj Wk7j4EEBN364GYnS4pS4K90yhoJSmaMVWyrkXVoTX0qjYXrTD73kJAeeocQTcKu8AVNwn8rD0msa WL4VWz7o+AfgSe3MWP+b48g4VrQL0C2NUrCbMzHdSG7uzX0d55bSSUoeIjqNU6FUIt+4vCJA5aJr 5bgG459N6KreeDUuu4lOKk3NiUYhmQTeH320OWDuE+mLMga4pX4oABaAoJs+Iu67oFDuoEZB6s1b GLfVKm68t6se7YqXGDRdOQ+ijwaeKAwoSqPcj2fTAaL0129ljwUNXpsSUBGs2CgCuo195+6yTwOH y8NzI39HkScYAClequK22ep5x1CZodIe8FmnGCkWZ57N7PSjxB8BRcd0ekBBbrnKY0UsFDnhk8Wh xEbJekuMZEPWESKwyFKRHVHslN/afoIt6AKf8lYn3Szf8oah8jA/c2X/fMbxSuLZXRMNQLTH10+m ET071E8XcAFEqhLB5BJ+/MeqgRMHUbD3Aq0JRG5H8ZR91hR9BsmFEUaCibHTHfNcz3BS2wERUOac 7H+i3NaTVhN5iuDJcsrW1eAeoCH9QdOWnsEGkOmxYwAw3u4nQgEj3rnfNng8IQAIh+8w7oU+/wAY mbpdv/jnhrMOILv9EQKye88dkE2wC2nQWfaKGyG3HiiXf+AIMi5zwuaNdPJyI+yvY+zucqZ5j3C3 lPhNxfiy/2s+8fheoSJtkiawiwCx/iaivOhj3rWT8+NtZ4ks1TqdQ/rkzhQNEOyZfnZy5+7eCFTL q2auz++OMfvaz2j3/+IBXzE5kp8m99yc+7zoKloTFrAnwz/QAiG2pSO5pN+ZwtvQcfchE7361G8Y dYvCMLf9/u9lAHFCoEAAHkwcPDjgRAiEJiKEOEGgQwaKFCmc0DAxAwiOCk9I4MixQIATBjwU8JAS 4okAKT04cDACY4AENRMsCKBh4E6BAjh0UBA0gAiePEuEQIrUgM4NI5w6LaGzqMADH6xaLUF06lae Db1+BRtW7FiyZc2eRZtW7Vq2bd2+hRtX7ly6de3exZtX716+ff3+BRzYLk8AHArA9JCgxIkPMBM4 8GDgBIIRNxck8EBCIIYFnRc40HyicocOnTWXKE26wweMJBR0kMBBAf8JnSQ43L5Nm+uBEUlDkNC6 dcMA4gNGRD3R4EMA5gM2SJ0KgYQBEtU3BOfKVfB27t29fwcfXvx48uXNn0efXv1YnggEbHjQYMP1 EwAebGjwHgDB9w8EPCBAIAb+i0+AAE8YUIAG8iMKAAEeVHC/+h484IAHJHQQwgYk3EoECiPM7gQR KjwAAgEkFAGCAxhg4IADOwSAAQBifDHErdbDMUcdd+SxRx9/BDJIIYcky0Yjj0QySSWXZLJJI4mE Mkopp6SySiuvxDJLsIqKUQQRZJRKRoG8HIiAF6GLqEPssvOyTQQG0qBNNCcjE04773QyTyW15LNP P/8ENFBBBxWSJxHWRlCtAw4WIwEoCUgLLQBFZeughDcDUIADC35ajDEOklo0uweeYq7TBgIYgLkP njvhgas+MKCB+iagzgADNnjzgOqqu0AAAUsAFlgB3mRgvg2APQCj+fzbQIA5DT1AAAgYgIDD7AjF Nlttt+W2W28B5YkBBxqKgCSGIjgoghF00qiidU/gIKSOBAqhAJFG4koDClxKaQSiRnDApgUGICqA BRJlTYAQgMp0qBNK2PS2ED4g6qikKADuhOGeOk5EElAttcaipNuVBFZD/DZllVdmuWWXX4YrIAA7 ------=_NextPart_000_004A_01C98535.D49F7270--