摘要:
Disclosed are novel spiro derivatives and their medical uses, especially as adhesion molecule inhibitors useful for therapies of inflammatory diseases. The spiro derivative according to the present invention has the chemical structure, for example, represented by the following Formula (31):
摘要:
A therapeutic or prophylactic agent for allergic dermatitis is disclosed. The therapeutic or prophylactic agent comprises as an effective ingredient a glycine derivative having a specific structure or a pharmaceutically acceptable salt thereof, for example, the below-described compound [(E)-2-(2,6-dichlorobenzamido)-5-[4-(isopropyl-pyrimidin-2-ylamino)phenyl]pent-4-enoic acid]. The therapeutic or prophylactic agent for allergic dermatitis according to the present invention has high therapeutic or prophylactic effect.
摘要:
A heat dissipating device for an electronic apparatus includes an enclosure that houses a component of the electronic apparatus which becomes hot when the electronic apparatus is in use, the enclosure being made of a heat conductive material capable of dissipating heat in the enclosure to the outside, a heat receiving member provided between the component and the enclosure and capable of receiving heat from the component and transferring the received heat, a heat insulating member provided in contact with a side of the heat receiving member opposite from the component and configured to prevent transmission of the heat received by the heat receiving member, and a heat diffusing member provided between the heat insulating member and the enclosure in contact with both the heat insulating member and the enclosure and capable of receiving heat from the heat insulating member and diffusing the received heat into the enclosure.
摘要:
A light source lamp unit (10) includes a light source lamp (11), an ellipsoidal reflector (12) and a plate body (19). The plate body (19) is provided behind the reflector (12) with a gap kept therebetween, which has a shape corresponding to the profile of a reflecting portion (122) of the reflector (12). A cooling channel for passing a cooling air is formed between the plate body (19) and the reflector (12). The width of the cooling channel in a direction along an optical axis of the light source lamp (11) is minimized at a part near a neck portion (121) of the reflecting portion (122) and enlarged toward the peripheral edge of the reflecting portion (122) of the reflector (12).