闅忔椂闅忓湴鑳介€忔瀽鐨勬椂浠e凡鏉ヤ复锛熷甫浣犱竴瑙堚€滀汉宸ヨ偩鈥濇渶鏂拌繘灞?/p>
浠呬緵鍖诲涓撲笟浜哄+闃呰鍙傝€?/p>
涓撳鍒嗘瀽鍓嶆部杩涘睍銆?/h2>
鏇村鑲剧梾涓村簥鐭ヨ瘑鍝噷鐪嬶紵蹇潵鈥?/strong>鍖荤敓绔?/strong>鈥濈灖涓€鐬ю煈?/strong>
鍙傝€冩枃鐚細
[1]Stephens R L, Jacobsen S C, Atkin-thor E, et al. Portable/wearable artificial kidney (WAK)-initial evaluation[J]. Proceedings of the European Dialysis and Transplant Association. European Dialysis and Transplant Association, 1976, 12: 511-518.
[2]Gura V, Rivara M B, Bieber S, et al. A wearable artificial kidney for patients with end-stage renal disease[J]. JCI insight, 2016, 1(8).
[3]Meng F, Seredych M, Chen C, et al. MXene sorbents for removal of urea from dialysate: A step toward the wearable artificial kidney[J]. ACS nano, 2018, 12(10): 10518-10528.
[4]van Gelder M K, Vollenbroek J C, Lentferink B H, et al. Safety of electrooxidation for urea removal in a wearable artificial kidney is compromised by formation of glucose degradation products[J]. Artificial organs, 2021, 45(11): 1422-1428.
[5]Shao G, Zang Y, Hinds B J. TiO2 nanowires based system for urea photodecomposition and dialysate regeneration[J]. ACS Applied Nano Materials, 2019, 2(10): 6116-6123.
鏈枃棣栧彂锛氬尰瀛︾晫鑲剧梾棰戦亾鏈枃浣滆€咃細妗傛灊璐d换缂栬緫锛歝indy
鐗堟潈鐢虫槑鏈枃鍘熷垱锛岃浆杞介渶鑱旂郴鎺堟潈- End -
鍖诲鐣屽姏姹傚叾鍙戣〃鍐呭鍦ㄥ鏍搁€氳繃鏃剁殑鍑嗙‘鍙潬锛屼絾骞朵笉瀵瑰凡鍙戣〃鍐呭鐨勯€傛椂鎬э紝浠ュ強鎵€寮曠敤璧勬枡(濡傛湁)鐨勫噯纭€у拰瀹屾暣鎬х瓑浣滃嚭浠讳綍鎵胯鍜屼繚璇侊紝浜︿笉鎵挎媴鍥犺浜涘唴瀹瑰凡杩囨椂銆佹墍寮曠敤璧勬枡鍙兘鐨勪笉鍑嗙‘鎴栦笉瀹屾暣绛夋儏鍐靛紩璧风殑浠讳綍璐d换銆傝鐩稿叧鍚勬柟鍦ㄩ噰鐢ㄦ垨鑰呬互姝や綔涓哄喅绛栦緷鎹椂鍙﹁鏍告煡銆?/p>
鍙傝€冩枃鐚細
[1]Stephens R L, Jacobsen S C, Atkin-thor E, et al. Portable/wearable artificial kidney (WAK)-initial evaluation[J]. Proceedings of the European Dialysis and Transplant Association. European Dialysis and Transplant Association, 1976, 12: 511-518.
[2]Gura V, Rivara M B, Bieber S, et al. A wearable artificial kidney for patients with end-stage renal disease[J]. JCI insight, 2016, 1(8).
[3]Meng F, Seredych M, Chen C, et al. MXene sorbents for removal of urea from dialysate: A step toward the wearable artificial kidney[J]. ACS nano, 2018, 12(10): 10518-10528.
[4]van Gelder M K, Vollenbroek J C, Lentferink B H, et al. Safety of electrooxidation for urea removal in a wearable artificial kidney is compromised by formation of glucose degradation products[J]. Artificial organs, 2021, 45(11): 1422-1428.
[5]Shao G, Zang Y, Hinds B J. TiO2 nanowires based system for urea photodecomposition and dialysate regeneration[J]. ACS Applied Nano Materials, 2019, 2(10): 6116-6123.