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Biomedizinische Technik. Biomedical Engineering|December 6, 2002
[Coating material of parlene C as encapsulation material for biomedical micro-implants]S Kammer, S Wien, K P Koch, et al.Biomedizinische Technik. Biomedical Engineering|June 3, 2004
Neural prostheses in clinical applications--trends from precision mechanics towards biomedical microsystems in neurological rehabilitationT Stieglitz, M Schuettler, K P KochBiomedizinische Technik. Biomedical Engineering|December 6, 2002
Considerations on noise of electrodes in combination with amplifiers for bioelectrical signal recordingK P Koch, M Schuettler, T StieglitzProgress in Neurobiology|March 30, 2000
The key role of butyrylcholinesterase during neurogenesis and neural disorders: an antisense-5'butyrylcholinesterase-DNA studyA Mack, A RobitzkiHandbook of Experimental Pharmacology|March 11, 2010
Biosensing and drug delivery at the microscale : novel devices for controlled and responsive drug deliveryAndrea A Robitzki, Randy KurzBundesgesundheitsblatt, Gesundheitsforschung, Gesundheitsschutz|August 12, 2010
[Neural prostheses and neuromodulation : Research and clinical practice in therapy and rehabilitation]T StieglitzActa Neurochirurgica. Supplement|August 19, 2007
Neural prostheses in clinical practice: biomedical microsystems in neurological rehabilitationT StieglitzMedical Device Technology|June 22, 2005
Implantable microsystems for monitoring and neural rehabilitation, part IT StieglitzActa Neurochirurgica. Supplement|August 19, 2007
Restoration of neurological functions by neuroprosthetic technologies: future prospects and trends towards micro-, nano-, and biohybrid systemsT StieglitzNeuroscience Letters|April 24, 1999
Aryl acylamidase activity exhibited by butyrylcholinesterase is higher in chick than in horse, but much lower than in fetal calf serumE Weitnauer, A Robitzki, P G LayerPageof 21